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首页> 外文期刊>Journal of Materials Research >Independent control of metal cluster and ceramic particle characteristics during one-step synthesis of Pt/TiO2
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Independent control of metal cluster and ceramic particle characteristics during one-step synthesis of Pt/TiO2

机译:Pt / TiO2一步合成过程中金属团簇和陶瓷颗粒特性的独立控制

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摘要

Rapid quenching during flame spray synthesis of Pt/TiO2 (0-10 Wt% Pt) is demonstrated as a versatile method for independent control of support (TiO2) and noble metal (Pt)cluster characteristics. Titania grain size, morphology, crystal phase structure, and crystal size were analyzed by nitrogen adsorption, electron microscopy and x-ray diffraction, respectively, while Pt-dispersion and size were determined by CO-pulse chemisorption. The influence of quench cooling on the flame temperature was analyzed by Fourier transform infrared spectroscopy. Increasing the quench flow rate reduced the Pt diameter asymptotically. Optimal quenching with respect to maximum Pt-dispersion (similar to 60%) resulted in average Pt diameters of 1.7 to 2.3 nm for Pt-contents of 1-10 wt%, respectively.
机译:Pt / TiO2(0-10 Wt%Pt)火焰喷涂合成过程中的快速淬火被证明是一种独立控制载体(TiO2)和贵金属(Pt)团簇特性的通用方法。通过氮气吸附,电子显微镜和X射线衍射分别分析了二氧化钛的晶粒尺寸,形态,晶体相结构和晶体尺寸,而Pt分散和尺寸通过CO脉冲化学吸附法确定。通过傅里叶变换红外光谱分析淬火冷却对火焰温度的影响。增加骤冷流速渐近地减小了Pt直径。相对于最大Pt分散度(约60%)的最佳淬火导致Pt含量为1-10 wt%时平均Pt直径为1.7至2.3 nm。

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