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Vacancy defect MoSeTe embedded in N and F co-doped carbon skeleton for high performance sodium ion batteries and hybrid capacitors
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作者 Dehui Yang Wentao Guo +6 位作者 Fei Guo Jiaming Zhu Gang Wang Hui Wang Guanghui Yuan Shenghua Ma Beibei Wang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第3期652-664,I0014,共14页
Sodium-ion batteries(SIBs) and hybrid capacitors(SIHCs) have garnered significant attention in energy storage due to their inherent advantages,including high energy density,cost-effectiveness,and enhanced safety.Howev... Sodium-ion batteries(SIBs) and hybrid capacitors(SIHCs) have garnered significant attention in energy storage due to their inherent advantages,including high energy density,cost-effectiveness,and enhanced safety.However,developing high-performance anode materials to improve sodium storage performa nce still remains a major challenge.Here,a facile one-pot method has been developed to fabricate a hybrid of MoSeTe nanosheets implanted within the N,F co-doped honeycomb carbon skeleton(MoSeTe/N,F@C).Experimental results demonstrate that the incorporation of large-sized Te atoms into MoSeTe nanosheets enlarges the layer spacing and creates abundant anion vacancies,which effectively facilitate the insertion/extraction of Na^(+) and provide numerous ion adsorption sites for rapid surface capacitive behavior.Additionally,the heteroatoms N,F co-doped honeycomb carbon skeleton with a highly conductive network can restrain the volume expansion and boost reaction kinetics within the electrode.As anticipated,the MoSeTe/N,F@C anode exhibits high reversible capacities along with exceptional cycle stability.When coupled with Na_(3)V_(2)(PO_(4))_(3)@C(NVPF@C) to form SIB full cells,the anode delivers a reversible specific capacity of 126 mA h g^(-1) after 100 cycles at 0.1 A g^(-1).Furthermore,when combined with AC to form SIHC full cells,the anode demonstrates excellent cycling stability with a reversible specific capacity of50 mA h g^(-1) keeping over 3700 cycles at 1.0 A g^(-1).In situ XRD,ex situ TEM characterization,and theoretical calculations(DFT) further confirm the reversibility of sodium storage in MoSeTe/N,F@C anode materials during electrochemical reactions,highlighting their potential for widespread practical application.This work provides new insights into the promising utilization of advanced transition metal dichalcogenides as anode materials for Na^(+)-based energy storage devices. 展开更多
关键词 mosete N F co-doped honeycomb carbon skeleton Sodium-ion batteries Sodium-ion hybrid capacitor
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专业基础课程“MOSET”五位一体教学模式构建与实践——以数学物理方法为例 被引量:3
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作者 杜俊杰 赵玉杰 +1 位作者 陈俞钱 杜艳军 《教师》 2021年第27期126-128,共3页
专业基础课程是介于公共课与专业课之间的桥梁性课程,除注重夯实基础之外,还必须充分发挥其专业铺路石的作用,为后续人才培养提供保障。文章基于OBE(Outcome-Based Education)理念,重构满足专业特色差异化需求的教学范式,立足多门专业... 专业基础课程是介于公共课与专业课之间的桥梁性课程,除注重夯实基础之外,还必须充分发挥其专业铺路石的作用,为后续人才培养提供保障。文章基于OBE(Outcome-Based Education)理念,重构满足专业特色差异化需求的教学范式,立足多门专业基础课程教学实践总结出“MOSET”五位一体教学模式,并详细阐述了该模式的基本概念与内涵,课程建设思路与实施过程,取得的初步成效与总结反思。实行“MOSET”模式后,学生能更有效地掌握必备基本概念与方法,从而使后续课程知识的对接和迁移更加顺畅。 展开更多
关键词 专业基础课程 “MOSET”五位一体 多元化评价 数学物理方法
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