Affiliation:
1. School of Materials Sciences Indian Association for the Cultivation of Sciences (IACS) Kolkata 700032 India
2. CNR NANOTEC – Institute of Nanotechnology UOS di Lecce Lecce 73100 Italy
3. Department of Mathematics and Physics “Ennio De Giorgi” University of Salento Lecce 73100 Italy
4. UdR INSTM di Lecce c/o Università del Salento Lecce 73100 Italy
Abstract
AbstractHeterostructuring colloidal nanocrystals into multicomponent modular constructs, where domains of distinct metal and semiconductor phases are interconnected through bonding interfaces, is a consolidated approach to advanced breeds of solution‐processable hybrid nanomaterials capable of expressing richly tunable and even entirely novel physical‐chemical properties and functionalities. To meet the challenges posed by the wet‐chemical synthesis of metal‐semiconductor nanoheterostructures and to overcome some intrinsic limitations of available protocols, innovative transformative routes, based on the paradigm of partial chemicalization, have recently been devised within the framework of the standard seeded‐growth scheme. These techniques involve regiospecific replacement reactions on preformed nanocrystal substrates, thus holding great synthetic potential for programmable configurational diversification. This review article illustrates achievements so far made in the elaboration of metal‐semiconductor nanoheterostructures with tailored arrangements of their component modules by means of conversion pathways that leverage on spatially controlled partial chemicalization of mono‐ and bi‐metallic seeds. The advantages and limitations of these approaches are discussed within the context of the most plausible mechanisms underlying the evolution of the nanoheterostructures in liquid media. Representative physical‐chemical properties and applications of chemicalization‐derived metal‐semiconductor nanoheterostructures are emphasized. Finally, prospects for developments in the field are outlined.
Funder
Science and Engineering Research Board
Subject
Mechanical Engineering,Mechanics of Materials,General Materials Science
Cited by
5 articles.
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