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氮掺杂碳量子点活化的类蒲公英分级结构WO用于糖尿病检测中的高灵敏度和高选择性微机电系统传感器。

Nitrogen-Doped Carbon Quantum Dots Activated Dandelion-Like Hierarchical WO for Highly Sensitive and Selective MEMS Sensors in Diabetes Detection.

作者信息

Ni Tianjun, Dong Zhonghu, Xi Kejie, Lu Yijia, Chang Kaiwen, Ge Chunpo, Liu Dong, Yang Zhijun, Cai Haijie, Zhu Yongheng

机构信息

School of Pharmacy, Xinxiang Medical University, Xinxiang 453003, PR China.

School of Basic Medical Science, Xinxiang Medical University, Xinxiang 453003, PR China.

出版信息

ACS Sens. 2025 Feb 28;10(2):699-708. doi: 10.1021/acssensors.4c01840. Epub 2024 Oct 4.

DOI:10.1021/acssensors.4c01840
PMID:39365950
Abstract

High sensitivity, low concentration, and excellent selectivity are pronounced primary challenges for semiconductor gas sensors to monitor acetone from exhaled breath. In this study, nitrogen-doped carbon quantum dots (N-CQDs) with high reactivity were used to activate dandelion-like hierarchical tungsten oxide (WO) microspheres to construct an efficient and stable acetone gas sensor. Benefiting from the synergistic effect of both the abundant active sites provided by the unique dandelion-like hierarchical structure and the high reaction potential generated by the sensitization of the N-CQDs, the resulting 16 wt % N-CQDs/WO sensor shows an ultrahigh response value (/ = 74@1 ppm acetone), low detection limit (0.05 ppm), outstanding selectivity, and reliable stability to acetone at the optimum working temperature of 210 °C. Noteworthy that the N-CQDs facilitate the carrier migration and intensify the reaction between acetone and WO during the sensing process. Considering the above advantages, N-CQDs as a sensitizer to achieve excellent gas-sensitive properties of WO are a promising new strategy for achieving accurate acetone detection in real time and facilitating the development of portable human-exhaled gas sensors.

摘要

高灵敏度、低浓度以及优异的选择性是半导体气体传感器监测呼出气体中丙酮的主要挑战。在本研究中,具有高反应活性的氮掺杂碳量子点(N-CQDs)被用于活化蒲公英状分级氧化钨(WO)微球,以构建高效稳定的丙酮气体传感器。得益于独特的蒲公英状分级结构提供的丰富活性位点以及N-CQDs敏化产生的高反应电位的协同效应,所得的16 wt% N-CQDs/WO传感器在210 °C的最佳工作温度下对丙酮表现出超高响应值(/ = 74@1 ppm丙酮)、低检测限(0.05 ppm)、出色的选择性以及可靠的稳定性。值得注意的是,N-CQDs在传感过程中促进了载流子迁移并增强了丙酮与WO之间的反应。考虑到上述优点,N-CQDs作为一种敏化剂来实现WO优异的气敏性能是实时实现准确丙酮检测并推动便携式人体呼出气体传感器发展的一种有前景的新策略。

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