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Introducing Single Pd Atoms into a Two-Dimensional Metal-Organic Framework for Enhanced Benzene Vapor Detection
Zhiheng Ma1,2, Panzhe Qiao3, Xiaowu Wang2
1Shenzhen Key Laboratory of Advanced Thin Films and Applications, College of Physics and Optoelectronic Engineering, Shenzhen University, Shenzhen 518060, China.
Abstract:
We report the design and synthesis of a two-dimensional porphyrinic metal-organic framework (MOF), Al-TCPP-Pd, which incorporates atomically dispersed palladium sites for ultrasensitive benzene vapor detection. Compared with pristine Al-TCPP and Al-TCPP-Al analogs, Al-TCPP-Pd exhibits superior performance with an actual detection limit of 1 ppb (logic LOD is 0.48 ppb) and a response value that is four times higher than Al-TCPP at 1 ppm benzene concentration. This remarkable sensitivity is attributed to a synergistic mechanism involving geometric confinement within the MOF's rectangular pores and π-electron channel enhancement induced by Pd coordination. The sensor also shows excellent selectivity against aromatic and nonaromatic interfering gases, strong resistance to humidity, and long-term operational stability over 180 days. Through in situ Raman, quasi-in situ XPS, and Grand Canonical Monte Carlo simulations, it is revealed that the superior detection performances are attributed to the increased adsorption energies and preferential benzene localization in Pd-activated pores. These results underscore the effectiveness of noble metal single-atom functionalization in enhancing MOF-based sensor performance and offer a modular framework for designing.
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