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Sulfur-linked carbonyl polymer as a robust organic cathode for rapid and durable aluminum batteries 被引量:2
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作者 Liang Fang Limin Zhou +3 位作者 Lianmeng Cui Peixin Jiao Qinyou An Kai Zhang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2021年第12期320-327,I0007,共9页
Rechargeable aluminum batteries are believed as a promising next-generation energy-storage system due to abundant low-cost Al sources and high volumetric specific capacity.The Al-storage cathodes,however,are plagued b... Rechargeable aluminum batteries are believed as a promising next-generation energy-storage system due to abundant low-cost Al sources and high volumetric specific capacity.The Al-storage cathodes,however,are plagued by strong electrostatic interaction between host materials and carrier ions,leading to large overpotential and undesired cycling stability as well as sluggish ion diffusion kinetics.Herein,sulfur-linked carbonyl polymer based on perylene-3,4,9,10-tetracarboxylic dianhydride(PTCDA) as the cathode materials for ABs is proposed,which demonstrates a small voltage polarization(135 mV),a reversible capacity of 110 mAh g^(-1) at 100 mA g^(-1) even after 1200 cycles,and rapid Al-storage kinetics.Compared with PTCDA,the sulfide polymer possesses higher working voltage because of its lower LUMO energy level according to theoretical calculation.The ordered carbonyl active sites in sulfide polymer contribute to the maximized material utilization and rapid ion coordination and dissociation,resulting in superior rate capability.Besides,the bridged thioether bonds endow the polysulfide with robust and flexible structure,which inhibits the dissolution of active materials and improves cycling stability.This work implies the importance of ordered arrangement of redox active moieties for organic electrode,which provides the theoretical direction for the structural design of organic materials applied in multivalent-ion batteries. 展开更多
关键词 Aluminum batteries Organic materials Carbonyl polymer Electrochemical active sites ordered arrangement
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2Hα-In_(2)Se_(3)铁电体中极序工程控制的光电流和多态存储器 被引量:1
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作者 吕宝华 薛武红 +8 位作者 严志 杨瑞龙 吴昊 王鹏 张钰樱 候佳妮 朱文光 许小红 《Science China Materials》 SCIE EI CAS CSCD 2022年第6期1639-1645,共7页
控制铁电材料的极序可以丰富其特性和功能的多样性,为设计新型电子和光电子器件提供新的机会.本文报道了一种基于二维(2D)范德瓦尔斯(vdW)层状铁电材料2Hα-In_(2)Se_(3)的面内多态存储器件.通过施加面内电场调控铁电α-In_(2)Se_(3)层... 控制铁电材料的极序可以丰富其特性和功能的多样性,为设计新型电子和光电子器件提供新的机会.本文报道了一种基于二维(2D)范德瓦尔斯(vdW)层状铁电材料2Hα-In_(2)Se_(3)的面内多态存储器件.通过施加面内电场调控铁电α-In_(2)Se_(3)层的极序,实现了可以相互切换的三种电阻态,其具有快的切换速度、良好的耐久性和保持性.值得注意的是,中间阻态(MRS)和低阻态(LRS)之间可以通过比其他基于2D铁电材料的存储器小1–2个数量级的超低电场来实现可逆切换.此外,还发现这三种不同的极序态表现出了特有的光响应.以上结果表明,α-In_(2)Se_(3)在非易失性高密度存储器和新型光电器件中具有很大的应用潜力. 展开更多
关键词 van der Waals ferroelectric semiconductors 2H-stackedα-In_(2)Se_(3) polar order arrangement PHOTOCURRENT multi-state memory
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