Open Access. Powered by Scholars. Published by Universities.®
- Discipline
-
- Physical Chemistry (117)
- Life Sciences (108)
- Materials Chemistry (104)
- Engineering (101)
- Analytical Chemistry (86)
-
- Organic Chemistry (80)
- Materials Science and Engineering (74)
- Biochemistry, Biophysics, and Structural Biology (66)
- Biochemistry (59)
- Engineering Science and Materials (59)
- Electrical and Computer Engineering (45)
- Power and Energy (41)
- Inorganic Chemistry (40)
- Polymer Chemistry (37)
- Chemical Engineering (32)
- Environmental Sciences (32)
- Medicine and Health Sciences (28)
- Nanoscience and Nanotechnology (28)
- Environmental Chemistry (27)
- Physics (27)
- Catalysis and Reaction Engineering (21)
- Other Chemistry (18)
- Biology (17)
- Medicinal-Pharmaceutical Chemistry (17)
- Arts and Humanities (13)
- American Studies (11)
- Earth Sciences (10)
- Medical Sciences (9)
- Institution
-
- TÜBİTAK (92)
- Chinese Chemical Society | Xiamen University (79)
- University of Nebraska - Lincoln (52)
- Marquette University (34)
- University of Malaya (29)
-
- The University of Southern Mississippi (24)
- University of Nevada, Las Vegas (22)
- Portland State University (21)
- Virginia Commonwealth University (20)
- University of Kentucky (19)
- Bowling Green State University (18)
- Brigham Young University (18)
- Cleveland State University (18)
- Louisiana State University (17)
- University of Texas at El Paso (17)
- Clemson University (16)
- Technological University Dublin (16)
- University of Missouri, St. Louis (16)
- Missouri University of Science and Technology (15)
- University of South Carolina (15)
- University of Texas Rio Grande Valley (15)
- Western Kentucky University (15)
- Wright State University (15)
- Illinois Wesleyan University (14)
- University of Central Florida (14)
- Wayne State University (14)
- Governors State University (11)
- University of South Florida (11)
- University of Texas at Arlington (11)
- Utah State University (11)
- Keyword
-
- Chemistry (23)
- Department of Chemistry (14)
- 1 (11)
- Pure sciences (11)
- 2 (9)
-
- Catalysis (9)
- Electrochemistry (9)
- Fluorescence (9)
- Nanoparticles (9)
- Spectroscopy (9)
- Project (8)
- Chemistry and Biochemistry (7)
- Pollutants (7)
- Polymers (7)
- Synthesis (7)
- Atmospheric chemistry (6)
- Lithium ion battery (6)
- Mass spectrometry (6)
- NMR (6)
- Thermal analysis (6)
- Cathode material (5)
- Cyclic voltammetry (5)
- Electrocatalysis (5)
- Emissions (5)
- Extraction (Chemistry) (5)
- Oxidation (5)
- Polystyrene (5)
- Protein (5)
- Raman spectroscopy (5)
- Silver (5)
- Publication
-
- Turkish Journal of Chemistry (92)
- Journal of Electrochemistry (79)
- Chemistry Faculty Publications (47)
- Theses and Dissertations (43)
- Dissertations (37)
-
- Chemistry Faculty Research and Publications (29)
- Student Works (2010-2019) (29)
- Electronic Theses and Dissertations (23)
- Chemistry Faculty Publications and Presentations (19)
- Faculty Publications (19)
- Open Access Theses & Dissertations (16)
- Department of Chemistry: Dissertations, Theses, and Student Research (15)
- LSU Doctoral Dissertations (15)
- Articles (14)
- Browse all Theses and Dissertations (14)
- All Dissertations (13)
- Department of Chemistry: Faculty Publications (13)
- Chemistry Publications (12)
- Wayne State University Dissertations (12)
- All Capstone Projects (11)
- USF Tampa Graduate Theses and Dissertations (11)
- Chemistry & Biochemistry Dissertations - Archive (10)
- Chemistry: Faculty Publications (9)
- John Wesley Powell Student Research Conference (9)
- Masters Theses & Specialist Projects (9)
- University of Kentucky Doctoral Dissertations (9)
- All Graduate Theses and Dissertations, Spring 1920 to Summer 2023 (8)
- Chemistry & Biochemistry Faculty Works (8)
- Chemistry and Biochemistry Faculty Publications (8)
- Doctoral Dissertations (8)
- Publication Type
- File Type
Articles 151 - 180 of 948
Full-Text Articles in Chemistry
Design, Synthesis, And Characterization Of A Tetraamide Macrocyclic Ligand And Its Fe- Complex For Green Oxidation Chemistry, Shane Z. Sullivan
Design, Synthesis, And Characterization Of A Tetraamide Macrocyclic Ligand And Its Fe- Complex For Green Oxidation Chemistry, Shane Z. Sullivan
Theses and Dissertations
