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7篇 您的检索式:作者名="Xuewei Fu"
    题名 作者 年代 出处 被引量
1Natural polypeptides treat pollution complex: Moistureresistant multi-functional protein nanofabrics for sustainable air filtration显示文摘有象优秀过滤效率, eco 友好,和环境稳定性那样的特征的绿多功能的空气过滤器的开发极其被要求探讨弄脏的空气的增加的担心。自然蛋白质例如酱油蛋白质和明胶,作为由于富有的功能的组的多功能的空气过滤材料是吸引人的候选人;然而,这些简历材料对潮湿脆弱,它在实践限制他们的宽广申请。在这个工作,从丰富的玉米导出的玉米朊的恐水病的蛋白质第一次被修改经由 electrospinning 生产高效的 nanofilters。玉米朊 nanofabrics 在无毒的溶剂和 co-electrospinning 代理人的帮助下被制作, poly (乙烯氧化物) 。结果表明基于玉米朊的 nanofabrics 为从 0.1 ~ 10 m 的不同尺寸的微粒事的同时的移动显示出高效率(>99.5%) 并且某些气体的有毒的化学药品(>70%) 。另外,到纤维素纸巾的优秀潮湿抵抗和好粘附用作空气过滤器底层的玉米朊 nanofabrics 表演。这研究基于象玉米朊那样的蛋白质为开发多功能的绿空气过滤器正在答应材料的恐水病的天赋表明那 nanofabrics。Huafeng Tian Xuewei Fu Min Zheng Yu Wang Yichao Li Aimin Xiang Wei-Hong Zhong 2018Nano Research2018,11,8:5
2Overproduction of OsRACK1A,an effector-targeted scaffold protein promoting OsRBOHB-mediated ROS production,confers rice floral resistance to false smut disease without yield penalty显示文摘Grain formation is fundamental for crop yield but is vulnerable to abiotic and biotic stresses.Rice grain production is threatened by the false smut fungus Ustilaginoidea virens,which specifically infects rice floral organs,disrupting fertilization and seed formation.However,little is known about the molecular mechanisms of the U.virens-rice interaction and the genetic basis of floral resistance.Here,we report that U.virens secretes a cytoplasmic effector,UvCBP1,to facilitate infection of rice flowers.Mechanistically,UvCBP1 interacts with the rice scaffold protein OsRACK1A and competes its interaction with the reduced nicotinamide adenine dinucleotide phosphate oxidase OsRBOHB,leading to inhibition of reactive oxygen species(ROS)production.Although the analysis of natural variation revealed no OsRACK1A variants that could avoid being targeted by UvCBP1,expression levels of OsRACK1A are correlated with field resistance against U.virens in rice germplasm.Overproduction of OsRACK1A restores the OsRACK1A-OsRBOHB association and promotes OsRBOHB phosphorylation to enhance ROS production,conferring rice floral resistance to U.virens without yield penalty.Taken together,our findings reveal a new pathogenic mechanism mediated by an essential effector from a flower-specific pathogen and provide a valuable genetic resource for balancing disease resistance and crop yield.Guo-Bang Li Jia-Xue He Jin-Long Wu He Wang Xin Zhang Jie Liu Xiao-Hong Hu Yong Zhu Shuai Shen Yi-Fei Bai Zong-Lin Yao Xin-Xian Liu Jing-Hao Zhao De-Qiang Li Yan Li Fu Huang Yan-Yan Huang Zhi-Xue Zhao Ji-Wei Zhang Shi-Xin Zhou Yun-Peng Ji Mei Pu Peng Qin Shigui Li Xuewei Chen Jing Wang Min He Weitao Li Xian-Jun Wu Zheng-Jun Xu Wen-Ming Wang Jing Fan 2022Molecular Plant2022,15,11:2
3Review:Natural Polymer Electrolytes for Lithium Ion Batteries显示文摘Polymer electrolytes are attractive materials towards achieving safe,flexible and high-performance energy storage devices( ESDs) such as lithium ion batteries( LIBs). Conventional polymer electrolytes are confronted with big challenges to achieve high ionic conductivity,good mechanical properties,excellent biocompatibility and environmental friendliness. In this context,natural polymeric materials have appealing merits of multi-functionality,ease of accessibility,good mechanical strength,etc. making them promising candidates to substitute conventional polymer electrolytes. Recently,the rational design and fabrication of advanced natural bio-based polymer electrolytes have made important progresses. In this review, we summarize recent developments in terms of polymer electrolytes using natural polymers for several application purposes. This review also involves the merits and demerits of the different natural polymers that have been investigated thus far. The insights on state-of-the-art for natural polymer electrolytes and possible solutions for further improvement of them are discussed as well in this review.Xuewei Fu Yu Wang Louis Scudiero Weihong Zhong 2018Journal of Harbin Institute of Technology(New Series)2018,25,1:1
4A protein-enabled protective film with functions of self-adapting and anion-anchoring for stabilizing lithium-metal batteries显示文摘Practical implementations of rechargeable lithium(Li)metal batteries have long been plagued by multiple problems of Li anode,such as Li dendrite growth,large volume change,low Coulombic efficiency.Here,we report a protein-enabled film that can provide effective protection for Li metal.The protective film with an integrated design of high flexibility,strong adhesion and high Li-ion transference number(0.80)is fabricated by incorporating denatured zein(corn protein)with polyethylene oxide(PEO)acting as an age nt for sustaining the denatured protein chains against refolding via the