Cao An, Gong Yi, Liu Dilong, Yang Fan, Fan Yulong, Guo Yinghui, Tian Xingyou, Li Yue
Key Lab of Materials Physics, Anhui Key Lab of Nanomaterials and Nanotechnology, Institute of Solid State Physics, HFIPS, Chinese Academy of Sciences, Hefei, PR China.
China-Europe Electronic Materials International Innovation Center, Hefei, PR China.
Nat Commun. 2024 Oct 24;15(1):9182. doi: 10.1038/s41467-024-53407-x.
Smooth metal microspheres with uniform sizes are ideal for constructing particle-arrayed anisotropic conductive films (ACF), but synthesis is hindered by challenges in controlling anisotropic metal growth. Here, we present a positioned transient-emulsion self-assembly and laser-irradiation strategy to fabricate pure gold microsphere arrays with smooth surfaces and uniform sizes. The fabrication involves assembling gold nanoparticles into uniform colloidosomes within a pre-designed microhole array, followed by rapid transformation into well-defined microspheres through laser heating. The gold nanoparticles melt and merge in a layer-by-layer manner due to the finite skin depth of the laser, leading to a localized photothermal effect. This strategy circumvents anisotropic growth, enables tunable control of microsphere size and positioning, and is compatible with conventional lithography. Importantly, these pure gold microspheres exhibit stable conductivity under deep compression, offering promising applications in soldering micro-sized chips onto integrated circuits.
尺寸均匀的光滑金属微球是构建粒子阵列各向异性导电膜(ACF)的理想材料,但由于在控制各向异性金属生长方面存在挑战,其合成受到阻碍。在此,我们提出一种定位瞬态乳液自组装和激光辐照策略,以制备具有光滑表面和均匀尺寸的纯金微球阵列。该制备过程包括将金纳米粒子组装到预先设计的微孔阵列内形成均匀的胶体囊泡,随后通过激光加热快速转变为轮廓清晰的微球。由于激光的有限趋肤深度,金纳米粒子逐层熔化并合并,从而产生局部光热效应。这种策略避免了各向异性生长,实现了对微球尺寸和定位的可调控制,并且与传统光刻技术兼容。重要的是,这些纯金微球在深度压缩下表现出稳定的导电性,在将微型芯片焊接到集成电路上具有广阔的应用前景。