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火星探测和天体矿物手性
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作者 章慧 刘新玲 +5 位作者 南子昂 沙旭明 张仕林 黄少华 苏纪豪 赵玉芬 《大学化学》 CAS 2023年第2期116-131,共16页
从地球到月球到火星,人类一直没有停下探矿寻宝的脚步。从冰洲石到水晶到紫水晶,这些晶莹剔透矿石所呈现的光学现象给科学家带来“光是什么”和“手性起源”的百折不挠探究,贯穿整个科学发展史,促进科学、技术和现代社会进步,并将持续... 从地球到月球到火星,人类一直没有停下探矿寻宝的脚步。从冰洲石到水晶到紫水晶,这些晶莹剔透矿石所呈现的光学现象给科学家带来“光是什么”和“手性起源”的百折不挠探究,贯穿整个科学发展史,促进科学、技术和现代社会进步,并将持续为未来科技发展带来不可估量的影响。 展开更多
关键词 火星探测 天体矿物 手性 冰洲石 水晶 紫水晶 双折射 偏振
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Exploring the potential of constructing a hybrid supercapacitor with FeCoNi-LDH porous material containing oxygen vacancies for high-performance energy storage applications
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作者 jihao su Ling Yang +1 位作者 Dengbin Yu Shaojun Dong 《Nano Research》 SCIE EI CSCD 2024年第9期8134-8144,共11页
A significant challenge in developing high-performance hybrid supercapacitors(HSCs)is the need to reasonably construct advanced architectures that consist of various components and exhibit superior electrochemical cap... A significant challenge in developing high-performance hybrid supercapacitors(HSCs)is the need to reasonably construct advanced architectures that consist of various components and exhibit superior electrochemical capacitance performance.The FeCoNi-layered double hydroxide(FeCoNi-LDH)porous material has a specific capacitance of 1960 F·g^(-1)when used as the anode material at 1 A·g^(-1).The FeCoNi-LDH material exhibits nanoplates with a distinct spindle morphology on their surface.Due to the combined action of the three metals and abundant oxygen vacancies,they exhibit unique rate performance and cycle stability.The electronic structure of LDH and the regulation of oxygen vacancy were confirmed by density functional theory(DFT)calculations.This suggests that the strength of hydroxide can reduce the energy required for oxygen vacancy formation in FeCoNi-LDH nanosheets and enhance ion and charge transfer,as well as electrolyte adsorption on the electrode surface.The FeCoNi-LDH//activated carbon(AC)HSC has an energy density of 53.2 Wh·kg^(-1)at a power density of 800 W·kg^(-1),surpassing other devices composed of comparable materials during the same timeframe.This study made significant advances in the design and synthesis of a ternary LDH porous structure with distinct oxygen vacancies,as well as its potential application in electrochemical energy storage. 展开更多
关键词 oxygen vacancy FeCoNi-layered double hydroxide(FeCoNi-LDH) theory calculation electrode material hybrid supercapacitor
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