intermolecular interactions between them.Thus,a conformable zein-enabled protective film(zein@PEO)with simultaneous en hancement in flexibility,modulus and adhesion strength is gen erated to offer both functi ons of self-adapting and anion-anchoring abilities.The results show that the zein@PEO film is able to accommodate the volume change,reduce the side reactions,and homogenize the ion deposition.Benefiting from these significant properties/fu nctions,the Li/Cu cell with the zein@PEO film delivers prolonged cycle life for over 500 hours with stable performance.Paired with LiMn_(2)O_(4) cathode,the capacity,cycle stability and rate performance of the cell are remarkably improved as well,demonstrati ng the effectiveness in stabilizing Li metal batteries.Chenxu Wang Xuewei Fu Shengnan Lin Jin Liu Wei-Hong Zhong 2022Journal of Energy Chemistry2022,31,1:1
5Active Carbon Regeneration Experiment of Cold Neutron Source System on CARR显示文摘When cold neutron source system on China Advanced Research Reactor(CARR)is running,the helium of helium refrigeration system required to pass through the compressor.But the compressor that we used is screw compressor,so in the process of the compressor compressed there is part of oil and impurities will be out of the compressor with helium.In order to purityLANG Yuqing LI Jianlong FU Ziliang ZOU Zhiquan ZHANG Shuai ZHU Xuewei LI Xiang WANG Kuo HU Hao WANG Yu 2017Annual Report of China Institute of Atomic Energy2017,,1:0
6Arbitrary skin metallization by pencil-writing inspired solid-ink rubbing for advanced energy storage and harvesting显示文摘The development of a durable metallic coating on diverse substrates is both intriguing and challenging,particularly in the research of metal-conductive materials for applications such as batteries,soft electronics,and beyond.Herein,by learning from the pencil-writing process,a facile solid-ink rubbing technology(SIR-tech)is invented to address the above challenge.The solid-ink is exampled by rational combination of liquid metal and graphite particles.By harnessing the synergistic effects between rubbing and adhesion,controllable metallic skin is successfully formed onto metals,woods,ceramics,and plastics without limitation in size and shape.Moreover,outperforming pure liquid-metal coating,the composite metallic skin by SIR-tech is very robust due to the self-lamination of graphite nanoplate exfoliated by liquid-metal rubbing.The critical factors controlling the structures-properties of the composite metallic skin have been systematically investigated as well.For applications,the SIR-tech is demonstrated to fabricate high-performance composite current collectors for next-generation batteries without traditional metal foils.Meanwhile,advanced skin-electrodes are further demonstrated for stable triboelectricity generation even under temperature fluctuation from-196 to 120℃.This facile and highly-flexible SIR-tech may work as a powerful platform for the studies on functional coatings by liquid metals and beyond.Yonghan Zhou Zhongfeng Ji Wenrui Cai Xuewei He Ruiying Bao Xuewei Fu Wei Yang Yu Wang 2024Journal of Energy Chemistry2024,88,1:0
7Revisiting the electrode manufacturing: A look into electrode rheology and active material microenvironment显示文摘The microstructures on electrode level are crucial for battery performance, but the ambiguous understanding of both electrode microstructures and their structuring process causes critical challenges in controlling and evaluating the electrode quality during fabrication. In this review, analogous to the cell microenvironment well-known in biology, we introduce the concept of ‘‘active material microenvironment”(ME@AM)that is built by the ion/electron transport structures surrounding the AMs, for better understanding the significance of the electrode microstructures. Further, the scientific significance of electrode processing for electrode quality control is highlighted by its strong links to the structuring and quality control of ME@AM. Meanwhile, the roles of electrode rheology in both electrode structuring and structural characterizations involved in the entire electrode manufacturing process(i.e., slurry preparation, coating/printing/extrusion, drying and calendering) are specifically detailed. The advantages of electrode rheology testing on in-situ characterizations of the electrode qualities/structures are emphasized. This review provides a glimpse of the electrode rheology engaged in electrode manufacturing process and new insights into the understanding and effective regulation of electrode microstructures for future high-performance batteries.Yan He Lei Jing Yuan Ji Zhiwei Zhu Lanxiang Feng Xuewei Fu Yu Wang 2022Journal of Energy Chemistry2022,31,9:0
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