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PS@Au核殼復(fù)合粒子的可控合成及粒徑對催化性能的影響
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北京航空材料研究院創(chuàng)新基金項目(KF53090315)


Controllable Synthesis of PS@Au Core-Shell Composite Particles and the Effect of Diameter on Catalytic Performance
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    摘要:

    采用適當(dāng)?shù)幕瘜W(xué)鍍工藝,通過對核層聚苯乙烯微球粒徑的調(diào)制,可控合成了粒徑連續(xù)可調(diào)的PS@Au核殼復(fù)合粒子,其球形度較高,無團(tuán)聚,催化活性優(yōu)良。利用SEM、XRD和UV-Vis,結(jié)合催化性能測試,研究了粒徑對PS@Au核殼復(fù)合粒子催化性能的影響。結(jié)果表明:PS@Au核殼復(fù)合粒子較大的比表面積是其取得優(yōu)良催化性能的物理本質(zhì),此外,粒徑對其表面微觀形貌、Au納米粒子的生長方式及其催化性能都有顯著影響。粒徑較小時,核層曲率較大,Au納米粒子呈發(fā)散式生長,表現(xiàn)出孤立的納米顆粒狀結(jié)構(gòu)。此時,比表面積和表面能最大,催化活性最高。隨著粒徑增大,曲率逐漸減小,Au納米顆粒表現(xiàn)出近似的薄膜狀結(jié)構(gòu),比表面積和表面能逐漸降低,催化性能逐漸下降。核殼復(fù)合粒子的粒徑達(dá)到400 nm時,Au納米粒子的表面形貌開始由孤立的顆粒狀結(jié)構(gòu)向連續(xù)薄膜狀過度

    Abstract:

    PS@Au core-shell composite particles with excellent catalytic performance, high sphericity and no agglomeration were controllably synthesized by a suitable electroless plating process. The diameter of PS@Au composite particles could be adjusted continuously through tuning diameter of polystyrene microspheres. The influence of diameter on catalytic performance of PS@Au composite particles was investigated by SEM, XRD, UV-Vis spectrometer, and the detection of catalytic performance. The results indicate that the high specific surface area is responsible for the improvement of degradation rate of methylene blue chromophore and the excellent catalytic performance of PS@Au core-shell composite particles. Moreover, the diameter has a significant effect on both surface morphology and growth mode of Au nanoparticles, and the catalytic performance of the composite particles. When the diameter of core-shell structure is small, the curvature of the polystyrene microspheres is huge. Au nanoparticles exhibit isolated and granular structure because the orientation distribution of Au nanoparticles is diffused. In this case, PS@Au composite particles show the superior catalytic performance due to the higher specific surface area and surface energy. On the contrary, with the diameter of core-shell structure increasing, the curvature decreases. Au nanoparticles with close orientation merge and grow up rapidly, which is a film-like material. As a result, specific surface area and surface energy are decreased as the diameter rises and their catalytic performance also declines. In this study, the microstructure of Au nanoparticles begins to change from granular structure to continuous film-like structure, when the diameter of PS@Au core-shell composite particles is up to 400 nm

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祁洪飛,劉大博,羅 飛,滕樂金,孫鳳禮. PS@Au核殼復(fù)合粒子的可控合成及粒徑對催化性能的影響[J].稀有金屬材料與工程,2015,44(4):887~891.[Qi Hongfei, Liu Dabo, Luo Fei, Teng Lejin, Sun Fengli. Controllable Synthesis of PS@Au Core-Shell Composite Particles and the Effect of Diameter on Catalytic Performance[J]. Rare Metal Materials and Engineering,2015,44(4):887~891.]
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  • 收稿日期:2014-04-22
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  • 在線發(fā)布日期: 2015-06-08
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