首页> 外文会议>Metallurgy technology and materials VI >Comparison the Rapid Microwave-Assisted Polyol Route and Modified Chemical Reduction Methods to Synthesize The Pt Nanoparticles on the Ti_(0.7)W_(0.3)O_2 Support
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Comparison the Rapid Microwave-Assisted Polyol Route and Modified Chemical Reduction Methods to Synthesize The Pt Nanoparticles on the Ti_(0.7)W_(0.3)O_2 Support

机译:快速微波辅助多元醇路线和改进的化学还原方法在Ti_(0.7)W_(0.3)O_2载体上合成Pt纳米颗粒的比较

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The tungsten-modified titanium dioxide, which prepared through the one-pot solvothermal process, exhibited the large specific surface area (~ 202 m~2/g) and greater electrical conductivity (~ 0.022 S/cm). Furthermore, for the comparison purpose to find appropriate approach for the synthesis 20 wt. % Pt NPs/Ti_(0.7)W_(0.3)O_2 catalyst, the modified chemical reduction utilizing NaBH_4 and the rapid microwave-assisted polyol using ethylene glycol were employed without any surfactants or stabilizers. The characterization of Pt-based electrocatalyst was investigated through XRD, SEM-EDX, TEM measurements. As result, the platinum nanocatalyst formation with the face-centered cubic structure (fcc) and the amount loading on Ti_(0.7)W_(0.3)O_2 support approximately 20 wt. % of two synthesized methods. However, the diameter size and distribution of Pt nano-forms have clearly classified in two reduction route. For example, the Pt nanocatalyst, which was created by the rapid microwave-assisted polyol at 160 ℃ for 2 min, exhibited the good distribution on support with ~3 nm diameter. This could be ascribed to the fast and uniform heating of microwave-assisted and moderate reducing possibility of ethylene glycol. These results indicate that the rapid microwave-assisted polyol was an appropriate approach not only for synthesizing 20 wt. % Pt NPs/Ti_(0.7)W_(0.3)O_2 catalyst but also for preparing Pt-based electrocatalysts.
机译:通过一锅溶剂热法制备的钨改性二氧化钛表现出较大的比表面积(〜202 m〜2 / g)和较大的电导率(〜0.022 S / cm)。此外,出于比较的目的,找到合适的合成方法20重量%。使用%Pt NPs / Ti_(0.7)W_(0.3)O_2催化剂,使用NaBH_4的改良化学还原法和使用乙二醇的快速微波辅助多元醇,无需任何表面活性剂或稳定剂。通过XRD,SEM-EDX,TEM测量研究了Pt基电催化剂的表征。结果,具有面心立方结构(fcc)和负载在Ti_(0.7)W_(0.3)O_2上的负载量的铂纳米催化剂形成了约20 wt。两种合成方法的百分比。然而,Pt纳米形式的直径大小和分布已清楚地分为两种还原途径。例如,由快速微波辅助多元醇在160℃下2分钟生成的Pt纳米催化剂在直径约3 nm的载体上表现出良好的分布。这可以归因于微波辅助的快速且均匀的加热以及适度降低乙二醇的可能性。这些结果表明,快速微波辅助的多元醇不仅是合成20wt。%H 2 O的合适方法。 %Pt NPs / Ti_(0.7)W_(0.3)O_2催化剂,但也用于制备基于Pt的电催化剂。

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