纳米颗粒
聚结(物理)
动力学(音乐)
材料科学
纳米技术
化学物理
统计物理学
化学
物理
天体生物学
声学
作者
Ji‐Hyun Kim,Joodeok Kim,Byung Hyo Kim,Sanggeun Song,Jingyu Kang,Jinho Rhee,Donghee Kim,Hoje Chun,Hyesung Choi,Hyungjin Cho,Yongjoon Kim,Jae Won Jung,Youngju Son,Junhyeok Jung,Kunwoo Park,Sungho Jeon,Minho Lee,Byungchan Han,Won Chul Lee,Dongjun Kim
标识
DOI:10.1073/pnas.2424950122
摘要
Colloidal nanoparticles are of great interest in modern science and industry. However, the thermodynamic mechanism and dynamics of nanoparticle growth have yet to be understood. Addressing these issues, we tracked hundreds of in-situ growth trajectories of a nanoparticle ensemble using liquid-phase TEM and found that the nanoparticle growth, including coalescence, exhibits nanoparticle size-dependent multiphasic dynamics, unexplainable by current theories. Motivated by this finding, we developed a model and theory for an ensemble of growing nanoparticles, providing a unified, quantitative understanding of the time-dependent mean and fluctuation of nanoparticle size and size-dependent growth rate profiles across various nanoparticle systems and experimental conditions. Our work reveals that the chemical potential in a small nanoparticle strongly deviates from the Gibbs–Thomson equation, shedding light on how it governs the size-dependent growth dynamics of nanoparticles.
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