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基于多金属氧酸盐簇引导的具有超细铂纳米颗粒的分支状 WO 纳米纤维的动态成核与分级生长用于先进气体传感

Polyoxometalate Cluster-Guided Dynamic Nucleation and Hierarchical Growth of Branched WO Nanofibers with Ultrafine Pt Nanoparticles for Advanced Gas Sensing.

作者信息

Gao Renhui, Chen Li, Li Yunfeng, Wang Yongxin, Yang Tianyu, Li Xiao, Geng Jing, Guo Zheng

机构信息

Information Materials and Intelligent Sensing Laboratory of Anhui Province, Institutes of Physical Science and Information Technology, Anhui University, Hefei 230601, P. R. China.

Ministry of Education, Key Laboratory of Structure and Functional Regulation of Hybrid Materials, Anhui University, Hefei 230601, P. R. China.

出版信息

Inorg Chem. 2024 Sep 30;63(39):18285-18295. doi: 10.1021/acs.inorgchem.4c03209. Epub 2024 Sep 19.

Abstract

In the food industry, 2,3-butanedione is a significant volatile organic compound valued for its unique aroma and flavor. Real-time detection of its concentration during food preparation is crucial for ensuring optimal taste and food safety. However, accurately detecting low concentrations of 2,3-butanedione requires highly sensitive sensing materials. Herein, we present a novel synthesis of branched WO nanofibers decorated with ultrafine Pt nanoparticles (Pt NPs-WO NFs), templated by polyoxometalate (POM) clusters, through a combination of electrospinning and thermal oxidation strategies for advanced gas sensing applications. This Pt NPs-WO NFs-based sensor exhibits impressive sensitivity (/ = 2.25 vs 500 ppb), a low detection limit of 10 ppb, high selectivity, excellent repeatability, and stable performance over a period of 25 days. Using POM clusters as templates offers significant advantages over the traditional WCl salt in synthesizing WO NFs with smooth surfaces. Specifically, the POM clusters guide the dynamic nucleation and hierarchical growth of branched NFs, enhancing the concentration of oxygen vacancies and increasing the number of active adsorption sites. Furthermore, the uniform dispersion of ultrafine Pt NPs (≈ 4 nm) within the WO NFs further enhances the catalytic activation of 2,3-butanedione, significantly improving the gas sensing performance. This study introduces an efficient method to synthesize Pt NPs-WO NFs with potential for manufacturing advanced nanostructured sensing materials using POM clusters as templates, paving the way for high-performance gas sensing technologies.

摘要

在食品工业中,2,3 - 丁二酮是一种重要的挥发性有机化合物,因其独特的香气和风味而受到重视。在食品制备过程中实时检测其浓度对于确保最佳口感和食品安全至关重要。然而,准确检测低浓度的2,3 - 丁二酮需要高灵敏度的传感材料。在此,我们通过静电纺丝和热氧化策略相结合,提出了一种以多金属氧酸盐(POM)簇为模板,用于先进气体传感应用的新型合成方法,合成了装饰有超细铂纳米颗粒(Pt NPs - WO NFs)的分支状WO纳米纤维。这种基于Pt NPs - WO NFs的传感器表现出令人印象深刻的灵敏度(/ = 2.25 vs 500 ppb)、10 ppb的低检测限、高选择性、优异的重复性以及在25天内的稳定性能。使用POM簇作为模板在合成具有光滑表面的WO NFs方面比传统的WCl盐具有显著优势。具体而言,POM簇引导分支状NFs的动态成核和分级生长,提高氧空位浓度并增加活性吸附位点数量。此外,超细Pt NPs(≈4 nm)在WO NFs中的均匀分散进一步增强了2,3 - 丁二酮的催化活化,显著提高了气体传感性能。本研究介绍了一种高效的方法来合成Pt NPs - WO NFs,具有使用POM簇作为模板制造先进纳米结构传感材料的潜力,为高性能气体传感技术铺平了道路。

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