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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Hybridizing Engineering Strategy of Decatungstate. 2. Regulated Effect of Doping Transition Metal Ions on Photocatalytic Oxidation Performance of (nBu(4)N)(4)W10O32
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Hybridizing Engineering Strategy of Decatungstate. 2. Regulated Effect of Doping Transition Metal Ions on Photocatalytic Oxidation Performance of (nBu(4)N)(4)W10O32

机译:脱丹顿杂交工程策略。 2.掺杂过渡金属离子对(NBU(4)N)(4)W10O32的光催化氧化性能的调节作用

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摘要

This paper discloses a simple and productive hybridizing engineering (HE) strategy for the 3d transition-metal-ion (Mn+ = Fe3+, Fe2+, Co2+, Ni2+)-doped (nBu(4)N)(4)W10O32 (Mn+-TBADT) compounds as highly efficient visible-light catalysts. Ultraviolet visible (UV-vis), Fourier transform infrared (FT-IR) and photoluminescence (PL) spectra, and cyclic voltammetry (CV) characterizations indicate that the synthetic quality, redox capacity, and visible light harvesting efficiency of TBADT, especially the separation efficiency of its photogenerated Ground slate electron-hole pairs, are regulated by the metal ion dopants and gradually improved with a change of the dopant from Fe3+, Fe2+, and Co2+ to Ni2+, along with a continuous and significant enhancement of its photocatalytic efficiency in the visible-light-triggered selective oxidation of ethylbenzene with dioxygens in acetonitrile. The best 0.5 mol % Ni2+-doped TBADT can achieve a ca. 55% conversion under optimal reaction conditions and also exhibits much higher photocatalytic activity for the photo-oxidation of toluene, cyclohexane, and benzyl alcohol compared to pure TBADT. This HE strategy showcases great potential in improving the photocatalysis performance of TBADT.
机译:本文公开了一种用于3d过渡金属离子(锰+ =的Fe3 +,Fe2 +的,CO 2 +,Ni2 +的)的简单和高效杂交工程(HE)的策略 - 掺杂(NBU(4)N)(4)W10O32(锰+ -TBADT)化合物作为高效可见光催化剂。紫外 - 可见(UV-VIS),傅立叶变换红外(FT-IR)和光致发光(PL)光谱,和循环伏安法(CV)表征表明合成的质量,氧化还原能力,并且TBADT的可见光收获效率,特别是在分离其光生地面石板电子 - 空穴对的效率,通过金属离子的掺杂剂调节,并且逐步提高与来自的Fe3 +,Fe2 +的,和CO 2 +到Ni2 +的掺杂剂的变化,在一个连续的和显著增强的光催化效率沿可见光引发乙苯的选择性氧化在乙腈dioxygens。最好为0.5摩尔%Ni2 +的掺杂TBADT可以实现约最佳的反应条件下55%的转化率,并且还显示出对甲苯,环己烷和苯甲醇的光氧化相比纯TBADT高得多的光催化活性。这一点,他的策略在提高TBADT的光催化性能展现巨大的潜力。

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