论文标题

反应女性液滴中氢微泡的生长速率

Growth Rates of Hydrogen Microbubbles in Reacting Femtoliter Droplets

论文作者

Li, Zhengxin, Zeng, Hongbo, Zhang, Xuehua

论文摘要

广泛探索了小滴中的化学反应,以加速发现新材料,提高催化双相转化的效率和特异性和高吞吐量分析。在这项工作中,我们研究了固定在固体表面上的毒剂液滴中气体进化反应的局部速率。通过高分辨率共聚焦显微镜图像在线测量了从反应产生的氢微泡(半径> 500 nm)的生长速率。在较小的液滴中,气泡的生长速率更快,在同一液滴中的三相边界附近的气泡。对于纯和二元反应液滴以及不同润湿性的底物,结果是一致的。我们基于扩散,化学反应和气泡生长在稳态中的理论分析预测,反应物与周围环境扩散的浓度取决于液滴的大小和液滴内部的气泡位置,这与实验结果非常吻合。我们的结果表明,反应速率在反应微螺旋体中可能在空间上不均匀。这些发现可能对这些液滴的化学特性和用途有影响。

Chemical reactions in small droplets are extensively explored to accelerate the discovery of new materials, increase efficiency and specificity in catalytic biphasic conversion and in high throughput analytics. In this work, we investigate the local rate of gas-evolution reaction within femtoliter droplets immobilized on a solid surface. The growth rate of hydrogen microbubbles (> 500 nm in radius) produced from the reaction was measured online by high-resolution confocal microscopic images. The growth rate of bubbles was faster in smaller droplets, and of bubbles near the three-phase boundary in the same droplet. The results were consistent for both pure and binary reacting droplets and on substrates of different wettability. Our theoretical analysis based on diffusion, chemical reaction, and bubble growth in a steady state predicted that the concentration of the reactant diffusing from the surrounding depended on the droplet size and the bubble location inside the droplet, in good agreement with experimental results. Our results reveal that the reaction rate may be spatially non-uniform in the reacting microdroplets. The findings may have implications for formulating chemical properties and uses of these droplets.

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