This work presents the spectroscopic characterization and catalytic investigation of a FeIII-complex of a tetraamidomacrocyclic ligand. Under catalytic conditions the complex is soluble in aqueous solutions and rapidly activates hydrogen peroxide under mild reaction conditions. Both the kinetics and extent of water-soluble dye and paper effluent H2O2-bleaching catalyzed was found to be comparable to known FeIII-TAML complexes. As an additional application, the complex showed potential for the synthesis of a variety of Noxides from their corresponding amines as demonstrated by its high turnover number and essentially stoichiometric yield in selected amines. Electrospray ionization-mass spectrometry of the complex reveals a peak …
2,2′,5,5′-TetraChloroBenzidine, Onome Ugono, Marcel Douglas, Nigam Rath, Alicia Beatty
2,2′,5,5′-TetraChloroBenzidine, Onome Ugono, Marcel Douglas, Nigam Rath, Alicia Beatty
Chemistry & Biochemistry Faculty Works
In the crystal structure of the title compound, C12H8Cl4N2, molecules lie on crystallographic twofold axes at the centre of the C-C bonds linking the benzene rings, such that the asymmetric unit consists of a half-molecule. The individual molecules participate in intermolecular N-H...N, N-H...Cl, C-H...Cl and Cl...Cl [3.4503 (3) Å] interactions.
Site-Specific Photocatalytic Splitting Of Methanol On Tio2(110), Chuanyao Zhou, Zefeng Ren, Shijing Tan, Zhibo Ma, Xinchun Mao, Dongxu Dai, Hongjun Fan, Xueming Yang, Jerry L. Larue, Russell Cooper, Alec M. Wodtke, Zhou Wang, Zhenyu Li, Bing Wang, Jinlong Yang, Jianguo Hou
Site-Specific Photocatalytic Splitting Of Methanol On Tio2(110), Chuanyao Zhou, Zefeng Ren, Shijing Tan, Zhibo Ma, Xinchun Mao, Dongxu Dai, Hongjun Fan, Xueming Yang, Jerry L. Larue, Russell Cooper, Alec M. Wodtke, Zhou Wang, Zhenyu Li, Bing Wang, Jinlong Yang, Jianguo Hou
Biology, Chemistry, and Environmental Sciences Faculty Articles and Research
Clean hydrogen production is highly desirable for future energy needs, making the understanding of molecular-level phenomena underlying photocatalytic hydrogen production both fundamentally and practically important. Water splitting on pure TiO2 is inefficient, however, adding sacrificial methanol could significantly enhance the photocatalyzed H2 production. Therefore, understanding the photochemistry of methanol on TiO2 at the molecular level could provide important insights to its photocatalytic activity. Here, we report the first clear evidence of photocatalyzed splitting of methanol on TiO2 derived from time-dependent two-photon photoemission (TD-2PPE) results in combination with scanning tunneling microscopy (STM). STM tip induced molecular manipulation …
Axial Temperature Gradients In Gas Chromatography, Jesse Alberto Contreras
Axial Temperature Gradients In Gas Chromatography, Jesse Alberto Contreras
Theses and Dissertations
The easiest and most effective way to influence the separation process in gas chromatography (GC) is achieved by controlling the temperature of the chromatographic column. In conventional GC, the temperature along the length of the column is constant at any given time, T(t). In my research, I investigated the effects of temperature gradients on GC separations as a function of time and position, T(t,x), along the column. This separation mode is called thermal gradient GC (TGGC). The research reported in this dissertation highlights the fundamental principles of axial temperature gradients and the separation potential of the TGGC technique. These goals …
Determination Of Cyanide Exposure By Gas Chromatography–Mass Spectrometry Analysis Of Cyanide-Exposed Plasma Proteins, Stephanie L. Youso, Gary A. Rockwood, John A. Lee, Brian A. Logue
Determination Of Cyanide Exposure By Gas Chromatography–Mass Spectrometry Analysis Of Cyanide-Exposed Plasma Proteins, Stephanie L. Youso, Gary A. Rockwood, John A. Lee, Brian A. Logue
Chemistry and Biochemistry Faculty Publications
Exposure to cyanide can occur in a variety of ways, including exposure to smoke from cigarettes or fires, accidental exposure during industrial processes, and exposure from the use of cyanide as a poison or chemical warfare agent. Confirmation of cyanide exposure is difficult because, in vivo, cyanide quickly breaks down by a number of pathways, including the formation of both free and protein-bound thiocyanate. A simple method was developed to confirm cyanide exposure by extraction of protein-bound thiocyanate moieties from cyanide-exposed plasma proteins. Thiocyanate was successfully extracted and subsequently derivatized with pentafluorobenzyl bromide for GC–MS analysis. Thiocyanate levels as low …
2,2′,5,5′-TetraChloroBenzidine, Onome Ugono, Marcel Douglas Jr, Nigam P. Rath, Alicia M. Beatty
2,2′,5,5′-TetraChloroBenzidine, Onome Ugono, Marcel Douglas Jr, Nigam P. Rath, Alicia M. Beatty
Educator Preparation & Leadership Faculty Works
No abstract provided.
