Self‐Assembled Molecular Layers as Interfacial Engineering Nanomaterials in Rechargeable Battery Applications

Author:

He Xin1,Kwon Minkyung1,Chung Juchan1,Lee Kangsik1,Choi Yongjun1,Im Yeji1,Jang Jiung1,Choi Yongjune1,Yoon Hyo Jae1ORCID

Affiliation:

1. Department of Chemistry Korea University Seoul 02841 South Korea

Abstract

AbstractRechargeable batteries have transformed human lives and modern industry, ushering in new technological advancements such as mobile consumer electronics and electric vehicles. However, to fulfill escalating demands, it is crucial to address several critical issues including energy density, production cost, cycle life and durability, temperature sensitivity, and safety concerns is imperative. Recent research has shed light on the intricate relationship between these challenges and the chemical processes occurring at the electrode‐electrolyte interface. Consequently, a novel approach has emerged, utilizing self‐assembled molecular layers (SAMLs) of meticulously designed molecules as nanomaterials for interface engineering. This research provides a comprehensive overview of recent studies underscoring the significant roles played by SAML in rechargeable battery applications. It discusses the mechanisms and advantageous features arising from the incorporation of SAML. Moreover, it delineates the remaining challenges in SAML‐based rechargeable battery research and technology, while also outlining future perspectives.

Publisher

Wiley

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