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86篇 您的检索式:作者名="Fransaer"
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1Boosting Lean Electrolyte Lithium-Sulfur Battery Performance with Transition Metals: A Comprehensive Review显示文摘Lithium–sulfur(Li–S) batteries have received widespread attention, and lean electrolyte Li–S batteries have attracted additional interest because of their higher energy densities. This review systematically analyzes the effect of the electrolyte-to-sulfur(E/S) ratios on battery energy density and the challenges for sulfur reduction reactions(SRR) under lean electrolyte conditions. Accordingly, we review the use of various polar transition metal sulfur hosts as corresponding solutions to facilitate SRR kinetics at low E/S ratios(< 10 μL mg~(-1)), and the strengths and limitations of different transition metal compounds are presented and discussed from a fundamental perspective. Subsequently, three promising strategies for sulfur hosts that act as anchors and catalysts are proposed to boost lean electrolyte Li–S battery performance. Finally, an outlook is provided to guide future research on high energy density Li–S batteries.Hui Pan Zhibin Cheng Zhenyu Zhou Sijie Xie Wei Zhang Ning Han Wei Guo Jan Fransaer Jiangshui Luo Andreu Cabot Michael Wübbenhorst 2023Nano-Micro Letters2023,15,10:2
2Sulfur-modified nickel selenide as an efficient electrocatalyst for the oxygen evolution reaction显示文摘The sluggish four-electron transfer of the oxygen evolution reaction(OER)limits the performance of water electrolyzers.Hence,OER electrocatalysts based on earth-abundant elements are urgently needed.Heteroatom doping has been an efficient approach to boost the intrinsic OER activity of the active sites by modifying the electronic structure.Here,a simple anion substitution strategy is reported that increases the OER activity of nickel selenides via a one-step hydrothermal treatment of a metal–organic framework precursor.The resulting S-substituted Ni_(3)Se_(4) nanoparticles display distortion of their crystal lattice.As expected,the sulfur substitution modifies the electronic structure of Ni_(3)Se_(4) and leads to outstanding electrocatalytic activity.All the S-substituted Ni_(3)Se_(4) catalysts exhibit higher OER activities than the original Ni_(3)Se_(4).The optimized catalyst achieves a current density of 10 mA cm^(−2) at an overpotential of 275 mV with a Tafel slope of 64 mV dec^(−1) in 1.0 M KOH.In addition to its electrochemical activity,the S-Ni_(3)Se_(4)-2 catalyst also exhibits good stability with only a 7.5%increase in overpotential at 50 mA cm^(−2) after 100 hours.This work demonstrates one strategy to modify the electronic structure of transition metal compounds by anion regulation.Kai Wan Jiangshui Luo Xuan Zhang Palaniappan Subramanian Jan Fransaer 2021Journal of Energy Chemistry2021,30,11:2
3Electrodeposition and sliding wear resistance of nickel composite coatings containing micron and submicron SiC particles显示文摘GARCIA I FRANSAER J CELIS J P 2001Surface & Coatings Technology2001,148,:1
4Electrodeposition and sliding wear resistance of nickel composite coatings containing micron and submicron SiC particles显示文摘 Fransaer J Celis J P 2001Surface and Coatings Technology2001,148,:1
5Electrochemical investigation of the codeposition of SiC and SiO2 particles with nickel显示文摘NOWAK P SOCHA R P KAISHEVA M FRANSAER J CELLS J P TOINOV Z 2000Journal of Applied Electrochemistry2000,30,4:1
6Mechanism of Composite Electroplating显示文摘Fransaer J Celis J P 1993Metal Finishing1993,91,6:1
7New insights into the mechanism of composite plating显示文摘 Celis J P 2001Galvanotechnik2001,92,6:1
8Electrodeposition and sliding wear resistance of nickel composite coatings containing micron and submicron SiC particles显示文摘GARCIA I FRANSAER J CELLS J P 2001Surface and Coatings Technology2001,148,23:1
9Effect of deposition conditions on the formation of silica-silicate thin films 显示文摘Socha R P Pommier N Fransaer J 2007Surface Coationgs Technology2007,201,12:1
10Electrodeposition and sliding wear resistance of nickel composite coatings containing micron and submicron SiC particles显示文摘 FRANSAER J CELIS J P 2001Surface and Coatings Technology2001,148,23:1
11A mathematical model for the electrolytic codeposition of particles with ametallic matrix显示文摘Fransaer J Celis J P Roos J R 1992J Electrochem Soc1992,139,2:1
12Electrodeposition and sliding wear resistance of nickel composite coating containing micro and submicron SiC particles 显示文摘GARCIA L FRANSAER J CELIS J P 2001Sur Coat Technol2001,148,:1
13Eleetrodeposition and slid- ing wear resistance of nickel composite coatings containing micron and submicron SiC particles 显示文摘Garcia I Fransaer J Celis J P 2001Surf Coat Technol2001,148,:1
14Mechanisms of composite electroplating显示文摘Fransaer J 1993Met Fin1993,6,:1
15Electrodeposition and sliding wear resistance of nickel composite coatings containing micron and submicron SiC particles显示文摘I Garcia J Fransaer J.-P Celis 2001Surface & Coatings Technology2001,,2:1
16Electrodeposition and slid- ing wear resistance of nickel composite coatings containing micron anti submicron SiC particles 显示文摘Garcia I Fransaer J Celis J P 2001Surface and Coat- ings Technology2001,148,2:1
17Electrodeposition and sliding wear resistance of nickel composite coatings containing micron and submicron SiC particles显示文摘Garcia I Fransaer J Celis J P 2001Surface and Coatings Technology2001,148,23:1
18Electrodeposition and sliding wear resistance of nickel composite coatings containing micron and submicron SiC particles 显示文摘Gareia I Fransaer J Celis J P 2001Surface and Coatings Technology2001,148,23:1
19Electrochemical investigation of the codeposition of SiC and SiO2 particles with nickel显示文摘NOWAK P SOCHA R P KAISHEVA M FRANSAER J CELIS J P STOINOV Z 2000J Appl Electrochem2000,30,:1
20Electrodeposition and sliding wear resistance of nickel composite coatings containing micron and submicron SiC particles 显示文摘Garcia I Fransaer J Celis J P 2001Surf Coat Techn2001,148,23:1
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