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Eutectic Solution Enables Powerful Click Reaction for In-Situ Construction of Advanced Gel Electrolytes
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作者 weixin ye Jirong Wang +1 位作者 Chi Zhang Zhigang Xue 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2023年第4期258-264,共7页
Thiol-ene click reaction is an intriguing strategy for preparing polymer electrolytes due to its high activity,atom economy and less side reaction.However,the explosive reaction rate and the use of non-electrolytic am... Thiol-ene click reaction is an intriguing strategy for preparing polymer electrolytes due to its high activity,atom economy and less side reaction.However,the explosive reaction rate and the use of non-electrolytic amine catalyst hamper its application in in-situ batteries.Herein,a nitrogen-containing eutectic solution is designed as both the catalyst of the thiol-ene reaction and the plasticizer to in-situ synthesize the gel polymer electrolytes,realizing a mild in-situ gelation process and the preparation of high-performance gel electrolytes.The obtained gel polymer electrolytes exhibit a high ionic conductivity of 4×10^(−4)S cm^(−1)and lithium-ion transference number(t_(Li)^(+))of 0.51 at 60°C.The as-assembled Li/LiFePO_(4)(LFP)cell delivers a high initial discharge capacity of 155.9 mAh g^(-1),and a favorable cycling stability with the capacity retention of 82%after 800 cycles at 1 C is also obtained.In addition,this eutectic solution significantly improves the rate performance of the LFP cell with high specific capacity of 141.5 and 126.8 mAh g^(-1)at 5 C and 10 C,respectively,and the cell can steadily work at various charge–discharge rate for 200 cycles.This powerful and efficient strategy may provide a novel way for in-situ preparing gel polymer electrolytes with desirable comprehensive performances. 展开更多
关键词 eutectic solution in-situ gelation lithium metal battery polymer electrolyte thiol-ene click reaction
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Identification of a uroporphyrinogenⅢsynthetase gene and characterization of its role in pearl sac formation in Hyriopsis cumingii 被引量:1
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作者 Jiexuan Shen Dandan Huang +3 位作者 Jiale Li weixin ye Zheng Wang Zhiyi Bai 《Aquaculture and Fisheries》 2022年第1期18-22,共5页
UroporphyrinogenⅢsynthetase(UROS)is an important enzyme involved in the structural formation of porphyrin,which is responsible for color intensity.A UROS homolog was isolated and characterized from the pearl mussel,H... UroporphyrinogenⅢsynthetase(UROS)is an important enzyme involved in the structural formation of porphyrin,which is responsible for color intensity.A UROS homolog was isolated and characterized from the pearl mussel,Hyriopsis cumingii(HcUros).The HcUros cDNA was 858 bp in length with an open reading frame that encoded a 285 amino acid protein,which contained a conserved HemD domain.HcUros exhibited widespread tissue distribution,displaying particular enrichment in the mantle and haemolymph of purple mussels,compared to white mussels.In situ hybridization of HcUros in mantle tissue demonstrated that it was specifically expressed in the dorsal epithelial cells of the mantle pallia.Additionally,HcUros expression was upregulated following implantation of the pearl sac to produce pearls.The data suggest that HcUros contributes to shell pigmentation,and nacre formation and coloring in H.cumingii. 展开更多
关键词 Fresh water pearl mussel Hyriopsis cumingii UroporphyrinogenⅢsynthetase Nacre color
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