Molecular Dynamics Simulations Suggest That Rna Three-Way Junctions Can Act As Flexible Rna Structural Elements In The Ribosome, Neocles B. Leontis, Ivana Beššová, Kamila Réblová, Jiří Šponer
Molecular Dynamics Simulations Suggest That Rna Three-Way Junctions Can Act As Flexible Rna Structural Elements In The Ribosome, Neocles B. Leontis, Ivana Beššová, Kamila Réblová, Jiří Šponer
Chemistry Faculty Publications
We present extensive explicit solvent molecular dynamics analysis of three RNA three-way junctions (3WJs) from the large ribosomal subunit: the 3WJ formed by Helices 90-92 (H90-H92) of 23S rRNA; the 3WJ formed by H42-H44 organizing the GTPase associated center (GAC) of 23S rRNA; and the 3WJ of 5S rRNA. H92 near the peptidyl transferase center binds the 3'-CCA end of amino-acylated tRNA. The GAC binds protein factors and stimulates GTP hydrolysis driving protein synthesis. The 5S rRNA binds the central protuberance and A-site finger (ASF) involved in bridges with the 30S subunit. The simulations reveal that all three 3WJs possess …
Nona-Arginine Facilitates Delivery Of Quantum Dots Into Cells Via Multiple Pathways, Yi Xu, Betty Revon Liu, Han Jung Lee, Katie Shannon, Jeffrey G. Winiarz, Tien-Chun Wang, Huey-Jenn Chiang, Yue-Wern Huang
Nona-Arginine Facilitates Delivery Of Quantum Dots Into Cells Via Multiple Pathways, Yi Xu, Betty Revon Liu, Han Jung Lee, Katie Shannon, Jeffrey G. Winiarz, Tien-Chun Wang, Huey-Jenn Chiang, Yue-Wern Huang
Biological Sciences Faculty Research & Creative Works
Semiconductor quantum dots (QDs) have recently been used to deliver and monitor biomolecules, such as drugs and proteins. However, QDs alone have a low efficiency of transport across the plasma membrane. In order to increase the efficiency, we used synthetic nona-arginine (SR9), a cell-penetrating peptide, to facilitate uptake. We found that SR9 increased the cellular uptake of QDs in a noncovalent binding manner between QDs and SR9. Further, we investigated mechanisms of QD/SR9 cellular internalization. Low temperature and metabolic inhibitors markedly inhibited the uptake of QD/SR9, indicating that internalization is an energy-dependent process. Results from both the pathway inhibitors and …
Spectroscopic And Computational Studies Of The Laser Photolysis Of Matrix Isolated 1,2-Dibromoethanes: Formation And Fate Of The Bromoethyl Radicals, A. Kalume, L. George, P. Z. El-Khoury, Alexander N. Tarnovsky, S. A. Reid
Spectroscopic And Computational Studies Of The Laser Photolysis Of Matrix Isolated 1,2-Dibromoethanes: Formation And Fate Of The Bromoethyl Radicals, A. Kalume, L. George, P. Z. El-Khoury, Alexander N. Tarnovsky, S. A. Reid
Chemistry Faculty Publications
We report experimental and computational studies of the photolysis of atmospherically important 1,2-dibromoethanes (1,2-C(2)X(4)Br(2); X = H, F) in Ar matrixes at 5 K. Using the pulsed deposition method, we find that significant conformational relaxation occurs for 1,2-C(2)H(4)Br(2) (EDB; observed anti/gauche ratio =30:1) but not for 1,2-C(2)F(4)Br(2) (TFEDB; anti/gauche = 3:1), which is traced to a larger barrier to rotation about the C-C bond in the latter. Laser photolysis of matrix-isolated EDB at 220 nm reveals the growth of infrared bands assigned to the gauche conformer and C(2)H(4)-Br(2) charge transfer complex (both as major products), and the C(2)H(4)Br radical and …
Sol-Gel Synthesis And Characterisation Of Novel Metal Oxide Nanomaterials For Photocatalytic Applications, Nicholas T. Nolan
Sol-Gel Synthesis And Characterisation Of Novel Metal Oxide Nanomaterials For Photocatalytic Applications, Nicholas T. Nolan
Doctoral
This thesis presents a study of the effect of chemical modifiers and dopants on both the anatase to rutile transformation and also the photocatalytic efficiency of semiconductor nanomaterials. The main focus of the work is based on the crystallisation and phase transformation of the widely investigated semiconductor metal oxide, titanium dioxide (TiO2) Of the three polymorphs associated with titanium dioxide, anatase is widely regarded as the most effective photocatalyst. Typically anatase will transform to rutile in the temperature range 600 – 700 °C however, modification of a titanium precursor with a chelating agent can result in extended transformation temperature. The …
