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12篇 您的检索式:作者名="Shuanjin"
    题名 作者 年代 出处 被引量
1Low-Carbon and Nanosheathed ZnCo_(2)O_(4) Spheroids with Porous Architecture for Boosted Lithium Storage Properties显示文摘Multielectronic reaction electrode materials for high energy density lithium-ion batteries(LIBs)are severely hindered by their inherent sluggish kinetics and large volume variations,leading to rapid capacity fade.Here,a simple method is developed to construct low-carbon and nanosheathed ZnCo_(2)O_(4) porous spheroids(ZCO@C-5).In this micro/nanostructure,an ultrathin amorphous carbon layer(∼2 nm in thickness)is distributed all over the primary nanosized ZCO particles(∼20 nm in diameter),which fnally self-assembles into porous core(ZCO)-shell(carbon)micron spheroids.Te nanoencapsulation and macro/mesoporous architecture can not only provide facile electrolyte penetration and rapid ion/electron transfer but also better alleviate volumetric expansion efect to avoid pulverization of ZCO@C-5 spheroids during repeat charge/discharge processes.As expected,the three-dimensional porous ZCO@C-5 composites exhibit high reversible capacity of 1240 mAh g^(−1) cycle at 500 mA g^(−1),as well as excellent long-term cycling stability and rate capability.Te low-carbon and nanoencapsulation strategy in this study is simple and efective,exhibiting great potential for high-performance LIBs.Yudi Mo Junchen Liu Shuanjin Wang Min Xiao Shan Ren Dongmei Han Yuezhong Meng 2019Research2019,,1:3
2Properties of degradable poly (propylene carbonate) rein- forced with short lingo-cellulose fiber Hildegardia Populifolia 显示文摘LI Xiuhua MENG Yuezhong WANG Shuanjin 2004J Polym Sci Part B : Polym Phys2004,42,4:1
3Direct synthesis of DMC from CH3OH and CO2 over V-doped Cu-Ni/AC cata-lysts显示文摘Bian Jun Xiao Min Wang Shuanjin 2009Catalysis Communications2009,10,8:1
4Synthesis of sulfonated poly(fluorenyl ether thioether ketone)s with bulky-block structure and its application in vanadium redox flow battery显示文摘Chen Dongyang Wang Shuanjin Xiao Min Han Dongmei Meng Yuezhong 0,,:1
5Sulfonated poly(fluorenyl ether ketone) membrane prepared via direct polymerization for PEM fuel cell application显示文摘Yulin Chen Yuezhong Meng Shuanjin Wang Shuanghong Tian Yong Chen Allan S. Hay 2006Journal of Membrane Science2006,,1:1
6Sulfonated poly(fluorenyl ether ketone) ionomers containing aliphatic functional segments for fuel cell applications显示文摘Hang Hu Wei Liu Liu Yang Min Xiao Shuanjin Wang Dongmei Han Yuezhong Meng 2011International Journal of Hydrogen Energy2011,,5:1
7Synthesis of sulfonated poly(fluorenyl ether thioether ketone)s with bulky-block structure and its application in vanadium redox flow battery显示文摘Dongyang Chen Shuanjin Wang Min Xiao Dongmei Han Yuezhong Meng 2011Polymer2011,,23:1
8Sulfonated poly(fluorenyl ether ketone) membrane with embedded silica rich layer and enhanced proton selectivity for vanadium redox flow battery显示文摘Chen Dongyang Wang Shuanjin Xiao Min Han Dongmei Meng Yuezhong 2010Journal of Power Sources2010,195,22:1
9Edge sulfurized graphene nanoplatelets via vacuum mechano-chemical reaction for lithium–sulfur batteries显示文摘Lithium–sulfur batteries have great potential for high energy applications due to their high capacities,low cost and eco-friendliness. However, the particularly rapid capacity decay owing to the dissolution and diffusion of polysulfide intermediate into the electrolyte still hamper their practical applications.And the reported preparation procedures to sulfur based cathode materials are often complex, and hence are rather difficult to produce at large scale. Here, we report a simple mechano-chemical sulfurization methodology in vacuum environment applying ball-milling method combined both the chemical and physical interaction for the one-pot synthesis of edge-sulfurized grapheme nanoplatelets with 3D porous foam structure as cathode materials. The optimal sample of 70%S–Gn Ps-48 h(ball-milled 48 h) obtains 13.2 wt% sulfur that chemically bonded onto the edge of Gn Ps. And the assembled batteries exhibit high initial discharge capacities of 1089 mAh/g at 0.1 C and 950 mAh/g at 0.5 C, and retain a stable discharge capacity of 776 mAh/g after 250 cycles at 0.5 C with a high Coulombic efficiency of over 98%. The excellent performance is mainly attributed to the mechano-chemical interaction between sulfur and grapheme nanoplatelets. This definitely triggers the currently extensive research in lithium–sulfur battery area.Longlong Yan Min Xiao Shuanjin Wang Dongmei Han Yuezhong Meng 2017Journal of Energy Chemistry2017,26,3:1
10Rocessability,property,and morphology of biodegradable blends of poly (propylene carbonate) and poly (ethylene-co-vinyl alcoho1)显示文摘JIAO Jian WANG Shuanjin MENG Yuezhong 0,,02:1
11Novel ternary block copolymerization of carbon dioxide with cyclohexene oxide and propylene oxide using zinc complex catalyst显示文摘Shaoyun Chen Min Xiao Shuanjin Wang Dongmei Han Yuezhong Meng 2012Journal of Polymer Research2012,,2:1
12Synthesis and characterization of novel sulfonated poly (arylenethioether) ionomers for vanadium redox flow battery applications显示文摘Chen Dongyang Wang Shuanjin Xiao Min Meng Yuezhong 2010Energy & Environmental Science2010,3,5:1
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