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5篇 您的检索式:作者名="Yunyang Yu"
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1Precise fabrication of single-atom alloy co-catalyst with optimal charge state for enhanced photocatalysis显示文摘While the surface charge state of co-catalysts plays a critical role for boosting photocatalysis,studies on surface charge regulation via their precise structure control remain extremely rare.Herein,metal-organic framework(MOF)stabilized bimetallic Pd@Pt nanoparticles,which feature adjustable Pt coordination environment and a controlled structure from core-shell to single-atom alloy(SAA),have been fabricated.Significantly,apart from the formation of a Mott-Schottky junction in a conventional way,we elucidate that Pt surface charge regulation can be alternatively achieved by changing its coordination environment and the structure of the Pd@Pt co-catalyst,where the charge between Pd and Pt is redistributed.As a result,the optimized Pd10@Pt1/MOF composite,which involves an unprecedented SAA co-catalyst,exhibits exceptionally high photocatalytic hydrogen production activity,far surpassing its corresponding counterparts.Yating Pan Yunyang Qian Xusheng Zheng Sheng-Qi Chu Yijun Yang Chunmei Ding Xi Wang Shu-Hong Yu Hai-Long Jiang 2021National Science Review2021,8,1:4
2Determination of Double Beta Decay Half-Life of 136Xe with the PandaX-4T Natural Xenon Detector显示文摘Precise measurement of two-neutrino double beta decay(DBD)half-life is an important step for the searches of Majorana neutrinos with neutrinoless double beta decay.We report the measurement of DBD half-life of 136xe using the Pandax-4T dual-phase Time Projection Chamber(TPC)with 3.7-tonne natural xenon and the first 94.9-day physics data release.Lin Si Zhaokan Cheng Abdusalam Abdukerim Zihao Bo Wei Chen Xun Chen Yunhua Chen Chen Cheng Yunshan Cheng Xiangyi Cui Yingjie Fan Deqing Fang Changbo Fu Mengting Fu Lisheng Geng Karl Giboni Linhui Gu Xuyuan Guo Ke Han Changda He Jinrong He Di Huang Yanlin Huang Zhou Huang Ruquan Hou Xiangdong Ji Yonglin Ju Chenxiang Li Jiafu Li Mingchuan Li Shu Li Shuaijie Li Qing Lin Jianglai Liu Xiaoying Lu Lingyin Luo Yunyang Luo Wenbo Ma Yugang Ma Yujun Mao Yue Meng Nasir Shaheed Xiaofeng Shang Xuyang Ning Ningchun Qi Zhicheng Qian Xiangxiang Ren Changsong Shang Guofang Shen Wenliang Sun Andi Tan Yi Tao Anqing Wang Meng Wang Qiuhong Wang Shaobo Wang Siguang Wang Wei Wang Xiuli Wang Zhou Wang Yuehuan Wei Mengmeng Wu Weihao Wu Jingkai Xia Mengjiao Xiao Xiang Xiao Pengwei Xie Binbin Yan Xiyu Yan Yong Yang Chunxu Yu Jumin Yuan Ying Yuan Zhe Yuan Dan Zhang Minzhen Zhang Peng Zhang Shibo Zhang Shu Zhang Tao Zhang Li Zhao Qibin Zheng Jifang Zhou Ning Zhou Xiaopeng Zhou Yong Zhou 2023Research2023,,2:0
3Visualizing the nucleoplasmic maturation of human pre-60S ribosomal particles显示文摘Eukaryotic ribosome assembly is a highly orchestrated process that involves over two hundred protein factors.After early assembly events on nascent rRNA in the nucleolus,pre-60S particles undergo continuous maturation steps in the nucleoplasm,and prepare for nuclear export.Here,we report eleven cryo-EM structures of the nuclear pre-60S particles isolated from human cells through epitope-tagged GNL2,at resolutions of 2.8–4.3Å.These high-resolution snapshots provide fine details for several major structural remodeling events at a virtual temporal resolution.Two new human nuclear factors,L10K and C11orf98,were also identified.Comparative structural analyses reveal that many assembly factors act as successive place holders to control the timing of factor association/dissociation events.They display multi-phasic binding properties for different domains and generate complex binding inter-dependencies as a means to guide the rRNA maturation process towards its mature conformation.Overall,our data reveal that nuclear assembly of human pre-60S particles is generally hierarchical with short branch pathways,and a few factors display specific roles as rRNA chaperones by confining rRNA helices locally to facilitate their folding,such as the C-terminal domain of SDAD1.Yunyang Zhang Xiaomeng Liang Sha Luo Yan Chen Yu Li Chengying Ma Ningning Li Ning Gao 2023Cell Research2023,33,11:0
4Growth of High-Quality Multicrystalline Silicon Ingot through the Cristobalite Seeded Method显示文摘Yunyang Yu Junjing Ding Wenliang Chen Zhaoyu Zhang Xucheng Zhou Genxiang Zhong Xinming Huang 2016材料科学与工程(中英文B版)2016,6,6:0
5Growth Process Improvement for Casting High-Performance Multi-Crystalline Silicon Ingots for Solar Cells显示文摘Wenliang Chen Bing Zhou Junjing Ding Yunyang Yu Hui Dong Genxiang Zhong Xinming Huang 2016材料科学与工程(中英文B版)2016,6,4:0
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