Enhanced sensing performance of triboelectric nanosensors by solid-liquid contact electrification

  • Chatterjee, Subhodeep; 
  • Saha, Subhajit; 
  • Barman, Snigdha Roy; 
  • Khan, Imran; 
  • Pao, Yu-Ping; 
  • ... Lee, Sangmin; 
  • 외 2명
Citations

WEB OF SCIENCE

71
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76

초록

Triboelectric nanogenerators (TENGs) and triboelectric nanosensors (TENSs) are the prime backbones for the realization of environmental mechanical energy harvesting and self-powered sensing applications. However, the low efficiency of concurrent solid-solid contact electrification creates a major bottleneck for the growth of highly promising technologies. To address this problem, herein, we report a strategic protocol to design a TENS by solid-liquid contact electrification for chemical sensing purposes as well as an efficient approach for the chemical enhancement of solid-liquid TENGs. In particular, TiO2 nanosheet arrays and various solvents (including water, ethanol and acetone) are employed as solid triboelectric materials and contact liquids, respectively, for the demonstration of solid-liquid contact electrification for mechanical energy harvesting and catechin detection. As a self-powered sensor, the TiO2 nanosheet array-based TENS provides superior advantages such as long-term stability, frequency-independent output and humidity-insensitive properties compared to previously reported solid-solid TENSs. The chemically enhanced sensing mechanism of the TiO2 nanosheet array-based TENS for catechin detection is further confirmed with the decrease in the work function and can provide a wide linear window (100 nM–100 μM) and a low detection limit (30 nM). All the results support that solid-liquid TENSs pave a new path toward efficient self-powered sensors for environmental and healthcare monitoring. © 2020 Elsevier Ltd

키워드

Catechin; Chemical enhancement; Contact electrification; Self-powered sensor; TiO2; Triboelectric nanogenerator; Acetone; Chemical sensors; Electric utilities; Energy harvesting; Flavonoids; Nanosensors; Nanosheets; Organic solvents; Oxide minerals; Phenols; Titanium dioxide; Triboelectricity; Chemical enhancements; Frequency independent; Healthcare monitoring; Long term stability; Low detection limit; Mechanical energies; Self-powered sensing; Solid-solid contacts; Liquids
제목
Enhanced sensing performance of triboelectric nanosensors by solid-liquid contact electrification
저자
Chatterjee, Subhodeep; Saha, Subhajit; Barman, Snigdha Roy; Khan, Imran; Pao, Yu-Ping; Lee, Sangmin; Choi, Dukhyun; Lin, Zong-Hong
DOI
10.1016/j.nanoen.2020.105093
발행일
2020-11
유형
Article
저널명
Nano Energy
권
77