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尺寸选择的金和钽纳米团簇在电子束辐照下的聚结行为:对纳米焊接机制的见解。

Coalescence behavior of size-selected gold and tantalum nanoclusters under electron beam irradiation: insights into nano-welding mechanisms.

作者信息

Hu Shengyong, Shah Syed Adil, Shah Syed Niaz Ali, Zhao Zixiang, Zhu Wuwen, Zhang Yongxin, Lu Siqi, Tang Sichen, Hu Kuo-Juei, Song Fengqi

机构信息

National Laboratory of Solid State Microstructures, Collaborative Innovation Center of Advanced Microstructures, School of Physics, Nanjing University Nanjing 210093 China

Institute of Atom Manufacturing, Nanjing University Suzhou Campus Nanjing 215163 People's Republic of China.

出版信息

Nanoscale Adv. 2024 Jul 8;6(16):4237-4246. doi: 10.1039/d4na00373j. eCollection 2024 Aug 6.

Abstract

The emerging technique of nano-welding (NW) precisely regulating the fusion of nanoclusters (NCs) in nanotechnology has attracted significant attention for its innovative approach. Employing the gas-phase condensation cluster source with a lateral time-of-flight (TOF) mass-selector, size-selected gold (Au), and tantalum (Ta) NCs were prepared. This study explores the coalescence behavior of size-selected Au and Ta NCs under electron beam irradiation, aiming to investigate the related mechanism governing the welding process. Intrinsically driven by the reduction of excess surface energy, electron beam induces atomic thermal migration, fostering sintering neck growth at cluster interfaces. During this process, atomic diffusion and recrystallization enable NCs to alter shape while retaining stable facet planes. Aberration-corrected scanning transmission electron microscopy (AC-STEM) showcases the formation of single or polycrystalline sintered clusters, during which some lattice distortions can be eliminated. Interestingly, oxidized Ta clusters experience knock-on damage caused by elastic scattering of electron beams, partially deoxidizing them. Additionally, electron-phonon inelastic scattering transforms oxidized Ta clusters from amorphous to crystalline structures. Moreover, the quantum size effect and surface effect of NCs facilitate the surpassing of miscibility limits during Au-Ta heterogeneous welding processes. This investigation bridges the gap between fundamental research on cluster materials and their practical applications.

摘要

纳米焊接(NW)这一新兴技术能够精确调控纳米技术中纳米团簇(NCs)的融合,因其创新方法而备受关注。利用带有横向飞行时间(TOF)质量选择器的气相凝聚团簇源,制备了尺寸选择的金(Au)和钽(Ta)纳米团簇。本研究探讨了尺寸选择的Au和Ta纳米团簇在电子束辐照下的聚结行为,旨在研究控制焊接过程的相关机制。电子束内在地由过剩表面能的降低驱动,诱导原子热迁移,促进团簇界面处烧结颈的生长。在此过程中,原子扩散和再结晶使纳米团簇能够改变形状,同时保持稳定的晶面。像差校正扫描透射电子显微镜(AC-STEM)展示了单晶体或多晶体烧结团簇的形成,在此过程中一些晶格畸变可以被消除。有趣的是,氧化的Ta团簇会因电子束的弹性散射而受到碰撞损伤,使其部分脱氧。此外,电子-声子非弹性散射将氧化的Ta团簇从非晶结构转变为晶体结构。而且,纳米团簇的量子尺寸效应和表面效应有助于在Au-Ta异质焊接过程中超越互溶极限。这项研究填补了团簇材料基础研究与其实际应用之间的空白。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee30/11304083/8bcd4764526f/d4na00373j-f1.jpg

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