Khshanovska Olha, Ovsynskyi Vladyslav, Kryshtal Aleksandr
Faculty of Metals Engineering and Industrial Computer Science, AGH University of Krakow, 30-059 Krakow, Poland.
Nanomaterials (Basel). 2025 Jun 14;15(12):924. doi: 10.3390/nano15120924.
We investigated the morphological patterns, crystalline structures and their thermal stability in solidified Au-Ge nanoparticles ranging in size from 10 to 500 nm. Liquid Au-Ge alloy nanoparticles with hypoeutectic composition were rapidly cooled from a temperature of 500 °C in a TEM and characterized using advanced TEM techniques. We demonstrated that Au-Ge nanoparticles 10-80 nm in size predominantly solidified into a Janus-like morphology with nearly pure single-crystalline hcp Au and diamond cubic Ge domains. These particles remained stable up to the eutectic temperature, indicating that Ge doping and particle size play key roles in stabilizing the hcp Au phase. In turn, larger nanoparticles exhibited a metastable core-shell morphology with polycrystalline Ge shell and hcp Au-Ge alloy core under solidification. It was shown that the mentioned morphology and crystalline structure evolved into the equilibrium Janus morphology with fcc Au and diamond Ge domains at temperatures above ≈160 °C.
我们研究了尺寸在10至500纳米范围内的凝固金锗纳米颗粒的形态模式、晶体结构及其热稳定性。具有亚共晶成分的液态金锗合金纳米颗粒在透射电子显微镜(TEM)中从500°C快速冷却,并使用先进的TEM技术进行表征。我们证明,尺寸为10 - 80纳米的金锗纳米颗粒主要凝固成类雅努斯形态,具有近乎纯的单晶六方密排结构(hcp)金域和金刚石立方结构锗域。这些颗粒在共晶温度之前保持稳定,表明锗掺杂和颗粒尺寸在稳定hcp金相方面起着关键作用。反过来,较大的纳米颗粒在凝固时表现出亚稳态的核壳形态,具有多晶锗壳和hcp金锗合金核。结果表明,上述形态和晶体结构在约160°C以上的温度下演变成具有面心立方结构(fcc)金域和金刚石结构锗域的平衡雅努斯形态。