작성일
2023.12.26
수정일
2024.02.22
작성자
강재욱
조회수
58

(179) M.M. Ovhal, H.B. Lee, V.V. Satale, B. Tyagi, N. Kumar, S. Chowdhury and J.-W. Kang* “One-meter-long, All-3D-printed Supercapacitor Fibers based on Structurally Engineered Electrode for Wearable Energy Storage” Adv. Energy Mater. 14, 2303053 (2024)

(179) M.M. Ovhal, H.B. Lee, V.V. Satale, B. Tyagi, N. Kumar,  S. Chowdhury and J.-W. Kang* “One-meter-long, All-3D-printed Supercapacitor Fibers based on Structurally Engineered Electrode for Wearable Energy Storage” Adv. Energy Mater. 14, 2303053 (2024) 첨부 이미지

Abstract

Fiber-shaped energy storage devices have great potential for use as an intelligent power source for futuristic wearable technology. To produce high-performance fiber-shaped energy storage devices, a thin fiber material with a high energy density, shape adaptability, and longevity is critical. Herein, 3D fiber-shaped supercapacitors (SCs) comprising MXene-PEDOT:PSS active electrodes made using the 3D-direct-ink-writing (DIW) technique are demonstrated. Embedding a silver (Ag) current collector in the active electrode facilitated faster charge transport in the fiber-shaped 3D-SCs, enabling them to create a unique 3D-electrode structure that solves the thickness and length problem of electrode-dependent capacitance in fiber-shaped devices. At one-meter long, the fully-printed fiber-shaped 3D-SC exhibits a low charge transfer resistance that leads to the high areal capacitance of 1.062 F cm−2 and gravimetric capacitance of 185.9 F g−1, with a high areal energy density of 94.41 µWh cm−2 at a power density of 1,142 µW cm−2. The fiber-shaped 3D-SCs also exhibit excellent electrochemical and mechanical stability at different temperatures in air and water. With their unique electrode structure and uninterrupted power supply, these R2R 3D-DIW printed fiber-shaped SCs can boost the development of innovative textile technology.



https://doi.org/10.1002/aenm.202303053

첨부파일
첨부파일이(가) 없습니다.
다음글
(180) M.M. Ovhal, H.B. Lee, N. Kumar, J.-W. Oh and J.-W. Kang* “ Filamentous Virus-Templated Nickel Hydroxide Nanoplates as Novel Electrochemical Pseudocapacitor Materials” Polymer Korea. 48, 234-241 (2024).
강재욱 2024-02-15 09:14:48.0
이전글
(178) Hai Li, Hock Beng Lee, Jae-Wook Kang, Sooman Lim* “Three-dimensional polymer-nanoparticle-liquid ternary composite for ultrahigh augmentation of piezoelectric nanogenerators” Nano Energy, 113, 108576 (2023).
강재욱 2023-06-28 10:47:42.0