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A Pore-Forming Strategy Toward Porous Carbon-Based Substrates for High Performance Flexible Lithium Metal Full Batteries
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作者 Yanfei Li Shuyang Ye +7 位作者 Jian Lin yihan song Xinglong Wu Jingping Zhang Changlu Shao Zhongmin Su Haizhu Sun Dwight S.Seferos 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2023年第3期117-125,共9页
Self-standing carbon-based substrates with satisfied structural stability and property adjustability have promising applications in flexible lithium(Li)metal batteries(FLMBs).Current strategies for modifying carbon ma... Self-standing carbon-based substrates with satisfied structural stability and property adjustability have promising applications in flexible lithium(Li)metal batteries(FLMBs).Current strategies for modifying carbon materials are normally carried out on powder carbon,and very few of them are suitable for self-standing carbon substrates.Herein,a pore-forming strategy based on the redox chemistry of metallic oxide nanodots is developed to prepare two porous carbon substrates for anode and cathode.Starting with cotton cloth,the resulting hollow carbon fibers substrate with nanopores effectively prevents from Li dendrites formation and large volume change in lithium metal anode(LMA).Simulations indicate that the porous structure leads to homogeneous ion flux,Li-ion concentration,and electric field during Li deposition.Li symmetrical cell based on this substrate remains stable for 8300 h with an ultralow voltage hysteresis of 9 mV.Via a similar route,porous carbon cloth substrate is obtained for subsequently seeding V_(2)O_(5)nanowires to prepare the cathode.The assembled FLMBs pouch cell delivers a capacity of 8.2 mAh with a high capacity retention of~100%even under dramatic deformation.The demonstrated strategy has far-reaching potential in preparing free-standing porous carbon-based materials for flexible energy storage devices. 展开更多
关键词 dual-function carbon substrates flexible lithium metal full batteries lithium metal anode porous structure V_(2)O_(5)cathode
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钾长石提钾及制备复合肥料的研究进展 被引量:8
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作者 宋一涵 李洪枚 +3 位作者 马淑花 王晓辉 穆小占 郑诗礼 《过程工程学报》 CAS CSCD 北大核心 2018年第2期241-257,共17页
依据国内外开发的不同钾长石提钾技术反应原理及工艺过程,分类介绍各种技术的特点,提出了改进建议.鉴于现有技术存在工艺流程长、成本高、经济效益差等问题,指出不单独提钾而是将钾长石整体制成多元素复合肥料或土壤调理剂应是今后的重... 依据国内外开发的不同钾长石提钾技术反应原理及工艺过程,分类介绍各种技术的特点,提出了改进建议.鉴于现有技术存在工艺流程长、成本高、经济效益差等问题,指出不单独提钾而是将钾长石整体制成多元素复合肥料或土壤调理剂应是今后的重点研究方向,介绍了这一方向的研究进展,并通过分析水热法制备的多元素复合肥料的优良特性,表明了其具有广阔的应用前景. 展开更多
关键词 钾长石 提钾 机理 复合肥料 水热法
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