A multimodal flow reactor for photocatalysis under atmospheric conditions

被引:2
作者
Garcia-Esparza, Angel T. [1 ]
Qureshi, Muhammad [1 ]
Skoien, Dean [1 ]
Hersbach, Thomas J. P. [1 ]
Sokaras, Dimosthenis [1 ]
机构
[1] SLAC Natl Accelerator Lab, 2575 Sand Hill Rd, Menlo Pk, CA 94025 USA
基金
美国国家卫生研究院; 美国国家科学基金会;
关键词
HYDROGEN-PRODUCTION; HETEROGENEOUS PHOTOCATALYSIS; QUANTUM EFFICIENCY; WATER; EVOLUTION; NANOPARTICLES; ELECTROLYSIS; DEFINITIONS; CATALYSTS; PLATINUM;
D O I
10.1063/5.0179259
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Photocatalysis is a promising concept for the direct conversion of solar energy into fuels and chemicals. The design, experimental protocol, and performance of a multimodal and versatile flow reactor for the characterization of powdered and immobilized photocatalysts are herein presented. Ultimately, this instrument enables rigorous evaluation of photocatalysis performance metrics. The apparatus quantifies transient gas-phase reaction products via online real-time gas analyzer mass spectrometry (RTGA-MS). For H-2, the most challenging gas, the photocatalytic system's RTGA-MS gas detection sensitivity spans over three orders of magnitude and can detect down to tens of parts per million under atmospheric conditions. Using Pt nanoparticles supported on anatase TiO2 photocatalyst via wet impregnation, the instrument's capability for the characterization of photocatalytic H-2 evolution is demonstrated, resulting in an apparent quantum yield (AQY) of 48.1% +/- 0.9% at 320 nm, 45.7% +/- 0.3% at 340 nm and 31% +/- 1% at 360 nm. The photodeposition of Pt on anatase TiO2 was employed to demonstrate the instrument's capability to track the transient behavior of photocatalysts, resulting in an improved 55% +/- 2% AQY for H-2 evolution at 340 nm from aqueous methanol. This photocatalytic instrument enables systematic study of a wide variety of photocatalytic reactions such as water splitting and CO2 reduction to valuable C2+ fuels and chemicals.
引用
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页数:12
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