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基于模拟XRD图谱识别CdZnS/Zn(OH)光催化剂中的有害相。

Identification of a deleterious phase in photocatalyst based on CdZnS/Zn(OH) by simulated XRD patterns.

作者信息

Cherepanova Svetlana, Markovskaya Dina, Kozlova Ekaterina

机构信息

Boreskov Institute of Catalysis, Siberian Branch of the Russian Academy of Sciences, Lavrentieva 5, Novosibirsk 630090, Russian Federation.

出版信息

Acta Crystallogr B Struct Sci Cryst Eng Mater. 2017 Jun 1;73(Pt 3):360-368. doi: 10.1107/S2052520617001664. Epub 2017 May 12.

Abstract

The X-ray diffraction (XRD) pattern of a deleterious phase in the photocatalyst based on CdZnS/Zn(OH) contains two relatively intense asymmetric peaks with d-spacings of 2.72 and 1.56 Å. Very small diffraction peaks with interplanar distances of (d) ≃ 8.01, 5.40, 4.09, 3.15, 2.49 and 1.35 Å are characteristic of this phase but not always observed. To identify this phase, the XRD patterns for sheet-like hydroxide β-Zn(OH) and sheet-like hydrozincite Zn(CO)(OH) as well as for turbostratic hydrozincite were simulated. It is shown that the XRD pattern calculated on the basis of the last model gives the best correspondence with experimental data. Distances between layers in the turbostratically disordered hydrozincite fluctuate around d ≃ 8.01 Å. This average layer-to-layer distance is significantly higher than the interlayer distance 6.77 Å in the ordered Zn(CO)(OH) probably due to a deficiency of CO anions, excess OH and the presence of water molecules in the interlayers. It is shown by variable-temperature XRD and thermogravimetric analysis (TGA) that the nanocrystalline turbostratic nonstoichiometric hydrozincite-like phase is quite thermostable. It decomposes into ZnO in air above 473 K.

摘要

基于CdZnS/Zn(OH)的光催化剂中有害相的X射线衍射(XRD)图谱包含两个相对较强的不对称峰,其d间距分别为2.72和1.56 Å。具有(d)≃8.01、5.40、4.09、3.15、2.49和1.35 Å晶面间距的非常小的衍射峰是该相的特征,但并非总是能观察到。为了识别该相,模拟了片状氢氧化物β-Zn(OH)、片状水锌矿Zn(CO)(OH)以及乱层水锌矿的XRD图谱。结果表明,基于最后一个模型计算得到的XRD图谱与实验数据的吻合度最佳。乱层无序水锌矿中层间距离在d≃8.01 Å附近波动。这个平均层间距明显高于有序Zn(CO)(OH)中的层间距离6.77 Å,这可能是由于层间CO阴离子不足、OH过量以及存在水分子所致。变温XRD和热重分析(TGA)表明,纳米晶乱层非化学计量水锌矿样相相当热稳定。它在473 K以上的空气中分解为ZnO。

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