Please use this identifier to cite or link to this item: https://doi.org/10.1039/c3nr00464c
Title: Precursor engineering and controlled conversion for the synthesis of monodisperse thiolate-protected metal nanoclusters
Authors: Yu, Y.
Yao, Q.
Luo, Z.
Yuan, X.
Lee, J.Y. 
Xie, J. 
Issue Date: 7-Jun-2013
Source: Yu, Y., Yao, Q., Luo, Z., Yuan, X., Lee, J.Y., Xie, J. (2013-06-07). Precursor engineering and controlled conversion for the synthesis of monodisperse thiolate-protected metal nanoclusters. Nanoscale 5 (11) : 4606-4620. ScholarBank@NUS Repository. https://doi.org/10.1039/c3nr00464c
Abstract: In very recent years, thiolate-protected metal nanoclusters (or thiolated MNCs) with core sizes smaller than 2 nm have emerged as a new direction in nanoparticle research due to their discrete and size dependent electronic structures and molecular-like properties, such as HOMO-LUMO transitions in optical absorptions, quantized charging, and strong luminescence. Synthesis of monodisperse thiolated MNCs in sufficiently large quantities (up to several hundred micrograms) is necessary for establishing reliable size-property relationships and exploring potential applications. This Feature Article reviews recent progress in the development of synthetic strategies for the production of monodisperse thiolated MNCs. The preparation of monodisperse thiolated MNCs is viewed as an engineerable process where both the precursors (input) and their conversion chemistry (processing) may be rationally designed to achieve the desired outcome-monodisperse thiolated MNCs (output). Several strategies for tailoring the precursor and the conversion process are analyzed to arrive at a unifying understanding of the processes involved. © 2013 The Royal Society of Chemistry.
Source Title: Nanoscale
URI: http://scholarbank.nus.edu.sg/handle/10635/64445
ISSN: 20403364
DOI: 10.1039/c3nr00464c
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