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7篇 您的检索式:作者名="Weizhe Lu"
    题名 作者 年代 出处 被引量
1Effect of Co-polyester antistatic agent modified by carbon nanotubes on the properties of polypropylene fibers显示文摘Antistatic polymer fibers were investigated by using carbon nanotubes (CNTs) to enhance the antistatic ability of inner antistatic agents based on the mechanism of attracting moisture by polar radical groups. It is indicated that the antistatic ability of the fibers filled with composite antistatic agents that contain CNTs and organic antistatic agents was superior to that of the fibers filled either with pure organic antistatic agents or pure CNTs. The antistatic ability of the composite antistatic agent fabricated by an in situ process was superior to that of the composite antistatic agent fabricated by direct dispersing CNTs in the antistatic agent carrier. Moreover, the heat-treated CNTs could further enhance the antistatic effect compared with the initial CNTs. The antistatic effect is significantly influenced by the content of CNTs in the composite antistatic agent.Chensha Li Binsong Wang Weizhe Lu Dazhi Wang Zhi Li Zechao Di Ji Liang 2007Journal of University of Science and Technology Beijing2007,14,6:4
2Improving the antistatic ability of poly- propylene fibers by inner antistatic agent fiUed with carbon nanotubes 显示文摘Chensha Li Tongxiang Liang Weizhe Lu Chunhe Tang Xiaoqing Hu Maosheng Cao Ji Liang 2004Composites Science and Technology2004,,64:1
3A comparison ofthe effect of hot stretching on microstructures and properties ofpolyacrylonitrile and rayon-based carbon fibers 显示文摘Xiao Hao Lu Yonggen Zhao Weizhe 2014Journal ofMaterials Science2014,49,14:1
4Catholyte engineering to release the capacity of iodide for high-energy-density iodine-based redox flow batteries显示文摘Due to the high solubility,high reversibility,and low cost of iodide,iodine-based redox flow batteries(RFBs)are considered to have great potential for upscaling energy storage.However,their further development has been limited by the low capacity of I−as one-third of the I−is used to form I3−(I2I−)during the charging process.Herein,we have demonstrated that the pseudohalide ion,thiocyanate(SCN−),is a promising complexing agent for catholyte of iodinebased RFBs to free up the I−by forming iodine-thiocyanate ions([I2SCN]−)instead of I3−,unlocking the capacity of iodide.Applying this strategy,we have demonstrated iodine-based RFBs with full utilization of iodide to achieve high capacity and high energy density.Both the zinc/iodine RFB and polysulfide/iodine RFB with SCN−complex agent achieve their theoretical capacity of around 160 A h Lposolyte^(−1)(6.0MI−in catholyte).Therefore,the zinc/iodine RFB delivers a high energy density of 221.34Wh Lposolyte^(−1),and the polysulfide/iodine RFB achieves a highenergy density of 165.62Wh Lposolyte^(−1).It is believed that this effective catholyte engineering can be further generalized to other iodine-based RFBs,offering new opportunities to unlock the capacity of iodide and achieve high energy density for energy storage.Bo Lu Minghui Yang Mei Ding Su Yan Weizhe Xiang Yuanhang Cheng Hu Fu Zhizhao Xu Chuankun Jia 2023SusMat2023,3,4:1
5Improving the antistatic ability of polypropylene fibers by inner antistatic agent filled with carbon nanotubes显示文摘Li Chensha Liang Tongxiang Lu Weizhe 2004Composites Science and Technology2004,64,:1
6A comparison of the effect of hot stretching on microstructures and properties of polyacrylonitrile and rayon-based carbon fibers显示文摘Xiao Hao Lu Yonggen Zhao Weizhe 2014Journal of Materials Science2014,49,14:1
7The Effect of Heat Treatment Temperature and Time on the Microstrncture and Me- chanical Properties of PAN-Based Carbon Fibers 显示文摘Xiao Hao Lu Yonggen Zhao Weizhe 2014Journal of Materials Science2014,49,:1
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