Nano-Imprinted Thin Films Of Reactive, Azlactone-Containing Polymers: Combining Methods For The Topographic Patterning Of Cell Substrates With Opportunities For Facile Post-Fabrication Chemical Functionalization, Nathaniel J. Fredin, Ryan M. Flessner, Christopher M. Jewell, Shane L. Bechler, Maren E. Buck, David M. Lynn
Nano-Imprinted Thin Films Of Reactive, Azlactone-Containing Polymers: Combining Methods For The Topographic Patterning Of Cell Substrates With Opportunities For Facile Post-Fabrication Chemical Functionalization, Nathaniel J. Fredin, Ryan M. Flessner, Christopher M. Jewell, Shane L. Bechler, Maren E. Buck, David M. Lynn
Chemistry: Faculty Publications
Laser scanning confocal microscopy (LSCM) and atomic force microscopy (AFM) were used to characterize changes in nanoscale structure that occur when ultrathin polyelectrolyte multilayers (PEMs) are incubated in aqueous media. The PEMs investigated here were fabricated by the deposition of alternating layers of plasmid DNA and a hydrolytically degradable polyamine onto a precursor film composed of alternating layers of linear poly(ethylene imine) (LPEI) and sodium poly(styrene sulfonate) (SPS). Past studies of these materials in the context of gene delivery revealed transformations from a morphology that is smooth and uniform to one characterized by the formation of nanometer-scale particulate structures. We …
Creative Exercises In General Chemistry: A Student-Centered Assessment, Scott E. Lewis, Janet L. Shaw, Kathryn A. Freeman
Creative Exercises In General Chemistry: A Student-Centered Assessment, Scott E. Lewis, Janet L. Shaw, Kathryn A. Freeman
Faculty Articles
Creative exercises (CEs) are a form of assessment in which students are given a prompt and asked to write down as many distinct, correct, and relevant facts about the prompt as they can. Students receive credit for each fact that they include that is related to the prompt and distinct from the other facts they list. With CEs, students have an opportunity to demonstrate their knowledge and the opportunity to select the information that they believe is related to the prompt. In addition, CEs encourage students to connect concepts because any relevant information presented can assist them in completing the …
The Utility Of Nanocomposites In Fire Retardancy, Linjiang Wang, Xuejun He, Charles A. Wilkie
The Utility Of Nanocomposites In Fire Retardancy, Linjiang Wang, Xuejun He, Charles A. Wilkie
Chemistry Faculty Research and Publications
Nanocomposites have been shown to significantly reduce the peak heat release rate, as measured by cone calorimetry, for many polymers but they typically have no effect on the oxygen index or the UL-94 classification. In this review, we will cover what is known about the processes by which nanocomposite formation may bring this about. Montmorillonite will be the focus in this paper but attention will also be devoted to other materials, including carbon nanotubes and layered double hydroxides. A second section will be devoted to combinations of nanocomposite formation with conventional (and unconventional) fire retardants. The paper will conclude with …
The Effect Of Boron-Containing Layered Hydroxy Salt (Lhs) On The Thermal Stability And Degradation Kinetics Of Poly (Methyl Methacrylate), Stephen Majoni, Shengpei Su, Jeanne Hossenlopp
The Effect Of Boron-Containing Layered Hydroxy Salt (Lhs) On The Thermal Stability And Degradation Kinetics Of Poly (Methyl Methacrylate), Stephen Majoni, Shengpei Su, Jeanne Hossenlopp
Chemistry Faculty Research and Publications
