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缺陷烧绿石型莫特肖特基光催化剂用于低压强化氨合成。

Defect Pyrochlore-Type Mott-Schottky Photocatalysts for Enhanced Ammonia Synthesis at Low Pressure.

机构信息

State Key Laboratory of Inorganic Synthesis and Preparative Chemistry, College of Chemistry, Jilin University, 130012, Changchun, P. R. China.

College of Chemistry, Jilin University, 130012, Changchun, P. R. China.

出版信息

Angew Chem Int Ed Engl. 2023 Jun 26;62(26):e202303629. doi: 10.1002/anie.202303629. Epub 2023 May 15.

Abstract

The ambient ammonia synthesis coupled with distributed green hydrogen production technology can provide promising solutions for low-carbon NH production and H storage. Herein, we reported Ru-loaded defective pyrochlore K Ta O with remarkable visible-light absorption and a very low work function, enabling effective visible-light-driven ammonia synthesis from N and H at low pressure down to 0.2 atm. The photocatalytic rate was 2.8 times higher than that of the best previously reported photocatalyst and the photo-thermal rate at 425 K was similar to that of Ru-loaded black TiO at 633 K. Compared to perovskite-type KTaO with the same composition, the pyrochlore exhibited a 3.7-fold increase in intrinsic activity due to a higher photoexcited charge separation efficiency and a higher conduction band position. The interfacial Schottky barrier and spontaneous electron transfer between K Ta O and Ru further improve photoexcited charge separation and accumulate energetic electrons to facilitate N activation.

摘要

环境氨合成与分布式绿色氢气生产技术相结合,可以为低碳 NH3 生产和 H2 存储提供有前景的解决方案。在此,我们报道了 Ru 负载的缺陷烧绿石 KTaO,它具有显著的可见光吸收和非常低的功函数,能够在低压下(低至 0.2atm)有效进行可见光驱动的氨合成,从 N2 和 H2 中合成。光催化速率比之前报道的最好的光催化剂高 2.8 倍,在 425K 下的光热速率与负载 Ru 的黑 TiO 在 633K 下的光热速率相当。与具有相同组成的钙钛矿型 KTaO 相比,由于光激发电荷分离效率更高和导带位置更高,烧绿石的本征活性提高了 3.7 倍。KTaO 和 Ru 之间的界面肖特基势垒和自发电子转移进一步促进了光激发电荷分离,并积累了高能电子,以促进 N 原子的活化。

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