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15篇 您的检索式:作者名="JamesH"
    题名 作者 年代 出处 被引量
1Recent progress on earth abundant electrocatalysts for hydrogen evolution reaction(HER) in alkaline medium to achieve efficient water splitting–A review显示文摘Developing earth-abundant-electrocatalysts for hydrogen evolution reaction is one of the promising ways to achieve efficient water-splitting for hydrogen production(a clean chemical fuel).This paper reviews the activity,stability and durability for hydrogen evolution reaction in alkaline medium of different types of recently reported potential electrocatalysts such as Ni,Co,NiCo,Fe,Cu,W,Mo,Se,Mn.Zn,V,and metal free based earth-abundant-electrocatalysts.Further,this paper reviews the strategies used to achieve the remarkably low overpotential(including r/i0:<35mV),high long term stability(including^:100 h)and high durability(including>5000 cycles)of potential earth-abundant-electrocatalysts for hydrogen evolution reaction in alkaline medium and those are better or well comparable with the state-of-the-art,noble,Pt/C electrocatalyst.Finally,this paper summarizes the efficient strategies such as preparing porous structured materials,preparing nanostructured materials with superaerophobic surface,preparing nanostructured materials,preparing carbon composites/integrating electrocatalysts with carbon,preparing amorphous materials,preparing materials w让h oxygen vacancies/defects,preparing metal chalcogenides,preparing bimetallic/multi-metallic materials,doping metals or heteroatoms,preparing electrocatalysts with core-shell structure,decorating electrocatalysts with amines,preparing homojunction/heterojunction structured materials,preparing hollow structured materials,and preparing boronrich surface to enhance the activity,stability,and durability for HER.Jamesh Mohammed-Ibrahim xiaoming Sun 2019Journal of Energy Chemistry2019,28,7:14
2Tuning the electronic structure of the earth-abundant electrocatalysts for oxygen evolution reaction(OER)to achieve efficient alkaline water splitting-A review显示文摘Tuning the electronic structure of the electrocatalysts for oxygen evolution reaction(OER)is a promising way to achieve efficient alkaline water splitting for clean energy production(H2).At first,this paper introduces the significance of the tuning of electronic structure,where modifying the electronic structure of the electrocatalysts could generate active sites having optimal adsorption energy with OER intermediates,and that could diminish the energy barrier for OER,and that could improve the activity for OER.Later,this paper reviews the tuning of electronic structure along with catalytic performances,synthetic methodologies,chemical properties,and DFT calculations on various nanostructured earth-abundant electrocatalysts for OER in alkaline environment.Further,this review discusses the tuning of the electronic structure of the several nanostructured earth-abundant electrocatalysts including oxide,(oxy)hydroxide,layered double hydroxide,alloy,metal phosphide/phosphate,nitride,sulfide,selenide,carbon containing materials,MOF,core-shell/hetero/hollow structured materials,and materials with vacancies/defects for OER in alkaline environment(including activity:overpotential(η)of ≤200 mV at10 m A cm^(-2);stability:≥100 h;durability:≥5000 cycles).Then,this review discusses the robust stability of the electrocatalysts for OER towards practical application.Moreover,this review discusses the in situ formation of thin layer on the catalyst surface during OER.In addition,this review discusses the influence of the adsorption energy of the OER intermediates on OER performance of the catalysts.Finally,this review summarizes the various promising strategies for tuning the electronic structure of the electrocatalysts to achieve enhanced performance for OER in alkaline environment.Mohammed-Ibrahim Jamesh Moussab Harb 2021Journal of Energy Chemistry2021,30,5:3