A boron-containing layered hydroxy salt (LHS), ZHTMDBB, was prepared and compounded with a highly flammable synthetic polymer, poly (methyl methacrylate) {PMMA}, via melt blending: the composite structure was intercalated with poor dispersion. The effect of this LHS on the flammability, thermal stability and degradation kinetics of PMMA was investigated via cone calorimetry and thermogravimetric analysis. The addition of 3-10% by mass of ZHTMDBB to PMMA resulted in significant reduction of peak heat release rate (22-48%) of the polymer and improvements in thermal stability were observed in both air and nitrogen. Effective activation energies for the degradation process were evaluated using …
Circular Dichroism Spectroscopy In The Undergraduate Curriculum, Adam R. Urbach
Circular Dichroism Spectroscopy In The Undergraduate Curriculum, Adam R. Urbach
Chemistry Faculty Research
Circular dichroism spectropolarimetry (CD) is a method of optical spectroscopy that seems in most practical ways like UV−visible spectroscopy. The main difference between the two methods is that CD, instead of measuring the absorbance of light as a function of wavelength, measures the difference in absorbance of left versus right circularly polarized light as a function of wavelength. A CD spectrum is an observation of the structure of a chiral compound; it often serves as a “fingerprint” of the structure of biological molecules such as proteins and nucleic acids. For this reason, CD has been broadly applied in biochemistry and …
New Biologically Active Compounds From Kenyan Propolis, Assya Petrova, Milena Popova, Christina Kuzmanova, Iva Tsvetkova, Hristo Naydenski, Eliud Muli, Vassya Bankova
New Biologically Active Compounds From Kenyan Propolis, Assya Petrova, Milena Popova, Christina Kuzmanova, Iva Tsvetkova, Hristo Naydenski, Eliud Muli, Vassya Bankova
All Peer-Reviewed Publications
From propolis samples from Kenya, two new arylnaphtalene lignans were isolated, tetrahydrojusticidin B 1 and 6-methoxydiphyllin 2, along with four known phenolic compounds 5-8, found for the first time in propolis. The structures of the compounds were elucidated based on their spectral properties. The geranylstilbenes 7 and 8 demonstrated antibacterial activity against S. aureus, and the geranylflavon macarangin 6 possessed antiradical activity against DPPH radicals. © 2010 Elsevier B.V. All rights reserved.
Applications Of Molecular Dynamics Techniques And Spectroscopic Theories To Aqueous Interfaces, Anthony Green
Applications Of Molecular Dynamics Techniques And Spectroscopic Theories To Aqueous Interfaces, Anthony Green
USF Tampa Graduate Theses and Dissertations
The primary goal of spectroscopy is to obtain molecularly detailed information about the system under study. Sum frequency generation (SFG) vibrational spectroscopy is a nonlinear optical technique that is highly interface specific, and is therefore a powerful tool for understanding interfacial structure and dynamics. SFG is a second order, electronically nonresonant, polarization experiment and is consequently dipole forbidden in isotropic media such as a bulk liquid. Interfaces, however, serve to break the symmetry and produce a signal. Theoretical approximations to vibrational spectra of O-H stretching at aqueous interfaces are constructed using time correlation function (TCF) and instantaneous normal mode (INM) …
Design, Combinatorial Synthesis, And Biological Evaluation Of Novel Α-Helical Mimetics Based On Functionalized Piperazines As Antagonists Of P53/Mdm2 Interactions, Melissa Elizabeth Topper
Design, Combinatorial Synthesis, And Biological Evaluation Of Novel Α-Helical Mimetics Based On Functionalized Piperazines As Antagonists Of P53/Mdm2 Interactions, Melissa Elizabeth Topper
USF Tampa Graduate Theses and Dissertations
The p53 protein promotes tumor eradication upon activation, making it an attractive target in cancer therapies. A reported 50% of all human cancers display aberrant activation of the MDM2 oncoprotein, which directly promotes tumorgenesis by inactivating the transcriptional activity of wild type p53, and is commonly associated with drug, chemo, and radio therapy resistance. Previously reported crystallographic analysis of the p53/MDM2 complex infers that the p53 protein forms a 2.5 turn amphipathic alpha helix whose hydrophobic face interacts within a deep hydrophobic cleft in the NH2-terminal domain of the globular MDM2. This suggests that the synthesis of small molecular antagonists …
