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Perspective: Aerosol microphysics: From molecules to the chemical physics of aerosols

机译:透视:气溶胶微物质:从分子到气溶胶的化学物理学

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Aerosols are found in a wide diversity of contexts and applications, including the atmosphere, pharmaceutics, and industry. Aerosols are dispersions of particles in a gas, and the coupling of the two phases results in highly dynamic systems where chemical and physical properties like size, composition, phase, and refractive index change rapidly in response to environmental perturbations. Aerosol particles span a wide range of sizes from 1 nm to tens of micrometres or from small molecular clusters that may more closely resemble gas phase molecules to large particles that can have similar qualities to bulk materials. However, even large particles with finite volumes exhibit distinct properties from the bulk condensed phase, due in part to their higher surface-to-volume ratio and their ability to easily access supersaturated solute states inaccessible in the bulk. Aerosols represent a major challenge for study because of the facile coupling between the particle and gas, the small amounts of sample available for analysis, and the sheer breadth of operative processes. Time scales of aerosol processes can be as short as nanoseconds or as long as years. Despite their very different impacts and applications, fundamental chemical physics processes serve as a common theme that underpins our understanding of aerosols. This perspective article discusses challenges in the study of aerosols and highlights recent chemical physics advancements that have enabled improved understanding of these complex systems. (c) 2017 Author(s).
机译:在包括大气,药物和工业的广泛上下文和应用中发现了气溶胶。气溶胶是气体中颗粒的分散,并且两种阶段的偶联导致高度动态的系统,其中化学和物理性质如尺寸,组成,相和折射率迅速变化,响应于环境扰动。气溶胶颗粒跨越宽范围的尺寸从1nm到几十微米或从小分子簇,其可能更紧密地类似于气相分子到可以具有与散装材料类似品质的大颗粒。然而,甚至具有有限体积的大颗粒表现出来自体积浓缩相的明显性质,部分原因是其较高的表面对体积比和它们在体积难以接近的超饱和溶质状态的能力。由于颗粒和气体之间的耦合,可用于分析的少量样品以及可操作过程的庞大宽度,气溶胶代表了研究的主要挑战。气溶胶过程的时间尺度可以短至纳秒或多年。尽管影响较为不同的影响和应用,但基本的化学物理过程担任符合我们对气溶胶的理解的共同主题。这个透视文章讨论了气溶胶研究中的挑战,并突出了最近的化学物理进步,这使得能够改善对这些复杂系统的理解。 (c)2017年作者。

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