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双重孔隙率和表面功能化对用于室温下高性能氢气传感器的铂-多孔氮化镓的影响

Twofold Porosity and Surface Functionalization Effect on Pt-Porous GaN for High-Performance H-Gas Sensors at Room Temperature.

作者信息

Shafa Muhammad, Priante Davide, ElAfandy Rami T, Hedhili Mohamed Nejib, Mahmoud Saleh T, Ng Tien Khee, Ooi Boon S, Najar Adel

机构信息

Department of Physics, College of Science, United Arab Emirates University, Al Ain 15551, UAE.

Photonics Laboratory and Imaging and Characterization Core Lab, King Abdullah University of Science and Technology (KAUST), Thuwal 23955-6900, Saudi Arabia.

出版信息

ACS Omega. 2019 Jan 18;4(1):1678-1684. doi: 10.1021/acsomega.8b02730. eCollection 2019 Jan 31.

Abstract

The achievement of H detection, up to 25 ppm, at room temperature using sulfur-treated, platinum (Pt)-decorated porous GaN is reported in this study. This achievement is attributed to the large lateral pore size, Pt catalyst, and surface treatment using organic sulfide. The performance of H-gas sensors is studied as a function of the operating temperature by providing an adsorption activation energy of 22 meV at 30 ppm H, confirming the higher sensitivity of the sulfide-treated Pt-porous GaN sensor. Furthermore, the sensing response of the sulfide-treated Pt-porous GaN gas sensor increases with the increase in porosity (surface-to-volume ratio) and pore radii. Using the Knudsen diffusion-surface reaction equation, the H gas concentration profile is simulated and fitted within the porous GaN layer, revealing that H diffusion is limited by small pore radii because of its low diffusion rate. The simulated gas sensor responses to H versus the pore diameter show the same trend as observed for the experimental data. The sulfide-treated Pt-porous GaN sensor achieves ultrasensitive H detection at room temperature for 125 nm pore radii.

摘要

本研究报道了使用经硫处理、铂(Pt)修饰的多孔氮化镓在室温下实现高达25 ppm的氢气检测。这一成果归因于较大的横向孔径、Pt催化剂以及使用有机硫化物进行的表面处理。通过在30 ppm氢气下提供22 meV的吸附活化能,研究了氢气传感器的性能随工作温度的变化,证实了经硫化物处理的Pt-多孔氮化镓传感器具有更高的灵敏度。此外,经硫化物处理的Pt-多孔氮化镓气体传感器的传感响应随孔隙率(表面积与体积比)和孔径的增加而增加。使用克努森扩散-表面反应方程,模拟并拟合了多孔氮化镓层内的氢气浓度分布,结果表明由于氢气扩散速率低,其扩散受小孔径限制。模拟的气体传感器对氢气的响应与孔径的关系与实验数据呈现相同趋势。经硫化物处理的Pt-多孔氮化镓传感器在室温下对于125 nm的孔径实现了超灵敏的氢气检测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/522f/6648823/0695de01de10/ao-2018-027306_0001.jpg

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