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5篇 您的检索式:作者名="LAN Yuwei"
    题名 作者 年代 出处 被引量
1A Photoelectric-Stimulated MoS_(2) Transistor for Neuromorphic Engineering显示文摘The von Neumann bottleneck has spawned the rapid expansion of neuromorphic engineering and brain-like networks.Synapses serve as bridges for information transmission and connection in the biological nervous system.The direct implementation of neural networks may depend on novel materials and devices that mimic natural neuronal and synaptic behavior.By exploiting the interfacial effects between MoS_(2) and AlOx,we demonstrate that an h-BN-encapsulated MoS_(2) artificial synapse transistor can mimic the basic synaptic behaviors,including EPSC,PPF,LTP,and LTD.Efficient optoelectronic spikes enable simulation of synaptic gain,frequency,and weight plasticity.The Pavlov classical conditioning experiment was successfully simulated by electrical tuning,showing associated learning behavior.In addition,h-BN encapsulation effectively improves the environmental time stability of our devices.Our h-BN-encapsulated MoS_(2) artificial synapse provides a new paradigm for hardware implementation of neuromorphic engineering.Shuiyuan Wang Xiang Hou Lan Liu Jingyu Li Yuwei Shan Shiwei Wu David Wei Zhang Peng Zhou 2019Research2019,,1:1
2Synthesis and luminescence properties of SrBPO 5 :Eu 2+ , Mn 2+ phosphor for light-emitting diodes显示文摘Yuwei Lan Linghong Yi Liya Zhou Zhangfa Tong Fuzhong Gong Rongfang Wang 2010Physica B: Physics of Condensed Matter2010,,16:1
3Dye sensitized solar cells using freestanding TiO 2 nanotube arrays on FTO substrate as photoanode显示文摘Qi Pang Limin Leng Lijuan Zhao Liya Zhou Chunjie Liang Yuwei Lan 2010Materials Chemistry and Physics2010,,3:1
4Whole lifecycle observation of single‐spore germinated Streptomyces using a nanogap‐stabilized microfluidic chip显示文摘Streptomyces is a model bacterium to study multicellular differentiation and the major reservoir for antibiotics discovery.However,the cellular‐level lifecycle of Streptomyces has not been well studied due to its complexity and lack of research tools that can mimic their natural conditions.In this study,we developed a simple microfluidic chip for the cultivation and observation of the entire lifecycle of Streptomyces development from the single‐cell perspective.The chip consists of channels for loading samples and supplying nutrients,microwell arrays for the seeding and growth of single spores,and air chambers beside the microwells that facilitate the development of aerial hyphae and spores.A unique feature of this chip is that each microwell is surrounded by a 1.5µm nanogap connected to an air chamber,which provides a stabilized water–air interface.We used this chip to observe the lifecycle development of Streptomyces coelicolor and Streptomyces griseus germinated from single spores,which revealed differentiation of aerial hyphae with progeny spores at micron‐scale water–air interfaces and air chambers.Finally,we demonstrated the applicability of this chip in phenotypic assays by showing that the microbial hormone A‐Factor is involved in the regulatory pathways of aerial hyphae and spore formation.The microfluidic chip could become a robust tool for studying multicellular differentiation,single‐spore heterogeneity,and secondary metabolism of single‐spore germinated Streptomyces.Dongwei Chen Mengyue Nie Wei Tang Yuwei Zhang Jian Wang Ying Lan Yihua Chen Wenbin Du 2022mLife2022,1,3:0
5Microwave-assisted Synthesis of CdTe Quantum Dots Using 3-Mercaptopropionic Acid as Both a Reducing Agent and a Stabilizer显示文摘HUANG Yantao LAN Yuwei YI Qilei HUANG Hualin WANG Yilin LU Jianping 2016Chemical Research in Chinese Universities2016,32,1:0
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