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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Materials synthesis, characterization and DFT calculations of the visible-light-active perovskite-like barium bismuthate Ba1.264(4)Bi1.971(4)O4 photocatalyst
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Materials synthesis, characterization and DFT calculations of the visible-light-active perovskite-like barium bismuthate Ba1.264(4)Bi1.971(4)O4 photocatalyst

机译:材料合成,表征和DFT计算的可见光活性钙钛矿钡Ba1.264(4)Bi1.971(4)O4光催化剂

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摘要

A perovskite-like barium bismuthate of the BaBi2O4 class, Ba1.264(4)Bi1.971(4)O4, has been prepared by solid-state synthesis and subsequently characterized by a number of experimental techniques (XPS, DRS, SEM, EDX and Raman spectroscopy), as well as by a DFT computational approach using the GGA Perdew-Burke-Ernzerhof (PBE) density functional to determine the energy band structure. XRD peaks were indexed to a rhombohedral cell (R3m) with parameters close to Ba0.156Bi0.844O1.422 (i.e., to Ba0.439Bi2.374O4), which upon Rietveld refinement gave Ba1.264(4)Bi1.971(4)O4. The Bi-O bond lengths determined from this refinement (1.86 and 2.31 angstrom) accorded with the bond lengths estimated from Raman spectra (1.97 and 2.26 angstrom). DFT calculations revealed the bismuthate to display two bandgaps that correspond to lower-energy indirect (2.28 eV) and to higher-energy direct (2.36 eV) electronic transitions in good agreement with the experimental bandgaps of 2.26 eV and 2.43 eV, respectively, from Tauc plots of DRS spectra. Relative to the indirect bandgap energy of 2.26 eV, the energies of the valence band and of the conduction band were, respectively, +1.14 eV and -1.12 eV. The photoactivity of Ba1.264(4)Bi1.971(4)O4 was examined toward the photoreduction of the greenhouse gas CO2 in aqueous media photoelectrochemically yielding alcohols and alkanes, while in the gas phase in an infrared cell reactor the products were carbon monoxide and alkanes.
机译:通过固态合成制备Babi2O4类的钙钛矿钡铋Ba1.264(4)尺寸钡铋,并随后通过许多实验技术表征了许多实验技术(XPS,DRS,SEM,EDX和拉曼光谱),以及使用GGA Perdew-Burke-Ernzerhof(PBE)密度函数的DFT计算方法来确定能带结构。 XRD峰被分为菱形细胞(R3M),参数接近Ba0.156Bi0.844O1.422(即,至Ba0.439bi2.374O4),其在Rietveld改进后给予Ba1.264(4)Bi1.971(4) O4。由该细化(1.86和2.31埃)确定的Bi-O键合长度符合从拉曼光谱(1.97和2.26埃)估计的键长度。 DFT计算揭示了铋,以显示与低能量间接(2.28eV)和更高能源直接(2.36eV​​)电子转换的两个带隙,与2.26eV和2.43eV的实验带隙分别来自Tauc DRS Spectra的情节。相对于2.26eV的间接带隙能量,平带和传导带的能量分别为+1.14eV和-1.12eV。在水性介质中的温室气体CO2的光电摄影中,在含水介质的光电化学产生醇和烷烃中检查Pa1.264(4)Bi1.971(4)O4的光接收率,同时在红外线电池反应器中的气相中,产物是一氧化碳和烷烃。

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    Russian Acad Sci YuA Kosygin Inst Tecton &

    Geophys Far Eastern Branch 65 Kim Yu Chen St Khabarovsk 680063 Russia;

    Russian Acad Sci YuA Kosygin Inst Tecton &

    Geophys Far Eastern Branch 65 Kim Yu Chen St Khabarovsk 680063 Russia;

    St Petersburg State Univ Lab Photoact Nanocomposite Mat Ulyanovskaya 1 St Petersburg 198904 Russia;

    St Petersburg State Univ Lab Photoact Nanocomposite Mat Ulyanovskaya 1 St Petersburg 198904 Russia;

    Far Eastern State Transport Univ 47 Seryshev St Khabarovsk 680021 Russia;

    St Petersburg State Univ Lab Photoact Nanocomposite Mat Ulyanovskaya 1 St Petersburg 198904 Russia;

    St Petersburg State Univ Lab Photoact Nanocomposite Mat Ulyanovskaya 1 St Petersburg 198904 Russia;

    St Petersburg State Univ Lab Photoact Nanocomposite Mat Ulyanovskaya 1 St Petersburg 198904 Russia;

    Univ Pavia Dipartimento Chim PhotoGreen Lab Via Taramelli 12 I-27100 Pavia Italy;

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  • 正文语种 eng
  • 中图分类 物理化学(理论化学)、化学物理学;
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