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首页> 外文期刊>Journal of Colloid and Interface Science >Experimental investigation into battery electrode surfaces: The distribution of liquid at the surface and the emptying of pores during drying
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Experimental investigation into battery electrode surfaces: The distribution of liquid at the surface and the emptying of pores during drying

机译:电池电极表面的实验研究:干燥过程中表面液体分布及孔隙排空

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Graphical abstract Display Omitted Abstract Hypothesis Drying constitutes a key step in the production of thin, particulate films as the complex microstructure develops and functional additives redistribute throughout the film, thus shaping the film properties. The onset of pore emptying constitutes a paramount marker in the film formation process as capillary liquid transport emerges. Experiments Film shrinkage, development of surface liquid content and liquid depletion in surface pores of thin films are studied by means of a novel experimental approach, using the example of lithium-ion battery anodes. An optical brightener is incorporated into the films, which are produced in a convective slot-nozzle dryer. After various drying times, images of the film, which emit light fluorescently during exposure to UV-A radiation, are captured and analyzed by image processing. Film shrinkage is observed by means of a laser displacement sensor. Findings As soon as the first pores empty, pore fluid is transported convectively. By exerting an external force, i.e. a pressure surge, on the film, the transition from a fully saturated to a partially emptied film is revealed. The significance of drying rate and particle shape are studied. We show that liquid depletion in surface pores can occur both prior and concurrent with the end of film shrinkage. ]]>
机译:<![cdata [ 图形摘要 显示省略 抽象 假设 干燥构成在薄的微粒膜的生产中构成一个关键步骤,因为复杂的微观结构在整个膜中发育和功能性添加剂再分布,因此成形膜性质。孔隙排空的发作构成薄膜形成过程中的最重要标记,因为毛细血管液体传输出现。 实验 查询结果 一旦第一个孔隙空,孔隙流体被定性地运输。通过施加外力,即压力浪涌,在膜上,从完全饱和至部分清空膜的过渡被揭示。研究了干燥速率和颗粒形状的重要性。我们表明表面孔中的液体耗尽可以在薄膜收缩末端之前和同时发生。 ]]>

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