Changchun Institute of Optics,Fine Mechanics and Physics,CAS
Analogous self-assembly and crystallization: a chloride-directed orientated self-assembly of Cu nanoclusters and subsequent growth of Cu2-xS nanocrystals | |
Liu, J. L.; Y. Tian; Z. N. Wu; L. Ai; Y. Liu; J. L. Cui; W. L. Yu; H. Zhang and B. Yang | |
2017 | |
发表期刊 | Nanoscale
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卷号 | 9期号:29 |
摘要 | Self-assembly and crystallization are two common methods to control the morphologies of nanomaterials, which have many similarities. In this work, chloride is used to direct the self-assembly process of Cu nanoclusters and the subsequent growth of Cu2-xS nanocrystals. Meaningfully, chloride both promotes the transformation of Cu nanocluster self-assembled architectures from one-dimensional (1D) to 2D, and facilitates the transformation of Cu2-xS nanocrystals from nanorods to nanosheets. Such an influence is attributed to the selective adsorption of chloride ions on the specific facets of nanoclusters and nanocrystals, which alters the inter-nanocluster weak interactions during self-assembly and suppresses the activity of Cu2-xS facets during nanocrystal growth. The current results indicate that the method used to direct the morphologies of nanocrystals is extendable to control the tendency of nanocluster self-assembly. |
收录类别 | sci ; ei |
语种 | 英语 |
文献类型 | 期刊论文 |
条目标识符 | http://ir.ciomp.ac.cn/handle/181722/59075 |
专题 | 中科院长春光机所知识产出 |
推荐引用方式 GB/T 7714 | Liu, J. L.,Y. Tian,Z. N. Wu,et al. Analogous self-assembly and crystallization: a chloride-directed orientated self-assembly of Cu nanoclusters and subsequent growth of Cu2-xS nanocrystals[J]. Nanoscale,2017,9(29). |
APA | Liu, J. L..,Y. Tian.,Z. N. Wu.,L. Ai.,Y. Liu.,...&H. Zhang and B. Yang.(2017).Analogous self-assembly and crystallization: a chloride-directed orientated self-assembly of Cu nanoclusters and subsequent growth of Cu2-xS nanocrystals.Nanoscale,9(29). |
MLA | Liu, J. L.,et al."Analogous self-assembly and crystallization: a chloride-directed orientated self-assembly of Cu nanoclusters and subsequent growth of Cu2-xS nanocrystals".Nanoscale 9.29(2017). |
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