Symmetry dependent optical properties of zeolites: A quantum mechanical study

Author:

Muhammed Mufasila Mumthaz1,Sibai Fadi1,Chamkha Ali J.2,Mokkath Junais Habeeb3ORCID

Affiliation:

1. American International University Al Jahra Kuwait

2. Faculty of Engineering Kuwait College of Science and Technology Kuwait City Kuwait

3. Quantum Nanophotonics Simulations Lab, Department of Physics Kuwait College of Science And Technology Kuwait City Kuwait

Abstract

AbstractThe outstanding structural and chemical characteristics of zeolites (porous crystal forms of aluminosilicate oxides) are well known, but little is known about their optical properties. In this work, we examine the impact of symmetry on the optical characteristics of zeolites utilizing quantum simulations via time‐dependent density functional theory. We demonstrate that zeolites with high symmetry (cubic ACO zeolite) absorb light in the visible spectrum, whereas zeolites with low symmetry (trigonal AFY zeolite) absorb light in the UV–vis region of the electromagnetic spectrum. Additionally, we reveal the nature of optical excitations by our analysis of the electron–hole distribution using transition density matrices. The zeolites also displayed significant variations in their electronic circular dichroism spectra, suggesting symmetry‐driven modulations. This theoretical work offers crucial information about the optical properties of zeolites.

Funder

Kuwait College of Science and Technology

Publisher

Wiley

Subject

Physical and Theoretical Chemistry,Condensed Matter Physics,Atomic and Molecular Physics, and Optics

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