材料科学
纳米孔
无定形固体
离子键合
电化学
纳米技术
化学工程
离子液体
电极
纳米材料
金属有机骨架
离子
吸附
催化作用
有机化学
物理化学
化学
工程类
作者
Manmatha Mahato,Jaehwan Kim,Myung‐Joon Lee,Seongjun Jo,G. N. Kim,Sanghee Nam,Ji‐Seok Kim,Van Hiep Nguyen,Mousumi Garai,Hyunjoon Yoo,Daniel Saatchi,Zakir Ullah,Chi Won Ahn,Yury Gogotsi,Il‐Kwon Oh
标识
DOI:10.1002/adma.202500479
摘要
Abstract The assembly of 2D nanosheets with other functional nanomaterials enables the creation of materials with unique property combinations that cannot be achieved in single‐phase materials. In particular, a combination of inorganic and organic components provides a pathway to structures offering highly durable ionic and electronic conductivity simultaneously. Here, a controlled growth of amorphous metal–organic framework ( a MOF) in the interlayer spaces of Ti 3 C 2 T x MXene for enhancing oxidation stability and accelerating fast ion transport is reported. The hydrophilic terminations of MXene provide support for the continuous growth of iron‐based a MOF in the available interlayer 2D slits. Effective electronic interactions involving hydrogen bonding, coordination, and esterification in‐between the open surfaces of MXene and nanoporous a MOF enhance the electrochemical strength of MXene– a MOF hybrid electrodes and allow the design of extremely durable electro‐ionic soft actuators. The MXene– a MOF exhibits a fivefold increment in electroactuation compared to a conventional poly(3,4‐ethylenedioxythiophene)‐poly(styrenesulfonate) soft actuator, with robust stability up to 50 000 cycles in open air. Using the MXene– a MOF soft actuator, a deformable morphing surface with reversibly adjustable shapes and patterns is demonstrated.
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