Hydrophobic-barrier-assisted formation of vertically layered capacitive electrodes within a single sheet of paper

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초록

Flexible energy storage devices are of significant interest for wearable device applications. In this regard, paper, which is thin, light, flexible, and highly porous, has emerged as a next-generation energy-storage material. Here, we introduce a facile technology for fabricating a supercapacitor based on a single sheet of paper, in which the electrodes are vertically separated by the patterning of hydrophobic barriers. The positive and negative electrodes can be simultaneously sectionalized as active layers and current collectors in a single-layer porous paper supercapacitor, such that the gel electrolyte infiltrates the device without any additional assembly. The solid-state supercapacitor with vertically layered electrodes exhibits a large areal capacitance of 560.2 mF cm(-2) at 0.2 mA cm(-2) and stable flexibility and foldability. The maximum power and energy densities were 1.597 mW cm(-2) and 28.74 mu W h cm(-2), respectively, which highly exceed those of previously reported multi-sheet paper-based supercapacitors.

키워드

ALL-SOLID-STATE; FLEXIBLE SUPERCAPACITORS; GOLD NANOPARTICLES; CELLULOSE FIBERS; AMORPHOUS MNO2; PORE STRUCTURE; HIGH-ENERGY; ALPHA-MNO2; PERFORMANCE; MANGANESE
제목
Hydrophobic-barrier-assisted formation of vertically layered capacitive electrodes within a single sheet of paper
저자
Oh, In Hyeok; Lee, Sung Min; Kim, Yeon Woo; Choi, Seyoung; Nam, Inho; Chang, Suk Tai
DOI
10.1039/d1ta08854h
발행일
2021-12
유형
Article
저널명
Journal of Materials Chemistry A
권
48
호
48
페이지
27672 ~ 27683