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Centrifugal microfluidic device for the high-throughput synthesis of Pd@AuPt core-shell nanoparticles to evaluate the performance of hydrogen peroxide generation

机译:离心微流体装置,用于PD @Auk核 - 壳纳米粒子的高通量合成,评价过氧化氢生成的性能

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摘要

We propose a novel high-throughput screening platform using a centrifugal microfluidic device for producing combinatorial tri-metallic catalysts. The centrifugal device was designed to perform 60 reactions under different conditions on a single device. As a model to search for an optimal tri-metallic catalyst, we synthesized a variety of Pd@AuPt nanoparticles (NPs), in which Pd nanocubes served as a core, and Au and Pt atoms formed a shell. The centrifugal microfluidic device was etched on the top and bottom sides, in which two zigzag-shaped microchannels were patterned on the top side, and 60 reaction chambers were fabricated on the bottom side. Through the sophisticated zigzag-shaped microchannels, Pt2+ ion and Pd nanocube solutions were injected into the channel in one shot, and the centrifugal force equally and automatically divided the injected solutions into 60 aliquots during the rotation. By controlling the sophisticated channel dimensions and designing the passive valve structure, the Pt2+ ion, Pd nanocube, and Au3+ solutions were loaded into the reaction chamber in sequential order depending on the programmed rotational direction and speed. Therefore, the ratio of Au to Pt to synthesize Pd@AuPt coreshell NPs was changed from 0.028 : 1 to 12 : 1, and accordingly, the resultant 60 types of Pd@AuPt catalysts presented with different ratios of metal atom compositions. Then, we screened the catalytic activity of the Pd@AuPt NPs for generating H2O2 according to the degree of coating of Au and Pt, and the Pd@AuPt catalyst with the Au/Pt ratio at 0.5 turned out to be the most effective.
机译:我们提出了一种新型高通量筛选平台,使用离心微流体装置来生产组合三金属催化剂。将离心装置设计成在单个装置的不同条件下进行60个反应。作为搜索最佳三金属催化剂的模型,我们合成了各种Pd @消肿纳米颗粒(NPS),其中Pd纳米芯片用作芯,Au和Pt原子形成壳。将离心微流体装置蚀刻在顶部和底面上,其中在顶侧图案化了两个Z字形微通道,在底部制造了60个反应室。通过复杂的Z字形微通道,将Pt2 +离子和Pd纳米脲溶液在一次拍摄中注射到通道中,并且在旋转期间,离心力同样地自动将注入的溶液分成60个等分试样。通过控制复杂的通道尺寸和设计被动阀结构,根据编程的旋转方向和速度,按顺序向反应室加载到反应室中的PT2 +离子。因此,Au至Pt与合成Pd @AuckCoreShell NP的比率从0.028:1至12:1改变,因此,具有不同比例的金属原子组合物的结果60种类型的Pd @Ance催化剂。然后,我们根据Au和Pt的涂层筛选用于产生H 2 O 2的Pd @的催化活性,并且具有0.5的Au / Pt比的Pd @消化催化剂是最有效的。

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