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Polymer dispersed ionic liquid electrolytes with high ionic conductivity for ultrastable solid-state lithium batteries 被引量:2
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作者 Shengyu Qin Yaping Cao +7 位作者 Jianying Zhang yunxiao Ren Chang Sun Shuoning Zhang Lanying Zhang Wei Hu meina yu Huai Yang 《Carbon Energy》 SCIE CSCD 2023年第5期115-126,共12页
Solid polymer electrolytes(SPEs)have emerged as one of the most promising candidates for building solid-state lithium batteries due to their excellent flexibility,scalability,and interfacial compatibility with electro... Solid polymer electrolytes(SPEs)have emerged as one of the most promising candidates for building solid-state lithium batteries due to their excellent flexibility,scalability,and interfacial compatibility with electrodes.However,the low ionic conductivity and poor cyclic stability of SPEs do not meet the requirements for practical applications of lithium batteries.Here,a novel polymer dispersed ionic liquid-based solid polymer electrolyte(PDIL-SPE)is fabricated using the in situ polymerization-induced phase separation(PIPS)method.The as-prepared PDIL-SPE possesses both outstanding ionic conductivity(0.74 mS cm^(-1) at 25℃)and a wide electrochemical window(up to 4.86 V),and the formed unique three-dimensional(3D)co-continuous structure of polymer matrix and ionic liquid in PDIL-SPE can promote the transport of lithium ions.Also,the 3D co-continuous structure of PDIL-SPE effectively accommodates the severe volume expansion for prolonged lithium plating and stripping processes over 1000 h at 0.5 mA cm^(-2) under 25℃.Moreover,the LiFePO_(4)//Li coin cell can work stably over 150 cycles at a 1 C rate under room temperature with a capacity retention of 90.6%from 111.1 to 100.7 mAh g^(-1).The PDIL-SPE composite is a promising material system for enabling the ultrastable operation of solid-state lithium-metal batteries. 展开更多
关键词 high ionic conductivity lithium batteries solid polymer electrolytes solid-state batteries
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可同时增强驱动应力和应变的近红外光驱动液晶弹性体
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作者 张煜晗 宋晨捷 +9 位作者 保金映 李昭中 王子正 肖久梅 于美娜 高延子 张兰英 兰若尘 邹呈 杨槐 《Science China Materials》 SCIE EI CAS CSCD 2023年第12期4803-4813,共11页
液晶弹性体(LCEs)在先进软执行器和机器人的应用中引起了广泛关注.具有高驱动应力和驱动应变的新兴LCEs始终是实际应用的理想选择.然而,一个常识是,LCEs特定机械性能的改善必须以牺牲其他性能为代价.在本工作中,通过简单的硫醇-丙烯酸... 液晶弹性体(LCEs)在先进软执行器和机器人的应用中引起了广泛关注.具有高驱动应力和驱动应变的新兴LCEs始终是实际应用的理想选择.然而,一个常识是,LCEs特定机械性能的改善必须以牺牲其他性能为代价.在本工作中,通过简单的硫醇-丙烯酸酯反应制备了LCE,随后进行光引发的自由基聚合.通过调节侧链液晶(LC)基元的含量,调控了液晶网络的交联密度,优化了LCE的驱动.侧链LC基元的引入降低了驱动温度并且提高了驱动应变,而丙烯酸酯官能化的MXene纳米片交联了LCE基体,确保了高驱动应力和光热转化.因此,本工作通过引入侧链基元和MXene纳米片作为交联剂,同时增强了LCE的驱动应力和驱动应变,克服了LCE致动器以往高温或有害紫外光驱动、物理掺杂引起的分子扰动等局限性,大大提高了整体驱动性能(驱动应力为0.773 MPa,驱动应变为45%),实现了近红外光下的可逆变形(54%).该策略可能为优化LCE执行器的性能提供一条新途径. 展开更多
关键词 liquid crystalline elastomers(LCEs) actuation stress actuation strain near-infrared light actuation
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