Recent advancements in metal–organic frameworks integrating quantum dots (QDs@MOF) and their potential applications

Author:

Giri Lopamudra1,Rout Smruti Rekha1,Varma Rajender S.2,Otyepka Michal23,Jayaramulu Kolleboyina24,Dandela Rambabu1

Affiliation:

1. Department of Industrial and Engineering Chemistry, Institute of Chemical Technology-Indian Oil Bhubaneswar Campus , Bhubaneswar , India

2. Regional Centre of Advanced Technologies and Materials, Czech Advanced Technology and Research Institute (CATRIN), Palacký University Olomouc , Šlechtitelů 27 , 783 71 Olomouc , Czech Republic

3. IT4Innovations, VSB – Technical University of Ostrava , 17. Listopadu 2172/15 , 708 00 Ostrava-Poruba , Czech Republic

4. Department of Chemistry, Indian Institute of Technology Jammu , Jammu & Kashmir , 181221 , India

Abstract

Abstract Design and development of new materials and their hybrids are key to addressing current energy issues. Thanks to their tunable textural and physiochemical properties, metal–organic frameworks (MOFs) show great potential toward gas sorption, catalysis, sensing, and electrochemical energy applications. Nevertheless, practical applications of MOFs have been hampered because of their limited electrical conductivity, micropore size, and poor stability. However, smart integration of zero-dimensional quantum dots (QDs) into an MOF template, where the host structure offers suitable interactions for enhancing the stability and synergic properties, may be a solution. The objective of this review is to summarize recent advances in the field of QD@MOFs, highlighting fresh approaches to synthesis strategies and progress made in their application to optoelectronic devices, sensing, biomedical, catalysis, and energy storage. The current challenges and future directions of QDs@MOFs hybrids toward advancing energy and environmental applications are also addressed. We anticipate that this review will inspire researchers to develop novel MOF hybrids for energy, optoelectronics, and biomedical applications.

Publisher

Walter de Gruyter GmbH

Subject

Surfaces, Coatings and Films,Process Chemistry and Technology,Energy Engineering and Power Technology,Biomaterials,Medicine (miscellaneous),Biotechnology

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