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3篇 您的检索式:作者名="Jiahui Kuang"
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1Compact logic operator utilizing a single-layer metasurface显示文摘In this paper, we design and demonstrate a compact logic operator based on a single-layer metasurface at microwave frequency. By mapping the nodes in the trained fully connected neural network(FCNN) to the specific unit cells with phase control function of the metasurface, a logic operator with only one hidden layer is physically realized. When the incident wave illuminates specific operating regions of the metasurface, corresponding unit cells are activated and can scatter the incident wave to two designated zones containing logical information in the output layer. The proposed metasurface logic operator is experimentally verified to achieve three basic logic operations(NOT, OR, and AND) under different input signals. Our design shows great application potential in compact optical systems, low-power consumption information transmission, and ultrafast wave-based full signal processing.Zihan Zhao Yue Wang Xumin Ding Haoyu Li Jiahui Fu Kuang Zhang Shah Nawaz Burokur Qun Wu 2022Photonics Research2022,10,2:1
2Molecular evolution and expression patterns of myxovirus resistance proteins in Lampetra japonica显示文摘The myxovirus resistance(Mx)protein has strong GTP phosphohydrolase(GTPase)activity and is a member of the evolutionarily conserved GTPase dynamin protein family.The Mx protein sequence is divided into three parts:the amino-terminal GTPase domain,the central interactive domain(CID),and the carboxylterminal GTPase effector domain(GED)with a leucine zipper motif[1].The GTPase domain,a relatively conserved part of the Mx protein and other members of the dynamin protein family,is composed of approximately 300 amino acids.Jinzhao Liu Meiyao Chu Jiahui Kuang Xinran Wang Yijie Zhang Lutian Wang Yimeng Xia Yifan Sun Xinxin Liu Jing Li Jun Li Ting Zhu 2024Acta Biochimica et Biophysica Sinica2024,56,3:0
3Realizing high-performance all-solid-state batteries with sulfide solid electrolyte and silicon anode:A review显示文摘Sulfide solid electrolyte(SE)is one of the most promising technologies for all-solid-state batteries(ASSBs)because of its high ionic conductivity and ductile mechanical properties.In order to further improve the energy density of sulfide-based ASSBs and promote practical applications,silicon anodes with ultrahigh theoretical capacity(4,200 mAh·g^(−1))and rich resource abundance have broad commercial prospects.However,significant challenges including bulk instability of sulfide SEs and poor utilization of silicon materials have severely impeded the ASSBs from becoming viable.In this review,we first introduce the critical bulk properties of sulfide SEs and the most recent improving strategies covering the ionic conductivity,air stability,electrochemical window,mechanical stability,thermostability and solvent stability.Next,we introduce the main factors affecting the compatibility of silicon and sulfide SE,including the carbon’s effect,particle size of silicon,external pressure,silicon composite matrix and the depth of silicon’s lithiation.Finally,we discuss possible research directions in the future.We hope that this review can provide a comprehensive picture of the role of nanoscale approaches in recent advances in ASSBs with sulfide and silicon,as well as a source of inspiration for future research.Xinyang Wang Kuang He Siyuan Li Jiahui Zhang Yingying Lu 2023Nano Research2023,16,3:0
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