Design And Combinatorial Synthesis Approach Of Non-Peptidic Trimeric Small Molecules Mimicking I, I + 4(3), I + 7 Positions Of Alpha-Helices, Mingzhou Zhou
USF Tampa Graduate Theses and Dissertations
Protein-protein interactions are key to several biological processes that facilitate signal transduction and many other processes. These interactions are involved in pathways that are critical to many human diseases. Targeting specific protein-protein interactions is a challenging goal because protein-protein interactions are predominately through hydrophobic interactions. Antagonists of the protein-protein interactions need to be perfectly fit into the binding pockets to ensure the activity. The -helical domain of the proteins behaves as the recognition motifs for numerous protein-protein, and protein-nucleic acid interactions. Research has shown that pathways of many diseases contain protein-protein interactions involving -helical domains, e.g. neurological disorders, bacterial infections, …
The Mechanism Of 13CoAd/12Co Isotope Exchange At Pt Electrode,A Combined Study By Electrochemical In-Situ Infrared Spectroscopy And Dipole-Dipole Coupling Analysis, Sang-Zi Liang, Shao-Xiong Liu, Ling-Wen Liao, Qian Tao, Jing Kang, Yan-Xia Chen
The Mechanism Of 13CoAd/12Co Isotope Exchange At Pt Electrode,A Combined Study By Electrochemical In-Situ Infrared Spectroscopy And Dipole-Dipole Coupling Analysis, Sang-Zi Liang, Shao-Xiong Liu, Ling-Wen Liao, Qian Tao, Jing Kang, Yan-Xia Chen
Journal of Electrochemistry
In this contribution,we have analyzed the IR spectra of saturated CO adlayer at rough Pt film electrode as a function of fractional surface coverage of 13COad /12CO recorded during 13COad /12CO isotope exchange process according to dipole-dipole coupling theory and coherent potential approximation. By properly choosing the parameters of adlayer structure and dipole-dipole coupling interaction under coherent potential approximation, we demonstrated that we can successfully simulate the IR spectra as a function of the surface coverage of CO adlayer at rough Pt film electrodes by assuming that COad molecules with low …
Electrooxidation Of Carbon Monoxide On Pd Thin Film-Coated Au Electrodes: Film Thickness Dependence, Yuqing Yang, Shouzhong Zou
Electrooxidation Of Carbon Monoxide On Pd Thin Film-Coated Au Electrodes: Film Thickness Dependence, Yuqing Yang, Shouzhong Zou
Journal of Electrochemistry
The adsorption and electrooxidation of CO on Pd-coated Au electrodes were studied by cyclic voltammetry and surface-enhanced Raman spectroscopy (SERS) . It is found that CO oxidation activity is film thickness dependent. Cyclic voltammograms (CVs) showed that CO oxidation peak potential shifted positively with the increase of the Pd thickness. SERS showed a redshift of the C—O stretching frequency with increasing Pd film thickness. These observations were explained by the dband theory. The strain effect strengthens CO adsorption and stabilizes adsorbed CO,while the ligand effect weakens CO adsorption and eases its oxidation. The ligand effect overpowers the strain effect.
Phenomena Characterization Of Energy Materials By X-Ray Absorption Spectroscopy, Ming-Yao Cheng, Chun-Jen Pan, Ju-Hsiang Cheng, Bing-Joe Hwang
Phenomena Characterization Of Energy Materials By X-Ray Absorption Spectroscopy, Ming-Yao Cheng, Chun-Jen Pan, Ju-Hsiang Cheng, Bing-Joe Hwang
Journal of Electrochemistry
The aim of this review is to introduce the characterization of energy materials by X-ray absorption spectroscopy (XAS) . This technique allows us to probe changes in the valance state and the local environment of the targeted element in the active material; thereby,leading to a better understanding of its electrochemical behavior,and hopefully showing the way to improved performance. Here,electrocatalysts for fuel cells and active electrode materials for Li-ion batteries are taken as the examples that illustrate the capability of XAS and allow observation and theory to be correlated with electrochemical phenomena.
