| Literature DB >> 30584759 |
Yu Jiang1, Junlin Ma1, Jian Lv2, Hongting Ma1, Hongbo Xia1, Jun Wang1, Cheng Yang1, Mianqi Xue3, Gongyi Li4, Nan Zhu1,5.
Abstract
Detection of methanol is a significant segment for body health and work safety in the production of chemical industry. However, there hardly exists highly selective methanol detection system with green environment for vapor or liquid adaptability, as well as large linear relationship. A facile wearable vapor/liquid amphibious electrochemical sensor for monitoring methanol has been carried out for the first time in this Article. This wearable methanol sensor was fabricated by using a simple screen-printing technology for accomplishing a microdevice platform, showing good linear relationship, high selectivity (multiple volatile chemical compounds), reliable repeatability, good stability, and excellent stretching and bending performance (nitrile glove-based sensor) without pretreatment or adding any polymers into inks. Owing to its good environmental adaptability of vapor or liquid and various sensing behaviors (high sensitivity and wide linear range) by being modified with different content of platinum catalyst, this methanol sensor would have tremendous potential application for environmental monitoring on smart wearable devices when employed based on various platforms (such as PET, cotton, and nitrile gloves).Entities:
Keywords: Sensors; electrochemistry; platinum catalyst; vapor/liquid amphibious; wearable methanol sensor
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Year: 2019 PMID: 30584759 DOI: 10.1021/acssensors.8b01111
Source DB: PubMed Journal: ACS Sens ISSN: 2379-3694 Impact factor: 7.711