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7篇 您的检索式:作者名="Jingming Su"
    题名 作者 年代 出处 被引量
1Alpha-Synuclein Pathology and Axonal Degeneration of the Peripheral Motor Nerves Innervating Pharyngeal Muscles in Parkinson Disease显示文摘Liancai Mu Stanislaw Sobotka Jingming Chen Hungxi Su Ira Sanders Charles H. Adler Holly A. Shill John N. Caviness Johan E. Samanta Thomas G. Beach 2013Journal of Neuropathology & Experimental Neurology2013,,2:1
2Preparation and performance of antifouling PVC42PVC blend ultrafiltration membranes 显示文摘L1U Jiazhen SU Yanlei PENG Jingming 2012Ind Eng Chem Res2012,51,24:1
3Alpha-Synuclein Pathology and Axonal Degeneration of the Peripheral Motor Nerves Innervating Pharyngeal Muscles in Parkinson Disease显示文摘Liancai Mu Stanislaw Sobotka Jingming Chen Hungxi Su Ira Sanders Charles H. Adler Holly A. Shill John N. Caviness Johan E. Samanta Thomas G. Beach 2013Journal of Neuropathology & Experimental Neurology2013,,2:1
4Parkinson Disease Affects Peripheral Sensory Nerves in the Pharynx显示文摘Liancai Mu Stanislaw Sobotka Jingming Chen Hungxi Su Ira Sanders Themba Nyirenda Charles H. Adler Holly A. Shill John N. Caviness Johan E. Samanta Lucia I. Sue Thomas G. Beach 2013Journal of Neuropathology & Experimental Neurology2013,,7:1
5Electrical and optical property of annealed Te-doped GaSb显示文摘GaSb is the most suitable substrate in the epitaxial growth of mixed semiconductors of GaSb system.In this work,Te-doped GaSb bulk crystals with different doping concentration have been annealed at 550℃ for100 h in ambient antimony.The annealed samples have been studied by Hall effect measurement,infrared(IR)optical transmission,Glow discharge mass spectroscopy(GDMS) and photoluminescence(PL) spectroscopy.After annealing,Te-doped GaSb samples exhibit a decrease of carrier concentration and increase of mobility,along with an improvement of below gap IR transmission.Native acceptor related electrical compensation analysis suggests a formation of donor defect with deeper energy level.The mechanism of the variation of the defect and its influence on the material properties are discussed.Jie Su Tong Liu Jingming Liu Jun Yang Guiying Shen Yongbiao Bai Zhiyuan Dong Fangfang Wang Youwen Zhao 2017Journal of Semiconductors2017,38,4:0
6Revealing alkali metal ions transport mechanism in the atomic channels of Au@a-MnO_(2)显示文摘Understanding alkali metal ions’(e.g.,Li^(+)/Na^(+)/K^(+))transport mechanism is challenging but critical to improving the performance of alkali metal batteries.Herein using a-MnO_(2)nanowires as cathodes,the transport kinetics of Li^(+)/Na^(+)/K^(+)in the 2×2 channels of a-MnO_(2)with a growth direction of[001]is revealed.We show that ion radius plays a decisive role in determining the ion transport and electrochemistry.Regardless of the ion radii,Li^(+)/Na^(+)/K^(+)can all go through the 2×2 channels of a-MnO_(2),generating large stress and causing channel merging or opening.However,smaller ions such as Li^(+)and Na^(+)cannot only transport along the[001]direction but also migrate along the<110>direction to the nanowire surface;for large ion such as K^(+),diffusion along the<110>direction is prohibited.The different ion transport behavior has grand consequences in the electrochemistry of metal oxygen batteries(MOBs).For Li-O_(2)battery,Li^(+)transports uniformly to the nanowire surface,forming a uniform layer of oxide;Na^(+)also transports to the nanowire surface but may be clogged locally due to its larger radius,therefore sporadic pearl-like oxides form on the nanowire surface;K^(+)cannot transport to the nanowire surface due to its large radius,instead,it breaks the nanowire locally,causing local deposition of potassium oxides.The study provides atomic scale understanding of the alkali metal ion transport mechanism which may be harnessed to improve the performance of MOBs.Jingzhao Chen Yong Su Hongjun Ye Yushu Tang Jitong Yan Zhiying Gao Dingding Zhu Jingming Yao Xuedong Zhang Tingting Yang Baiyu Guo Hui Li Qiushi Dai Yali Liang Jun Ma Bo Wang Haiming Sun Qiunan Liu Jing Wang Congcong Du Liqiang Zhang Yongfu Tang Jianyu Huang 2023Journal of Energy Chemistry2023,,7:0
7A Novel Approach for Image Encryption with Chaos-RNA显示文摘In today’s information society,image encryption technology is crucial to protecting Internet security.However,traditional image encryption algorithms have problems such as insufficient chaotic characteristics,insufficient randomness of keys,and insecure Ribonucleic Acid(RNA)encoding.To address these issues,a chaos-RNA encryption scheme that combines chaotic maps and RNA encoding was proposed in this research.The initial values and parameters of the chaotic system are first generated using the Secure Hash Algorithm 384(SHA-384)function and the plaintext image.Next,the Lühyperchaotic system sequence was introduced to change the image’s pixel values to realize block scrambling,and further disturbance is achieved through spiral index sequence to enhance encryption effectiveness.Subsequently,to obtain the final encrypted image,the diffusion is accomplished through different RNA encoding rules and operation rules corresponding to the chaotic sequence generated by an improved one-dimensional chaotic map(1DCM).Here innovatively propose four new RNA operation rules,increasing the difficulty of decryption.Simulation results demonstrate that the normalized pixel change rate(NPCR)and the unified average changed intensity(UACI)values of the tested encrypted images were 99.61%and 33.46%,respectively.The average ciphertext entropy value in the Red Green Blue(RGB)channels were 7.9986,7.991,and 7.991.Furthermore,this algorithm exhibits a low correlation coefficient and enhanced robustness.This encryption method effectively improves the security and reliability of image encryption compared to other similar techniques.Yan Hong Shihui Fang Jingming Su Wanqiu Xu Yuhao Wei Juan Wu Zhen Yang 2023Computers, Materials & Continua2023,77,10:0
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