Comparative Study Of Nanoporous Pt, Ptru And Ptruir Catalysts Using Electrochemical Ftir Spectroscopy, M. Amussen Robert, Holt-Hindle Peter, Nigro Samantha, Aicheng Chen
Comparative Study Of Nanoporous Pt, Ptru And Ptruir Catalysts Using Electrochemical Ftir Spectroscopy, M. Amussen Robert, Holt-Hindle Peter, Nigro Samantha, Aicheng Chen
Journal of Electrochemistry
In recent years much effort has been put towards developing efficient Pt-based electrocatalysts for applications in fuel cells. With the rising cost of precious metals such as Pt,the need to enhance the activity and to decrease the load of catalysts is prominent. Herein we report on the synthesis and comparative study of nanoporous Pt,PtRu and PtRuIr electrocatalysts. The nanoporous electrodes were fabricated using a hydrothermal method and characterized by scanning electron microscopy (SEM) ,energy dispersive spectroscopy (EDS) ,X-ray diffraction (XRD) and X-ray photoelectron spectroscopy (XPS) . The electrocatalytic activity of the fabricated nanopo- rous materials was evaluated using both CO …
The Sers Effect Of AuCore@PtShelL Nanoparticles With Different Pt Shell Thicknesses, Yan Zhong, Liang-Liang Yan, Gui-Shi Rao, Xiao-Cong Deng, Fei-Peng Wen, Jin-Long Xu, Qi-Ling Zhong
The Sers Effect Of AuCore@PtShelL Nanoparticles With Different Pt Shell Thicknesses, Yan Zhong, Liang-Liang Yan, Gui-Shi Rao, Xiao-Cong Deng, Fei-Peng Wen, Jin-Long Xu, Qi-Ling Zhong
Journal of Electrochemistry
By using Au nanoparticles with a diameter of 55 nm as the core and ascorbic acid as the reductant, Aucore@ Ptshell nanoparticles of controllable Pt shell thickness (0.3 ~ 6 nm) were synthesized by controlling the concentration of [PtCl6]2- ions. The ultraviolet-visible absorption spectrometry,scanning electron microscope (SEM), transmission electron microscope (TEM) ,high resolution transmission electron microscope (HRTEM) , and electrochemical cyclic voltammetry were employed to determine surface morphology and structure of Aucore@Ptshell. With SCN- ion as a probe,the effect of the thickness of the Pt shell on the SERS …
Multi-Electron Redox Materials For High Energy Density Electrodes, Xin-Ping Ai, Han-Xi Yang
Multi-Electron Redox Materials For High Energy Density Electrodes, Xin-Ping Ai, Han-Xi Yang
Journal of Electrochemistry
Various new energy technologies being developed require electrochemical energy batteries to have a real breakthrough in energy density and rate capability,which imposes a great challenge for electrochemists and materials chemists. Multi-electron redox reactions seem to open a promising avenue to create new batteries with dramatically enhanced energy densities. This paper describes simply our research works on the multi-electron redox systems,including metal boride anode,lithium alloying compounds and electrochemical conversion materials, and also discusses the problems hindering these systems for battery applications.
