Room-temperature formation of CdS magic-size clusters in aqueous solutions assisted by primary amines

被引:0
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作者
Wushuang Wan
Meng Zhang
Min Zhao
Nelson Rowell
Chunchun Zhang
Shanling Wang
Theo Kreouzis
Hongsong Fan
Wen Huang
Kui Yu
机构
[1] Sichuan University,School of Chemical Engineering
[2] Sichuan University,Institute of Atomic and Molecular Physics
[3] National Research Council of Canada,Metrology Research Centre
[4] Sichuan University,Analytical & Testing Center
[5] Queen Mary University of London,School of Physics and Astronomy
[6] Sichuan University,Engineering Research Center in Biomaterials
[7] West China Hospital,Laboratory of Ethnopharmacology, West China School of Medicine
[8] Sichuan University,State Key Laboratory of Polymer Materials Engineering
[9] Sichuan University,undefined
来源
Nature Communications | / 11卷
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摘要
Aqueous-phase approaches to semiconductor CdS magic-size clusters (MSCs) and the formation pathway have remained relatively unexplored. Here, we report the demonstration of an aqueous-phase, room-temperature approach to CdS MSCs, together with an exploration of their evolution pathway. The resulting CdS MSCs display a sharp optical absorption peak at about 360 nm and are labeled MSC-360. With CdCl2 and thiourea as the respective Cd and S sources, and 3-mercarpotopropionic acid as the ligand, CdS MSC-360 develops in a mixture of a primary amine and water. We argue that the primary amine facilitates room-temperature decomposition of thiourea when CdCl2 is present, and the formation pathway of MSCs is similar to that in organic-phase approaches. Our findings show there is a viable avenue to room-temperature aqueous-phase formation of CdS MSCs. Providing explanations of the procedure developed including the formation of large aggregates, the present study represents an important advance towards a mechanistic understanding of nanocrystal synthesis.
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