3A promising energy storage system:rechargeable Ni-Zn battery显示文摘The sharp depletion of fossil fuel resources and its associated increasingly deteriorated environmental pollution are vital challenging energy issues, which are one of the most crucial research hot spots in the twenty-first century.Rechargeable Ni–Zn batteries(RNZBs), delivering high power density in aqueous electrolytes with stable cycle performance, are expected to be promising candidates to alleviate the current energy and environmental problems,and play an important role in green power sources. Many efforts have been focused on the investigations and improvements of RNZBs in recent decades, and it is necessary to summarize and review the achievements and challenges in this advancing field. In this paper, we review various batteries, compare and highlight the advantages of RNZBs, and introduce the recent advances in the development of electrode materials and electrolytes of RNZBs,especially the applications of novel nanostructured materials for the active electrodes. Some prospective investigation trends of RNZBs are also proposed and discussed.Shi-Bin Lai Mohammed-Ibrahim Jamesh Xiao-Chao Wu Ya-Lan Dong Jun-Hao Wang Maryann Gao Jun-Feng Liu Xiao-Ming Sun 2017Rare Metals2017,36,5:3
4Effect of surface mechanical attrition treatment of titanium using alumina balls: surface roughness, contact angle and apatite forming ability显示文摘M. JAMESH T. S. N. SANKARA NARAYANAN Paul K. CHU II Song PARK Min Ho LEE 2013Frontiers of Materials Science2013,7,3:3
5Recent advances on flexible electrodes for Na-ion batteries and Li–S batteries显示文摘Flexible energy storage devices are essential for emerging flexible electronics. The existing state-of-the-art Li-ion batteries are slowly reaching their limitation in terms of cost and energy density. Hence, flexible Na-ion batteries (SIBs) with abundanee Na resources and Li-S batteries with high energy density become the alternative for the Li-ion batteries in future. This review summarizes the recent advances in the development of flexible electrode materials for SIBs with metallic matrix and carb on aceous matrix such as carb on nano-tubes, carbon nano-fiber, graphene, carbon cloth, carbon fiber cloth, and cotton textiles. Then, the potential prototype flexible full SIBs are discussed. Further, the recent progress in the development of flexible electrode materials for Li-S batteries based on carb on nano-fiber, carb on nano-tubes, graphene, and cotton textiles is reviewed. Moreover, the design strategies of suitable interlayer, separator, electrolyte, and electrodes to prevent the dissolution and shuttle effect of polysulfides in flexible Li-S batteries are provided. Finally some prospective investigation trends towards future research of flexible SIBs and Li-S batteries are also proposed and discussed. The scientific and engineering knowledge gained on flexible SIBs and Li-S batteries provides conceivable development for practical application in near future.Mohammed-Ibrahim Jamesh 2019Journal of Energy Chemistry2019,28,5:2
6Eleetrodeposition of hydroxy- apatite coating on magnesium for biomedical applications显示文摘Jamesh M Kumar S Narayanan T S N S 2012Journal of Coatings Teehnology and Research2012,9,4:1
7Welcome to the experience economy 显示文摘Pinell Josephb Gilmore Jamesh 1998Harvard Business Review1998,76,4:1
8Regional chemotherapy for inoperable pancreatic carcinoma显示文摘JAMESH M JANET EP WILLIAM JG 1996Cancer1996,78,:1
9Surface design of biodegradable magnesium alloys-A review显示文摘Wu Guosong Jamesh Mohammed Ibrahim Paul Chu K 2013Surface and Coatings Technology2013,233,:1
10The distribution sector and the development process 显示文摘Betancourtr Jamesh Anderson 2001Review of Economics and Statistics2001,15,1:1
11Corrosion behavior of commercially pure Mg and ZM21 Mg alloy in Ringer' s solution -- Long term evaluation by EIS 显示文摘JAMESH M KUMAR S NARAYANAN S 2011Corrosion Science2011,53,2:1
12Theoryoftheelasticpropertiesofrubber显示文摘JamesH M GuthE 1943JChemPhys1943,11,:1
13Evaluation of corrosion resistance and cytocompatibility of graded metal carbon film on Ti and NiTi prepared by hybrid cathodic arc/glow discharge plasmaassisted chemical vapor deposition显示文摘Jamesh M I Li P Bilek M M M 2015Corrosion Science2015,,:1
14The effect of intravenous fluid replacement on the response to mannitol in experimental cerebral edema:an analysis of intracranial pressure,serum osmolality,serum electrolytes,and brain water content显示文摘JamesHE 2006ActaNeurochir2006,,:1
15Quantifying and reducing the risk of bloodborne pathogen exposure,association of operating room nur- ses显示文摘Bernadette S Claire IR JamesH 2001AORN J2001,73,6:1
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