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Mg&2+-CO3^2--Gly--H2O体系热力学分析
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作者 窦爱春 刘彤 +3 位作者 张也 刘云建 苏明如 吴江华 《矿冶》 CAS 2020年第2期78-84,共7页
根据碳酸镁在氨基乙酸盐(Gly--H2O)体系中的溶解热力学平衡方程建立了其溶解热力学模型,分别分析了298 K时体系中镁离子总浓度、游离镁离子浓度、游离氨基乙酸根离子浓度、游离碳酸根离子浓度、镁物种分布以及氨基乙酸根物种分布热力学... 根据碳酸镁在氨基乙酸盐(Gly--H2O)体系中的溶解热力学平衡方程建立了其溶解热力学模型,分别分析了298 K时体系中镁离子总浓度、游离镁离子浓度、游离氨基乙酸根离子浓度、游离碳酸根离子浓度、镁物种分布以及氨基乙酸根物种分布热力学结果。结果表明,在酸性氨基乙酸盐体系中(pH值<7),碳酸镁溶解以酸溶作用为主,碳酸镁可以大量溶于酸性氨基乙酸盐溶液中;在碱性氨基乙酸盐体系中(7<pH值<14),碳酸镁溶解以氨基乙酸根离子与镁离子配合作用为主,由于氨基乙酸根离子与镁离子配合能力较弱,碳酸镁不可能溶于碱性氨基乙酸盐溶液中。 展开更多
关键词 MGCO3 热力学 氨基乙酸
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Synthesis of a novel hexagonal porous TT-Nb2O5 via solid state reaction for high-performance lithium ion battery anodes 被引量:7
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作者 ZHOU Yu liu Ke +4 位作者 ZHOU Yue NI Jia-hua DOU Ai-chun SU Ming-ru liu yun-jian 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第12期3625-3636,共12页
Hexagonal porous Nb2O5 was synthesized for the first time via a facile solid-state reaction.The structure and electrochemical properties have been optimized through tuning heating temperature.X-ray diffraction results... Hexagonal porous Nb2O5 was synthesized for the first time via a facile solid-state reaction.The structure and electrochemical properties have been optimized through tuning heating temperature.X-ray diffraction results indicate that pseudo hexagonal Nb2O5(TT-Nb2O5)and orthorhombic Nb2O5 have been synthesized at different temperatures.Hexagonal sheet and porous structure of Nb2O5 were characterized by scanning electron microscopy and N2-adsorption-desorption isotherms.The as-prepared TT-Nb2O5(heated at 600℃)shows the best performance with a remarkable charge capacity of 178 mA∙h/g at 0.2C,which is higher than that of T-Nb2O5.Even at 20℃,TT-Nb2O5 offers unprecedented rate capability up to 86 mA∙h/g.The high rate capacity is due to pseudocapacitive Li+intercalation mechanism of TT-Nb2O5.The reported results demonstrate that Nb2O5 with good crystal structure and high specific surface area is a powerful composite design for high-rate and safe anode materials. 展开更多
关键词 lithium-ion battery NB2O5 hexagonal porous sheet electrochemical performance
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