In Situ Surface-Enhanced Raman Scattering Spectroscopic Study Of Sulfur Adsorption On Polycrystalline Platinum Electrode Surface, Bolian Xu, In-Su Park, Ying Li, De-Jun Chen, Yuye J. Tong
In Situ Surface-Enhanced Raman Scattering Spectroscopic Study Of Sulfur Adsorption On Polycrystalline Platinum Electrode Surface, Bolian Xu, In-Su Park, Ying Li, De-Jun Chen, Yuye J. Tong
Journal of Electrochemistry
The paper reports the first in situ surface enhanced Raman scattering (SERS) spectroelectrochemistry study of sulfur adsorption and electro-oxidation on highly roughened polycrystalline Pt surface in both acidic and basic supporting electrolytes. The SERS spectra were taken at a constant electrode potential after accumulative electro-oxidation CVs of the Pt electrode with pre-adsorbed sulfur species and at different electrode potentials that were varied stepwise of the Pt electrode immersed in sulfur-containing electrolytes without pre-adsorbed sulfur species. In both cases,a dominant vibrational band at 299 cm-1 in acidic electrolyte but at 310 cm-1 in basic electrolyte was observed,which was assigned …
Electrochemical Surface-Enhanced Raman Spectroscopy—Current Status And Perspective, Bin Ren, Jian-Feng Li, Yi-Fan Huang, Zhi-Cong Zeng, Zhong-Qun Tian
Electrochemical Surface-Enhanced Raman Spectroscopy—Current Status And Perspective, Bin Ren, Jian-Feng Li, Yi-Fan Huang, Zhi-Cong Zeng, Zhong-Qun Tian
Journal of Electrochemistry
Electrochemical interface is a very important interface closely related to various energy and life processes. Surface-enhanced Raman scattering was widely used in electrochemistry soon after its discovery to understand the surface bonding,configuration,and orientation of the surface species. In recent 10 years,the fast development of nanoscience and nanotechnology has offered SERS with abundant substrates and characterization methods,which has allowed impressive development of electrochemical SERS. This articles will follow the time line to make systematically overview of SERS on Au and Ag,thin-layer transition-metal SERS,pure transition metal SERS,core-shell SERS and those methods for studying single crystal surfaces,including gap-mode SERS, TERS and SHINERS. Emphasis …
Density Functional Theory Studies Of Surface-Enhanced Raman Spectroscopy In Electrochemical Interfaces, Liu-Bin Zhao, De-Yin Wu, Bin Ren, Zhong-Qun Tian
Density Functional Theory Studies Of Surface-Enhanced Raman Spectroscopy In Electrochemical Interfaces, Liu-Bin Zhao, De-Yin Wu, Bin Ren, Zhong-Qun Tian
Journal of Electrochemistry
Quantum chemical density functional theory and Raman scattering theory were used to study the bonding mechanism and surface-enhanced Raman spectroscopy of pyridine adsorbed on transition metals (Ⅷ group) and coinage metals (IB group) . SERS studies of pyridine-metal systems have been reviewed. Chemical bonding mechanism as well as photo-driven charge transfer mechanism was considered to investigate the vibrational frequency shift and the enhancement of SERS intensity in electrochemical interfaces. Our theoretical results can be used to interpret the SERS phenomena dependent on metals,excitation wavelengths,and applied potentials.
Electrochemical Sers Studies On The Adsorption Of Benzoimidazole And Derivative In Nonaqueous Solution, Ya-Xian Yuan, Feng-Zhu Yang, Wei Liu, Ping-Jie Wei, Jian-Lin Yao, Ren-Ao Gu
Electrochemical Sers Studies On The Adsorption Of Benzoimidazole And Derivative In Nonaqueous Solution, Ya-Xian Yuan, Feng-Zhu Yang, Wei Liu, Ping-Jie Wei, Jian-Lin Yao, Ren-Ao Gu
Journal of Electrochemistry
The surface adsorption of benzoimidazole (BIMH) and 2-mercaptobenzimidazole(MBI) was investigated by electrochemical in-situ surface enhanced Raman spectroscopy (SERS) and direct electrochemical synthesis on Cu electrode. The influence of the neutral ligand of triphenylphosphine (pph3) on the adsorption and surface coordination of BIMH and MBI were investigated respectively. BIMH interacted with metal surface by the neutral molecule to form chemical adlayer in the extremely negative potential,while it adsorbed onto metal surface through the N atoms to form a polymer film which may suppress the corrosion of the metal. The introduction of pph3 destroyed the film formation of BIMH …
Preliminary Investigation Of Iron Protoporphyrin Sams On Platinum Electrodes By Surface Enhanced Vibrational Spectroscopies, Min Ma, Yao-Yue Yang, Han-Xuan Zhang, Wen-Bin Cai
Preliminary Investigation Of Iron Protoporphyrin Sams On Platinum Electrodes By Surface Enhanced Vibrational Spectroscopies, Min Ma, Yao-Yue Yang, Han-Xuan Zhang, Wen-Bin Cai
Journal of Electrochemistry
In situ SERS and ATR-SEIRAS were applied to investigate the electrochemical and structural properties of iron protoporphyrin IX (FePP) self-assembled monolayers (SAMs) on Pt electrodes in 0. 1 mol· L -1 HClO4. The potential dependent SERS spectra of the FePP SAM on a roughened Pt electrode with the enhancement factor of ca. 40 were acquired with the excitation line of 514 nm. Analyses of SERS data over the potential region from 0. 5 to -0. 3 V enabled to obtain potential dependent adsorption isotherms,from which the formal redox potential could be estimated to be ca. -0. 2 V. …