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Particle nucleation and growth in dusty plasmas: On the importance of charged-neutral interactions

机译:粉尘等离子体中的颗粒成核和生长:关于带电中性相互作用的重要性

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摘要

Particle nucleation and growth in gases involves nucleation via growth of small molecular or ionic clusters, growth by vapor deposition on nanoparticle surfaces, and coagulation due to collisions between nanoparticles. Under typical conditions that apply in low-pressure nonthermal plasmas, all three of these phenomena are dominated by interactions between negatively charged bodies (anion clusters or nanoparticles) and neutral ones (molecules or nanoparticles), with collision rates enhanced by the dipole or image potential induced in the neutral collision partner. The current understanding of these phenomena is reviewed, with a focus on silane-containing plasmas in which silicon nanoparticles nucleate and grow.
机译:颗粒成核和气体的生长涉及通过小分子或离子簇的生长,通过气相沉积在纳米颗粒表面上生长,并且由于纳米颗粒之间的碰撞而凝结。 在适用于低压非热血浆的典型条件下,所有三种现象都是通过带负电荷体(阴离子簇或纳米颗粒)和中性物质(分子或纳米颗粒)之间的相互作用的主导,偶极子或图像电位增强的碰撞率 在中性碰撞伙伴中诱发。 综述了目前对这些现象的理解,重点是含硅烷的含有硅纳米颗粒核心并生长的硅烷的等离子体。

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