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作品数:104被引量:177H指数:7
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相关领域:理学更多>>
相关作者:王建峰黄雁飞黄玉溢熊柳梅陈桂芬更多>>
相关机构:中国科学院大学南京农业大学清华大学广西农业科学院更多>>
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相关基金:国家自然科学基金国家重点基础研究发展计划北京市自然科学基金国家科技支撑计划更多>>
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Unveiling solid-solid contact states in all-solid-state lithium batteries:An electrochemical impedance spectroscopy viewpoint
《Journal of Energy Chemistry》2025年第2期16-22,I0002,共8页Jin-Liang Li Liang Shen Zi-Ning Cheng Jun-Dong Zhang Ling-Xuan Li Yu-Tong Zhang Yan-Bin Gao Chunli Guo Xiang Chen Chen-Zi Zhao Rui Zhang Qiang Zhang 
supported by the Beijing Natural Science Foundation(Z200011,L233004);the National Key Research and Development Program(2021YFB2500300);the National Natural Science Foundation of China(52394170,52394171,22109011,22393900,and 22108151);the Tsinghua-Jiangyin Innovation Special Fund(TJISF)(2022JYTH0101);the S&T Program of Hebei(22344402D);the Tsinghua University Initiative Scientific Research Program.
All-solid-state lithium batteries(ASSLBs)are strongly considered as the next-generation energy storage devices for their high energy density and intrinsic safety.The solid-solid contact between lithium metal and solid...
关键词:Electrochemical impedance spectroscopy All-solid-state lithium batteries Solid-solid contacts Finite element method Equivalent circuit model Distribution of relaxation times 
Dynamically self-adjustable liquid-liquid and self-adaptive softcontact solid-solid triboelectric nanogenerator for wave energy harvesting
《Nano Research》2025年第1期404-414,共11页Yong Long Bingqi Zhao Jianan Niu Yuxiu Liu Wei Sha Jiangwen Wang Zhong Lin Wang Weiguo Hu 
support from the National Natural Science Foundation of China(Nos.52173298 and 52192611);the National Key R&D Project from Minister of Science and Technology(No.2021YFA1201603);Beijing Natural Science Foundation(No.Z230024);the Fundamental Research Funds for the Central Universities.
Water wave energy exhibits great potential toalleviate the global energy crisis. However, harvesting andutilizing wave energy are challenging due to its irregularity,randomness, and low frequency. Triboelectric nanoge...
关键词:SELF-ADAPTIVE soft-contact solid-solid LIQUID-LIQUID self-adjustable triboelectric nanogenerator 
The swirl and pyrolysis reaction synergistically enhance solid-solid heat transfer and product separation in cyclone pyrolyzer Author links open overlay panel
《Particuology》2024年第8期118-127,共10页Haorui Niu Jingxuan Yang Wenhao Lian Nan Zhang Yongguo Li Hongzheng Ren Xiaogang Hao Guoqing Guan 
supported by CIRP Open Fund of Radiation Protection Laboratories(grant No.CIRP-RGC-2022-02);Fundamental Research Program of Shanxi Province(grant No.202203021211164);General Program of National Natural Science Foundation of China(grant No.22378285);the National Natural Science Foundation of China(grant No.22108262);Fundamental Research Program of Shanxi Province(grant No.20210302124600);Shanxi Province Foundation for Returness(grant No.2022-138)and Fund Program。
Cyclone pyrolyzer is a novel type of downer that combines centrifugal force field and double-layer cyclone vortex.Research on transfer behavior is helpful to optimize the pyrolyzer to meet the needs of pyrolysis.In th...
关键词:Biomass pyrolysis Cyclone pyrolyzer Intra-particle circulation Synergistic effect 
Advanced solid-solid phase change thermal storage material
《Nano Research Energy》2024年第2期1-2,共2页Xiao Chen Changhui Liu Waseem Aftab 
The practicality of conventional solid-liquid phase change materials(PCMs)is adversely restricted by liquid phase leakage,large volume expansion,shape instability,and severe corrosion in high-temperature thermal manag...
关键词:metallic solid-solid PCMs thermal energy storage high-temperature thermal management 
Optical probing of ultrafast laser-induced solid-to-overdense-plasma transitions被引量:1
《Light(Science & Applications)》2024年第5期973-984,共12页Yasmina Azamoum Georg Alexander Becker Sebastian Keppler Guillaume Duchateau Stefan Skupin Mickael Grech Fabrice Catoire Sebastian Hell Issa Tamer Marco Hornung Marco Hellwing Alexander Kessler Franck Schorcht Malte Christoph Kaluza 
LASERLABEUROPE(Grant agreement nos.871124,European Union’s Horizon 2020 research and innovation program)and from the Bundesministerium für Bildung und Forschung(BMBF,Grant Agreements No.03VNE2068D,No.03Z1H531,No.05K19SJB,No.05K19SJC,No.05K22SJA,and No.05K22SJB).
