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通过二氧化钛纳米片与单分散球形介孔二氧化硅颗粒的混合膜界面进行的光化学电子转移。 [已修正]

Photochemical electron transfer through [corrected] the interface of hybrid films of titania nano-sheets and mono-dispersed spherical mesoporous silica particles.

作者信息

Yui Tatsuto, Kobayashi Yuka, Yamada Yuri, Tsuchino Takako, Yano Kazuhisa, Kajino Tsutomu, Fukushima Yoshiaki, Torimoto Tsukasa, Inoue Haruo, Takagi Katsuhiko

机构信息

Department of Crystalline Materials Science, Graduate School of Engineering, Nagoya University, Chikusa-ku, Nagoya, 464-8603, Japan.

出版信息

Phys Chem Chem Phys. 2006 Oct 21;8(39):4585-90. doi: 10.1039/b609779k. Epub 2006 Sep 11.

Abstract

Photochemical Electron Transfer (ET) between an organic dye, the porphyrin derivative TMPyP, and an electron acceptor, methyl viologen MV2+, have been investigated at the interface of two different inorganic films, i.e., layered titania nano-sheets (TNS) and a monolayer film of spherical and mono-dispersed mesoporous silica (sMPS) particles (ca. 0.5 microm). TMPyP ions were intercalated within the sMPS nano-cavities to form (TMPyP-sMPS) while MV2+ ions were intercalated into the TNS interlayers to form (MV2+-TNS). The (TMPyP-sMPS) and (MV2+-TNS) films were then stacked on a silica substrate in this order to form a (MV2+-TNS)/(TMPyP-sMPS) film and, upon UV light irradiation, ET could be induced. However, when this film was stacked inversely, i.e., for the (TMPyP-sMPS)/(MV2+-TNS) films on a silica substrate, no photoinduced ET were observed. Interestingly, however, even for this photo-inactive inversely stacked film, ET could be generated by inserting a gold vapor-deposited layer between the (MV2+-TNS) and (TMPyP-sMPS) films. The conjugation conditions at the interface of the inversely stacked (TMPyP-sMPS)/(MV2+-TNS) hybrid film were, thus, confirmed to strongly affect the photoinduced electron transfers and their efficiencies.

摘要

在两种不同无机薄膜,即层状二氧化钛纳米片(TNS)和球形单分散介孔二氧化硅(sMPS)颗粒(约0.5微米)的单层薄膜的界面上,研究了有机染料卟啉衍生物四(N-甲基吡啶基)卟啉(TMPyP)与电子受体甲基紫精(MV2+)之间的光化学电子转移(ET)。TMPyP离子插入sMPS纳米腔内形成(TMPyP-sMPS),而MV2+离子插入TNS层间形成(MV2+-TNS)。然后将(TMPyP-sMPS)和(MV2+-TNS)薄膜按此顺序堆叠在二氧化硅基板上,形成(MV2+-TNS)/(TMPyP-sMPS)薄膜,在紫外光照射下可诱导电子转移(ET)。然而,当该薄膜反向堆叠时,即在二氧化硅基板上的(TMPyP-sMPS)/(MV2+-TNS)薄膜中,未观察到光诱导电子转移(ET)。然而,有趣的是,即使对于这种光不活性的反向堆叠薄膜,通过在(MV2+-TNS)和(TMPyP-sMPS)薄膜之间插入金蒸镀层也可以产生电子转移(ET)。因此,证实了反向堆叠的(TMPyP-sMPS)/(MV2+-TNS)混合薄膜界面处的共轭条件对光诱导电子转移及其效率有强烈影响。

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