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2篇 您的检索式:作者名="LuShan Yue"
    题名 作者 年代 出处 被引量
1Organosilicon-group-derived silica-ionogel electrolyte for lithium ion batteries显示文摘In order to avoid leakage problem caused by liquid electrolyte, a new ionogel electrolyte was developed by in situ immobilizing organosilicon-functionalized ionic liquid within a nanoporous silica matrix. The ionic liquid evenly coats on the surface of porous silica and fills in the silica framework pores with no strong chemical interaction.The ionogel electrolyte has the dual advantages of a silica solid support and a wide electrochemical stability window of ionic liquid(4.87 V vs. Li^+/Li). The half-cells assembled with this electrolyte and LiFePO_4 electrode have excellent performance at room temperature and 60 ℃. The Li/SiO_2-IGE/LiFePO_4 cell displays a discharge capacity of 129.1 mAh·g^(-1) after 200 charge/discharge cycles at room temperature.YueJiao Li Cui Guo LuShan Yue WenJie Qu Nan Chen YuJuan Dai RenJie Chen Feng Wu 2018Rare Metals2018,37,6:1
2Recent advances in the efficient degradation of lignocellulosic metabolic networks by lytic polysaccharide monooxygenase显示文摘Along with long-term evolution,the plant cell wall generates lignocellulose and other anti-degradation barriers to confront hydrolysis by fungi.Lytic polysaccharide monooxygenase(LPMO)is a newly defined oxidase in lignocellulosic degradation systems that significantly fuels hydrolysis.LPMO accepts electrons from wide sources,such as cellobiose dehydrogenase(CDH),glucose-methanol-choline(GMC)oxidoreductases,and small phenols.In addition,the extracellular cometabolic network formed by cosubstrates improves the degradation efficiency,forming a stable and efficient lignocellulose degradation system.In recent years,using structural proteomics to explore the internal structure and the complex redox system of LPMOs has become a research hotspot.In this review,the diversity of LPMOs,catalytic domains,carbohydrate binding modules,direct electron transfer with CDH,cosubstrates,and degradation networks of LPMOs are explored,which can provide a systematic reference for the application of lignocellulosic degradation systems in industrial approaches.Xinran Yu Yue Zhao Junhong Yu Lushan Wang 2023Acta Biochimica et Biophysica Sinica2023,55,4:0
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