Ultrastable Luminescent Hybrid Bromide Perovskite@MOF Nanocomposites for the Degradation of Organic Pollutants in Water

Samraj Mollick(Indian Institute of Science Education and Research Pune), Tarak Nath Mandal(Indian Institute of Science Education and Research Pune), Atanu Jana(Ulsan National Institute of Science and Technology), Sahel Fajal(Indian Institute of Science Education and Research Pune), Aamod V. Desai(Indian Institute of Science Education and Research Pune), Sujit K. Ghosh(Indian Institute of Science Education and Research Pune)
ACS Applied Nano Materials
February 1, 2019
Cited by 149

Abstract

Hybrid bromide perovskites (HBPs) have emerged as a promising candidate in optoelectronic applications, although instability of the materials under working conditions has retarded the progress toward commercialization. As a rational approach to address this core issue, we herein report the synthesis of a series of ultrastable composite materials, wherein HBP nanocrystals (NCs) have been stabilized within a well-known chemically stable metal–organic framework (MOF) viz. zeolitic imidazolate framework (ZIF-8) via a pore-encapsulated solvent-directed (PSD) approach. The composites maintain their structural integrity as well as photoluminescence (PL) properties upon dipping into a wide range of polar solvents including water (even in boiling conditions), prolonged exposure to UV irradiation, and elevated temperature for longer periods of time. Further, on the basis of high stability, HBP@MOF composites have been demonstrated as heterogeneous photocatalysts to degrade toxic organic pollutants directly in water.


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