材料科学
八面体
算法
结晶学
计算机科学
晶体结构
化学
作者
Zhimao Yang,Shaodong Sun,Chuncai Kong,Xiaoping Song,Bingjun Ding
摘要
A facile template-free controlled synthesis of Cu 2 O architectures from octahedral to its different truncated forms is successfully achieved. It is found that the precursor formation temperature is crucial to the designated-tailoring on the {100} facets of Cu 2 O crystals, which can modify the ratio (R) between the growth rates along the〈100〉and〈111〉directions, leading to the formation of the initial structures with different shapes. The multiple morphologies can be evolved from these varied initial structures via the synergic effect of oriented attachment and ripening mechanism. This template-free complex precursor-based solution route has provided an innovative approach to design the {100} facets with different sizes to further enrich the current morphologies of Cu 2 O crystals.
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