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用于高效可见光驱动光催化产氢的基于整体式TiO纳米颗粒气凝胶的气相氮掺杂

Gas-Phase Nitrogen Doping of Monolithic TiO Nanoparticle-Based Aerogels for Efficient Visible Light-Driven Photocatalytic H Production.

作者信息

Kwon Junggou, Choi Kyoungjun, Schreck Murielle, Liu Tian, Tervoort Elena, Niederberger Markus

机构信息

Laboratory for Multifunctional Materials, Department of Materials, ETH Zurich, Vladimir-Prelog-Weg 5, Zürich 8093, Switzerland.

Nanoscience for Energy Technology and Sustainability, Department of Mechanical and Process Engineering, ETH Zurich, Tannenstrasse 3, Zürich 8092, Switzerland.

出版信息

ACS Appl Mater Interfaces. 2021 Nov 17;13(45):53691-53701. doi: 10.1021/acsami.1c12579. Epub 2021 Nov 3.

Abstract

The development of visible light-active photocatalysts is essential for increasing the conversion efficiency of solar energy into hydrogen (H). Here, we present a facile method for nitrogen doping of monolithic titanium dioxide (TiO) nanoparticle-based aerogels to activate them for visible light. Plasma-enhanced chemical vapor deposition at low temperature enables efficient incorporation of nitrogen into preformed TiO aerogels without compromising their advantageous intrinsic characteristics such as large surface area, extensive porosity, and nanoscale properties of the semiconducting building blocks. By balancing the dopant concentration and the defects, the nitridation improves optical absorption and charge separation efficiency. The nitrogen-doped TiO nanoparticle-based aerogels loaded with palladium (Pd) nanoparticles show a significant enhancement in visible light-driven photocatalytic H production (3.1 mmol h g) with excellent stability over 5 days. With this method, we introduce a powerful tool to tune the properties of nanoparticle-based aerogels after synthesis for a specific application, as exemplified by visible light-driven H production.

摘要

可见光活性光催化剂的开发对于提高太阳能向氢气(H)的转化效率至关重要。在此,我们提出一种简便的方法,用于对基于二氧化钛(TiO₂)纳米颗粒的整体式气凝胶进行氮掺杂,以使其在可见光下具有活性。低温等离子体增强化学气相沉积能够将氮有效地掺入预先形成的TiO₂气凝胶中,而不会损害其诸如大表面积、高孔隙率和半导体构建块的纳米级特性等有利的固有特性。通过平衡掺杂剂浓度和缺陷,氮化作用提高了光吸收和电荷分离效率。负载钯(Pd)纳米颗粒的氮掺杂TiO₂纳米颗粒基气凝胶在可见光驱动的光催化产氢(3.1 mmol h⁻¹ g⁻¹)方面表现出显著增强,并且在5天内具有出色的稳定性。通过这种方法,我们引入了一种强大的工具,用于在合成后针对特定应用调整基于纳米颗粒的气凝胶的性能,以可见光驱动产氢为例。

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