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具有1个Ruddlesden-Popper结构的层间活性层状氧硫化物NaMTiOS(M = Nd,Sm)作为可见光分解水的光催化剂。

Interlayer-active layered oxysulfides NaMTiOS (M = Nd, Sm) with an = 1 Ruddlesden-Popper structure acting as photocatalysts for visible light water splitting.

作者信息

Ishii Yusuke, Suzuki Hajime, Kato Daichi, Tomita Osamu, Nakada Akinobu, Abe Ryu

机构信息

Department of Energy and Hydrocarbon Chemistry, Graduate School of Engineering, Kyoto University Katsura, Nishikyo-ku Kyoto 615-8510 Japan.

出版信息

Chem Sci. 2025 Aug 13. doi: 10.1039/d5sc04851f.

Abstract

Layered compounds that utilize interlayer space as a reactive field are known as "interlayer-active" compounds and have been gaining attention, particularly in photocatalysis for water splitting. However, most of the reported "interlayer-active" photocatalysts are oxide semiconductors that possess a wide bandgap. Thus, they cannot utilize visible light essential for efficient water splitting. In this study, we synthesized novel Ruddlesden-Popper (RP) ( = 1) layered oxysulfides, NaMTiOS (M = Nd, Sm), by heating "interlayer-active" layered oxides, NaMTiO, under HS flow. In NaMTiOS, the sulfur atoms occupy the apical oxygen sites and contribute to the elevated valence band maximum (VBM) to enable visible light absorption. Additionally, NaMTiOS exhibits both proton exchange and interlayer hydration capabilities as well as photocatalytic activity for hydrogen and oxygen evolution under visible light. Hence, NaMTiOS is the first example of both a = 1 RP and an "interlayer-active" oxysulfide with the potential for visible-light-driven overall water splitting. The "interlayer-active" RP ( = 1) oxysulfide is expected to find application in various fields beyond photocatalysis by utilizing interlayer reactions such as ion exchange and interlayer hydration.

摘要

利用层间空间作为反应场的层状化合物被称为“层间活性”化合物,并且已经受到关注,特别是在光催化水分解方面。然而,大多数已报道的“层间活性”光催化剂是具有宽带隙的氧化物半导体。因此,它们无法利用高效水分解所必需的可见光。在本研究中,我们通过在硫化氢气流中加热“层间活性”层状氧化物NaMTiO,合成了新型的Ruddlesden-Popper(RP)(n = 1)层状氧硫化物NaMTiOS(M = Nd,Sm)。在NaMTiOS中,硫原子占据顶端氧位点,并有助于提高价带最大值(VBM)以实现可见光吸收。此外,NaMTiOS表现出质子交换和层间水合能力以及在可见光下的析氢和析氧光催化活性。因此,NaMTiOS是第一个n = 1的RP型且具有可见光驱动全水分解潜力的“层间活性”氧硫化物的例子。通过利用离子交换和层间水合等层间反应,“层间活性”RP(n = 1)氧硫化物有望在光催化以外的各个领域得到应用。

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