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Highly sensitive formaldehyde detection using biomass hydrogel with core-shell structure

delete2024-11-01
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PRE
AI
F
Furong Li
T
Tao Zhu *
J
Jun Yang
X
Xueli Zhang
S
Shihan Fan
S
Shunjiang Fu
Y
Yu‐Sheng Liu
DOI:10.1016/j.snb.2024.136340delete
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摘要

摘要

En 中文
The indoor formaldehyde concentration is in trace quantities; however, it considerably deteriorates indoor air quality and poses a serious threat to human health and ecosystems. Since current formaldehyde analyzers are only suitable for high-concentration detection or are expensive, there is a pressing need for an easy-to-use, storable, and highly sensitive formaldehyde detector. In this study, we developed a colorimetric sensing sphere using affordable and eco-friendly sodium alginate as a porous matrix. Polyethyleneimine, a molecule rich in amino groups, and an indicator are embedded in the matrix to create a core-shell structured, responsive porous hydrogel colorimetric sensor for indoor formaldehyde detection. The sensing sphere exhibits high sensitivity and excellent detection limits at a polyethyleneimine to pH agent mass ratio of 23:1, reaching a sensitivity of 0.02 mg/m3 3 and a detection limit of 0.06 mg/m3. 3 . The sensing sphere demonstrates superior selectivity among common indoor pollutants and remains unaffected by temperature (up to 70 degree celsius) or humidity (20-80 %) changes. Moreover, the core-shell structure of the colorimetric sensor ball addresses the poor stability and storage issues. The core-shell structure resists interference from external environmental changes, offering remarkable stability for 6 months and longer, hence, facilitating easy transportation and storage. The colorimetric sensing sphere is simple, cost-effective, and reliable for ordinary households, thus maintaining the indoor air quality and health of residents.
Keyword:
Sodium alginate
Polyethylenimine
Porous hydrogel
Colorimetric sensing response
Minimal formaldehyde

期刊

Sensors and Actuators B-Chemical 封面图
Sensors and Actuators B-Chemical
IF:
7.7
论文数:
3.4W
被引数:
12.6W

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