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Precursor Self‐Assembly Identified as a General Pathway for Colloidal Semiconductor Magic‐Size Clusters

Little is known about the formation pathway of colloidal semiconductor magic‐size clusters (MSCs). Here, the synthesis of the first single‐ensemble ZnSe MSCs, which exhibit a sharp optical absorption singlet peaking at 299 nm, is reported; their formation is independent of Zn and Se precursors used....

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Autores principales: Wang, Linxi, Hui, Juan, Tang, Junbin, Rowell, Nelson, Zhang, Baowei, Zhu, Tingting, Zhang, Meng, Hao, Xiaoyu, Fan, Hongsong, Zeng, Jianrong, Han, Shuo, Yu, Kui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6299716/
https://www.ncbi.nlm.nih.gov/pubmed/30581693
http://dx.doi.org/10.1002/advs.201800632
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author Wang, Linxi
Hui, Juan
Tang, Junbin
Rowell, Nelson
Zhang, Baowei
Zhu, Tingting
Zhang, Meng
Hao, Xiaoyu
Fan, Hongsong
Zeng, Jianrong
Han, Shuo
Yu, Kui
author_facet Wang, Linxi
Hui, Juan
Tang, Junbin
Rowell, Nelson
Zhang, Baowei
Zhu, Tingting
Zhang, Meng
Hao, Xiaoyu
Fan, Hongsong
Zeng, Jianrong
Han, Shuo
Yu, Kui
author_sort Wang, Linxi
collection PubMed
description Little is known about the formation pathway of colloidal semiconductor magic‐size clusters (MSCs). Here, the synthesis of the first single‐ensemble ZnSe MSCs, which exhibit a sharp optical absorption singlet peaking at 299 nm, is reported; their formation is independent of Zn and Se precursors used. It is proposed that the formation of MSCs starts with precursor self‐assembly followed by Zn and Se covalent bond formation to result in immediate precursors (IPs) which can transform into the MSCs. It is demonstrated that the IPs in cyclohexane appear transparent in optical absorption, and become visible as MSCs exhibiting one sharp optical absorption peak when a primary amine is added at room temperature. It is shown that when the preparation of the IP is controlled to be within the induction period, which occurs prior to nucleation and growth of conventional quantum dots (QDs), the resulting MSCs can be produced without the complication of the simultaneous coproduction of conventional QDs. The present study reveals the existence of precursor self‐assembly which leads to the formation of colloidal semiconductor MSCs and provides insights into a multistep nucleation process in cluster science.
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spelling pubmed-62997162018-12-21 Precursor Self‐Assembly Identified as a General Pathway for Colloidal Semiconductor Magic‐Size Clusters Wang, Linxi Hui, Juan Tang, Junbin Rowell, Nelson Zhang, Baowei Zhu, Tingting Zhang, Meng Hao, Xiaoyu Fan, Hongsong Zeng, Jianrong Han, Shuo Yu, Kui Adv Sci (Weinh) Full Papers Little is known about the formation pathway of colloidal semiconductor magic‐size clusters (MSCs). Here, the synthesis of the first single‐ensemble ZnSe MSCs, which exhibit a sharp optical absorption singlet peaking at 299 nm, is reported; their formation is independent of Zn and Se precursors used. It is proposed that the formation of MSCs starts with precursor self‐assembly followed by Zn and Se covalent bond formation to result in immediate precursors (IPs) which can transform into the MSCs. It is demonstrated that the IPs in cyclohexane appear transparent in optical absorption, and become visible as MSCs exhibiting one sharp optical absorption peak when a primary amine is added at room temperature. It is shown that when the preparation of the IP is controlled to be within the induction period, which occurs prior to nucleation and growth of conventional quantum dots (QDs), the resulting MSCs can be produced without the complication of the simultaneous coproduction of conventional QDs. The present study reveals the existence of precursor self‐assembly which leads to the formation of colloidal semiconductor MSCs and provides insights into a multistep nucleation process in cluster science. John Wiley and Sons Inc. 2018-10-23 /pmc/articles/PMC6299716/ /pubmed/30581693 http://dx.doi.org/10.1002/advs.201800632 Text en © 2018 The Authors. Published by WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheim This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Full Papers
Wang, Linxi
Hui, Juan
Tang, Junbin
Rowell, Nelson
Zhang, Baowei
Zhu, Tingting
Zhang, Meng
Hao, Xiaoyu
Fan, Hongsong
Zeng, Jianrong
Han, Shuo
Yu, Kui
Precursor Self‐Assembly Identified as a General Pathway for Colloidal Semiconductor Magic‐Size Clusters
title Precursor Self‐Assembly Identified as a General Pathway for Colloidal Semiconductor Magic‐Size Clusters
title_full Precursor Self‐Assembly Identified as a General Pathway for Colloidal Semiconductor Magic‐Size Clusters
title_fullStr Precursor Self‐Assembly Identified as a General Pathway for Colloidal Semiconductor Magic‐Size Clusters
title_full_unstemmed Precursor Self‐Assembly Identified as a General Pathway for Colloidal Semiconductor Magic‐Size Clusters
title_short Precursor Self‐Assembly Identified as a General Pathway for Colloidal Semiconductor Magic‐Size Clusters
title_sort precursor self‐assembly identified as a general pathway for colloidal semiconductor magic‐size clusters
topic Full Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6299716/
https://www.ncbi.nlm.nih.gov/pubmed/30581693
http://dx.doi.org/10.1002/advs.201800632
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