daohang fenxiangbox searchbox qikanlogonew daohangnew searchboxnew navrightzone footerzone paper

Corn Starch-Derived Gel for High-Performance Triboelectric Nanogenerators AITranslate

Korea University of Technology and Education; Korea University of Technology and Education; Korea Institute of Industrial Technology (KITECH); Korea University of Technology and Education
AITranslate
Publisher: ACS
Share Citation Information Add to Favorites

    Scan to share on WeChat or Moments

Use WeChat scan.
Share with WeChat friends or Moments

Abstract AITranslate

Starch is a material of wide research interest across various disciplines to understand its nature under different circumstances. Herein, we report corn starch gel as a tribo material whose incorporation into silicone foam can enhance the electrical output of a triboelectric nanogenerator (TENG) over 100% compared to the output of a TENG developed using intrinsic silicone foam. The study is carried out by varying the incorporation of different mass ratios of corn starch gel into silicone foam and prepared a starch gel composite (SGC). The composite material SGC with a mass ratio of 1:1.02 of corn starch gel and silicone foam produces the highest output voltage of ∼280 V compared to the output voltage of 132 V of a TENG developed using intrinsic silicone foam. It delivers a output current of 6.9 μA and a peak power of 897 μW corresponding to a power density of 996 mW/m2. Furthermore, the potential of real-time applications of TENG using SGC (c-TENG) has been demonstrated through powering up of light-emitting diodes, charging some commercial capacitors, and healthcare sensing applications. The device is highly stable, as over 15,000 cycles, it gives a constant output voltage of ∼280 V. The enhanced electrical output and stability of the device opens up the possibility of further research in the field of TENG using a composite material of starch for high-voltage self-powered applications.

KeyWords AITranslate

corn starch gel SGC iTENG cTENG stroke time
No data

Basic Information:

DOI:https://doi.org/10.1021/acsapm.3c02641

Chinese Library Classification Number:

Citation Information:

Starch is a material of wide research interest across various disciplines to understand its nature under different circumstances. Herein, we report corn starch gel as a tribo material whose incorporation into silicone foam can enhance the electrical output of a triboelectric nanogenerator (TENG) over 100% compared to the output of a TENG developed using intrinsic silicone foam. The study is carried out by varying the incorporation of different mass ratios of corn starch gel into silicone foam and prepared a starch gel composite (SGC). The composite material SGC with a mass ratio of 1:1.02 of corn starch gel and silicone foam produces the highest output voltage of ∼280 V compared to the output voltage of 132 V of a TENG developed using intrinsic silicone foam. It delivers a output current of 6.9 μA and a peak power of 897 μW corresponding to a power density of 996 mW/m2. Furthermore, the potential of real-time applications of TENG using SGC (c-TENG) has been demonstrated through powering up of light-emitting diodes, charging some commercial capacitors, and healthcare sensing applications. The device is highly stable, as over 15,000 cycles, it gives a constant output voltage of ∼280 V. The enhanced electrical output and stability of the device opens up the possibility of further research in the field of TENG using a composite material of starch for high-voltage self-powered applications.

quote

GB/T 7714-2015 [1] Tapas Kamilya, Jaehee Shin, Hanchul Cho, et al. ACS Applied Polymer Materials, 2024(6). DOI:10.1021/acsapm.3c02641.
MLA [1] Tapas Kamilya, et al., ACS Applied Polymer Materials, no. 6, 2024, https://doi.org/10.1021/acsapm.3c02641.
APA [1] Tapas Kamilya, Jaehee Shin, Hanchul Cho, & Jinhyoung Park. (2024). ACS Applied Polymer Materials(6). https://doi.org/10.1021/acsapm.3c02641
IEEE [1] Tapas Kamilya, Jaehee Shin, Hanchul Cho, and Jinhyoung Park, ACS Applied Polymer Materials, no. 6, 2024, doi: 10.1021/acsapm.3c02641. keywords: {corn starch gel;SGC;iTENG;cTENG;stroke time}