Understanding the solid target dynamics resulting from the interaction with an ultrashort laser pulse is a challenging fundamental multi-physics problem involving atomic and solid-state physics,plasma physics,and lase...
关键词:laser acceleration solid 
Model of self-generated magnetic field generation from relativistic laser interaction with solid targets
《Chinese Physics B》2024年第5期511-517,共7页严睿 邹德滨 赵娜 杨晓虎 蒋祥瑞 胡理想 徐新荣 周泓宇 余同普 卓红斌 邵福球 银燕 
supported by the National Natural Science Foundation of China(Grant Nos.12175310,12305268,and U2241281);the Natural Science Foundation of Hunan Province(Grant Nos.2024JJ6184,2022JJ20042,and 2021JJ40653);the Scientific Research Foundation of Hunan Provincial Education Department(Grant Nos.22B0655 and 22A0435)。
Generation of self-generated annular magnetic fields at the rear side of a solid target driven by relativistic laser pulse is investigated by using theoretical analysis and particle-in-cell simulations.The spatial str...
关键词:self-generated magnetic field laser solid-target interaction micro-structured plasma grating 
Sensing the heavy water concentration in an H_(2)O-D_(2)O mixture by solid-solid phononic crystals
《Chinese Physics B》2024年第4期493-498,共6页Mohammadreza Rahimi Ali Bahrami 
A new method based on phononic crystals is presented to detect the concentration of heavy water(D_(2)O)in an H_(2)O-D_(2)O mixture.Results have been obtained and analyzed in the concentration range of 0%-10%and 90%-10...
关键词:phononic crystals sensor H_(2)O-D_(2)O mixture CAVITY 
Theplant cytosolic m^(6)A RNA methylome stabilizes photosynthesis in the cold被引量:1
《Plant Communications》2023年第6期70-84,共15页Alexandre Magno Vicente Nikolay Manavski Paul Torben Rohn Lisa-Marie Schmid Antoni Garcia-Molina Dario Leister Charlotte Seydel Leo Bellin Torsten Möhlmann Gregor Ammann Stefanie Kaiser Jörg Meurer 
supported by the Deutsche Akademischer Austauschdienst(91692277 to A.M.V.);the Deutsche Forschungsgemeinschaft(TRR 175 projects B07 to D.L.,B08 to T.M.,and A03 to J.M.).
The sessile lifestyle of plants requires an immediate response to environmental stressors that affect photosynthesis,growth,and crop yield.Here,we showed that three abiotic perturbations—heat,cold,and high light—tri...
关键词:m^(6)A RNA methylation cold acclimation stress response Arabidopsis thaliana PHOTOSYNTHESIS CHLOROPLAST 
VLS和VSS生长机制调控的单层TMD中的反向掺杂分布被引量:1
《Science China Materials》2023年第12期4723-4732,共10页田闯 肖润涵 隋妍萍 冯钰涵 王浩敏 赵孙文 刘家文 高秀丽 孙浩 彭松昂 金智 刘新宇 王爽 李湃 于广辉 
financially supported by the Science and Technology Commission of Shanghai Municipality(20501130200);the National Natural Science Foundation of China(51402342 and 61775201);the National Defense Technology Innovation Special Zone Project.
掺杂是改善过渡金属二硫族化合物(TMD)单层薄膜性能的重要方法.然而,现有的研究大多集中在掺杂能力上,对掺杂分布的研究还处于起步阶段.近年来,基于旋涂化学气相沉积法研究了掺杂原子空间掺杂分布的差异.这些掺杂的TMD大多是通过气-液-...
关键词:transition metal dichalcogenide doping distribution vapor-liquid-solid vapor-solid-solid chemical vapor deposition 
Activating coordinative conjugated polymer via interfacial electron transfer for efficient CO_(2) electroreduction
《Journal of Energy Chemistry》2023年第8期313-323,I0009,共12页Jing Zhang Jia-Jun Dai De-Quan Cao Heng Xu Xing-Yu Ding Chun-Hua Zhen Beate Paulus Jin-Yu Ye Qian Liang Jun-Ke Liu Shi-Jun Xie Sai-Sai Deng Zhen Wang Jun-Tao Li Yao Zhou Shi-Gang Sun 
The National Key Research and Development Program of China(2021YFA1502000 and 2022YFA1505300);the National Natural Science Foundation of China (22288102, 22072124);support from Beijing Synchrotron Radiation Facility (1W1B, BSRF);China Scholarship Council for the financial support。
With tunable local electronic environment,high mass density of MN4sites,and ease of preparation,metal-organic conjugated coordinative polymer(CCP) with inherent electronic conductivity provides a promising alternative...
关键词:Metal-organic solid compounds Conjugated coordinative polymer Solid-solid interfacial electron transfer MN_(4)sites Electrocatalysis 
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