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用于选择性检测一氧化氮的氮化钛传感器。

Titanium nitride sensor for selective NO detection.

作者信息

Zhao Xuefei, Xu Zhihang, Zhang Zhaorui, Liu Jiahao, Yan Xiaohui, Zhu Ye, Attfield J Paul, Yang Minghui

机构信息

School of Environmental Science and Technology, Dalian University of Technology, Dalian, China.

Department of Applied Physics, Research Institute for Smart Energy, The Hong Kong Polytechnic University, Hung Hom, Hong Kong, China.

出版信息

Nat Commun. 2025 Jan 2;16(1):182. doi: 10.1038/s41467-024-55534-x.

Abstract

Efficient detection methods are needed to monitor nitrogen dioxide (NO), a major NO pollutant from fossil fuel combustion that poses significant threats to both ecology and human health. Current NO detection technologies face limitations in stability and selectivity. Here, we present a transition metal nitride sensor that exhibits exceptional selectivity for NO, demonstrating a sensitivity 30 times greater than that of the strongest interfering gas, NO. The sensor maintains stability over 6 months and does not utilize platinum or other precious metals. This notable performance has been achieved through preparation of highly active titanium nitride (TiN) nanoparticles with exceptionally large surface area and a high concentration of nitrogen vacancies. By contrast, a commercial sample of TiN shows no gas sensing activity. Such devices are potentially scalable for everyday NO detection and demonstrate that robust high-performance gas sensors based on inexpensive metal nitrides without precious metals are leading candidates for environmental monitoring technologies.

摘要

需要高效的检测方法来监测二氧化氮(NO),它是化石燃料燃烧产生的主要氮氧化物污染物,对生态和人类健康都构成重大威胁。当前的NO检测技术在稳定性和选择性方面存在局限性。在此,我们展示了一种对NO具有卓越选择性的过渡金属氮化物传感器,其灵敏度比最强干扰气体一氧化氮(NO)高30倍。该传感器在6个月内保持稳定,且不使用铂或其他贵金属。这种显著的性能是通过制备具有超大表面积和高浓度氮空位的高活性氮化钛(TiN)纳米颗粒实现的。相比之下,商业化的TiN样品没有气体传感活性。这类器件在日常NO检测方面具有潜在的可扩展性,并表明基于廉价金属氮化物且不含贵金属的坚固高性能气体传感器是环境监测技术的主要候选者。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a48f/11696294/709857f55981/41467_2024_55534_Fig1_HTML.jpg

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