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双金属金和钯纳米粒子修饰的 WO 纳米片用于提高水产品中甲醛检测的灵敏度和选择性。

Bimetallic Au and Pd Nanoparticles Modified WO Nanosheets for Enhancing the Sensitivity and Selectivity of Formaldehyde Assessment in Aquatic Products.

作者信息

Liu Xun, Han Jingting, Qiao Xiaopeng, Cai Haijie, Zhao Yong, Zhang Zhaohuan, Zhai Baiqiang, Ni Tianjun, Zhao Cheng, Zhu Yongheng

机构信息

College of Food Science and Technology, Laboratory of Quality & Safety Risk Assessment for Aquatic Products on Storage and Preservation (Shanghai), International Research Center for Food and Health, Shanghai Ocean University, Shanghai 201306, China.

School of Basic Medicine, Xinxiang Medical University, Xinxiang 453003, China.

出版信息

ACS Appl Mater Interfaces. 2024 May 1;16(17):22155-22165. doi: 10.1021/acsami.4c02211. Epub 2024 Apr 18.

Abstract

Formaldehyde, a common illegal additive in aquatic products, poses a threat to people's health and lives. In this study, a novel metal oxide semiconductor gas sensor based on AuPd-modified WO nanosheets (NSs) had been developed for the highly efficient detection of formaldehyde. WO NS modified with 2.0% AuPd nanoparticles showed a higher response (/ = 94.2) to 50 ppm of formaldehyde at 210 °C, which was 36 times more than the pristine WO NS. In addition, the AuPd/WO gas sensor had a relatively short response/recovery time of 10 s/9 s for 50 ppm of formaldehyde at 210 °C, with good immunity to other interfering gases and good stability for formaldehyde. The excellent gas-sensitive performance was attributed to the chemical sensitization of Au, the electronic sensitization of Pd, and the synergistic effect of bimetallic AuPd, which facilitated the recognition and response of formaldehyde molecules. Additionally, the high sensitivity and broad application prospect of the 2.0% AuPd/WO NS composite-based sensor in real sample detection were also confirmed by using the above sensor for the detection of formaldehyde in aquatic products such as squid and shrimp.

摘要

甲醛是水产品中常见的非法添加剂,对人们的健康和生命构成威胁。在本研究中,一种基于金钯修饰的氧化钨纳米片(NSs)的新型金属氧化物半导体气体传感器被开发用于高效检测甲醛。用2.0%金钯纳米颗粒修饰的氧化钨纳米片在210℃下对50 ppm甲醛表现出更高的响应(/ = 94.2),这是原始氧化钨纳米片的36倍。此外,金钯/氧化钨气体传感器在210℃下对50 ppm甲醛的响应/恢复时间相对较短,分别为10 s/9 s,对其他干扰气体具有良好的抗干扰能力,对甲醛具有良好的稳定性。优异的气敏性能归因于金的化学敏化、钯的电子敏化以及双金属金钯的协同效应,这促进了对甲醛分子的识别和响应。此外,通过使用上述传感器检测鱿鱼和虾等水产品中的甲醛,也证实了基于2.0%金钯/氧化钨纳米片复合材料的传感器在实际样品检测中的高灵敏度和广阔应用前景。

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