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Synergy of I-Cl co-occupation on halogen-rich argyrodites and resultant dual-layer interface for advanced all-solid-state Li metal batteries
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作者 Han Yan ruifeng song +6 位作者 Ruonan Xu Shulin Li Qiaoquan Lin Xinlin Yan Zhenyu Wang Chuang Yu Long Zhang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2023年第11期499-509,I0011,共12页
The(electro)chemical stability and Li dendrite suppression capability of sulfide solid electrolytes(SEs)need further improvement for developing all-solid-state Li batteries(ASSLBs).Here,we report advanced halogen-rich... The(electro)chemical stability and Li dendrite suppression capability of sulfide solid electrolytes(SEs)need further improvement for developing all-solid-state Li batteries(ASSLBs).Here,we report advanced halogen-rich argyrodites via I and Cl co-occupation on the crystal lattice.Notably,a proper I content forms a single phase,whereas an excessive I causes precipitation of two argyrodite phases like a superlattice structure.The resultant synergistic effect of the optimized composition allows to gain high ionic conductivities at room temperature and-20℃,and enhances the(electro)chemical stability against Li and Li dendrite suppression capability.The Li|argyrodite interface is very sensitive to the ratio of I and Cl.A LiCl-and LiI-rich double-layer interface is observed from the cell using the SE with optimized composition,whereas too high I content forms only a single interface layer with a mixture of Lil and LiCl.This double-layer interface is found to effectively mitigate the Li/SE reaction.The proper designed argyrodite enables ASSLBs to achieve good electrochemical properties at a broad temperature range regardless of the electrode materials.This co-occupation strategy provides a novel exploration for advanced halogen-rich argyrodite system. 展开更多
关键词 Sulfide solid electrolytes Argyrodites Dual doping Li metal anode Solid-state batteries
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高秆野生稻内生固氮细菌多样性 被引量:4
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作者 刘丽平 宋瑞凤 +3 位作者 张馥 张秀香 彭桂香 谭志远 《生物多样性》 CAS CSCD 北大核心 2020年第8期1018-1025,共8页
高秆野生稻(Oryza alta)是一种重要的种质资源,其组织内也蕴藏着非常宝贵的功能微生物资源。本实验采用无氮培养基,从高秆野生稻中分离到43株内生固氮菌,结合乙炔还原法测定其固氮酶活性。经固氮酶基因(nifH)的PCR扩增检测,43株内生固... 高秆野生稻(Oryza alta)是一种重要的种质资源,其组织内也蕴藏着非常宝贵的功能微生物资源。本实验采用无氮培养基,从高秆野生稻中分离到43株内生固氮菌,结合乙炔还原法测定其固氮酶活性。经固氮酶基因(nifH)的PCR扩增检测,43株内生固氮菌代表菌株均能扩增出固氮酶基因片段。利用IS-PCR DNA指纹图谱和SDS-PAGE全细胞蛋白电泳图谱将获得的菌株聚类为6个类群(I、II、III、IV、V、VI)。对各个类群的代表菌株(ZF3,ZF8,ZF13,ZF15,ZF24,ZF43)进行16S r RNA基因序列测定,结果表明,类群I属于土生拉乌尔菌(Raoultella terrigena),类群II属于类肺炎克雷伯氏菌类肺炎亚种(Klebsiella quasipnmoniae subsp.quasipneumoniae),类群III属于越南伯克氏菌(Burkholderia vietnamiensis),类群IV的菌株代表肠秆菌属的一个类群(Enterobacter sp.),类群V的菌株属于门多萨假单胞菌(Pseudomonas mendocina),类群VI归属于固氮植物菌(Phytobacter diazotrophicus)。Biolog聚类结果与IS-PCR指纹图谱类型及SDS-PAGE全细胞蛋白聚类结果一致。Biolog板测定结果显示,来自不同类群的代表菌株对碳源的利用差异显著,说明野生稻内多样的内生固氮菌从环境中获取碳源和氮素的适应能力较强。 展开更多
关键词 内生固氮菌 多样性 全细胞蛋白电泳 指纹图谱 聚类分析
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