Highly sensitive colorimetric detection of ammonia and respiratory ammonia based on ammonia induced perylene diimide anion radical π-dimer dissociation

IF 8 1区 化学 Q1 CHEMISTRY, ANALYTICAL
Yahua Zhu, Gengwen Yin, Wei Li, Rui Tan, Wenlong Hou, Xueqiang Liu, Yuzhen Zhao, Haiquan Zhang
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引用次数: 0

Abstract

Ammonia is not only a crucial respiratory biomarker for chronic kidney diseases, but also an important raw material in chemical industry. Ammonia has important economic value, however, it also has harmful effects. Therefore, the sensitive and rapid detection of low concentration ammonia is always a hot and challenging topic in sensing field. Recently, we discovered a type of perylene diimide anionic radical π-dimers which the absorbance spectrum depends on the hydrogen bond between two radical molecules. Herein, the colorimetric detection of NH3·H2O, NH3 gas, and respiratory NH3 is achieved through the color changes resulting from the hydrogen bond in the π-dimer being broken by NH3. The π-dimer solution achieving a lowest detection limits of 0.26 ppb for NH3·H2O, and provided high precision recognition with approximately 90% accuracy based on UV-vis spectrum and color change. The colorimetric films based on the π-dimer/silica gel can detect NH3 gases at ppb level, and achieving high precision recognition with about 94% accuracy. The cotton fibers dyed by π-dimers were successfully used in detecting 830 ppb NH3 gas (the NH3 concentration in exhaled breath of early chronic kidney diseases) based on the visible color changes. We believe that these environmental sensitive radical derivatives can serve as candidate colorimetric probes, which offers a novel and non-invasive approach for the early warning of chronic kidney disease.

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来源期刊
Sensors and Actuators B: Chemical
Sensors and Actuators B: Chemical 工程技术-电化学
CiteScore
14.60
自引率
11.90%
发文量
1776
审稿时长
3.2 months
期刊介绍: Sensors & Actuators, B: Chemical is an international journal focused on the research and development of chemical transducers. It covers chemical sensors and biosensors, chemical actuators, and analytical microsystems. The journal is interdisciplinary, aiming to publish original works showcasing substantial advancements beyond the current state of the art in these fields, with practical applicability to solving meaningful analytical problems. Review articles are accepted by invitation from an Editor of the journal.
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