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Pt/γ-BiMoO光催化剂的制备及其在可见光照射下α-烷基化反应中的性能

Preparation of Pt/γ-BiMoO Photocatalysts and Their Performance in α-Alkylation Reaction under Visible Light Irradiation.

作者信息

Li Haiying, Yu Xiujuan, Hao Xueli, Zhang Zhiying, Wang Yan, Li Jingyi

机构信息

College of Chemistry and Chemical Engineering, Inner Mongolia University, Hohhot 010021, China.

Hebei Key Laboratory of Neuropharmacology, Hebei North University, Zhangjiakou 075000, China.

出版信息

Nanomaterials (Basel). 2020 Mar 30;10(4):646. doi: 10.3390/nano10040646.

Abstract

Bi(NO)·5HO and (NH)MoO·4HO were used as precursors to synthesize flaky γ-BiMoO samples by a hydrothermal method, and Pt/γ-BiMoO samples with different mass fractions were prepared by an NaBH reduction method. Alpha alkylation of benzyl alcohol and acetophenone with photocatalysts under visible light irradiation was performed, and the activity of 4 wt % Pt/γ-BiMoO (γ-BiMoO was prepared by a nitric acid method, pH = 9, and reaction temperature 180 °C) was the best. The photocatalytic reaction conditions were optimized by changing various kinds of variables, such as the type of catalyst, solvent, and base, and the amount of base, catalyst, and reactant. The optimal conditions for the organic reaction were 75 mg 4 wt % Pt/γ-BiMoO, 6 mL n-heptane, 1.2 mmol NaOH, 1 mmol acetophenone, and 3 mmol benzyl alcohol. Under the optimal reaction conditions, the effects of different light wavelengths and light intensities on the reaction were measured, and the cycling ability of the photocatalyst was tested. After five cycles, the photochemical properties of the catalyst were relatively stable. Finally, the active substances were identified (such as electrons (e), holes (h), hydroxyl radicals (•OH), and superoxide radicals (•O).

摘要

以Bi(NO₃)₃·5H₂O和(NH₄)₂MoO₄·4H₂O为前驱体,采用水热法合成片状γ-Bi₂MoO₄样品,并通过NaBH₄还原法制备了不同质量分数的Pt/γ-Bi₂MoO₄样品。在可见光照射下,用催化剂对苯甲醇和苯乙酮进行α-烷基化反应,4 wt% Pt/γ-Bi₂MoO₄(γ-Bi₂MoO₄采用硝酸法制备,pH = 9,反应温度180℃)的活性最佳。通过改变各种变量,如催化剂类型、溶剂、碱以及碱、催化剂和反应物的用量,对光催化反应条件进行了优化。有机反应的最佳条件为75 mg 4 wt% Pt/γ-Bi₂MoO₄、6 mL正庚烷、1.2 mmol NaOH、1 mmol苯乙酮和3 mmol苯甲醇。在最佳反应条件下,测定了不同光波长和光强度对反应的影响,并测试了光催化剂的循环能力。经过五个循环后,催化剂的光化学性质相对稳定。最后,对活性物质进行了鉴定(如电子(e⁻)、空穴(h⁺)、羟基自由基(•OH)和超氧自由基(•O₂⁻))。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a3e9/7221669/45028cd61cad/nanomaterials-10-00646-g001.jpg

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