Growth of sillenite Bi12FeO20 single crystals: structural, thermal, optical, photocatalytic features and first principle calculations

Durga Sankar, Vavilapalli and Ambrose A, Melvin and F, Bellarmine and Ramanjaneyulu, Mannam and Srihari, Velaga and Himanshu K, Poswal and Ambesh, Dixit and MS, Rao and Shubra, Singh (2021) Growth of sillenite Bi12FeO20 single crystals: structural, thermal, optical, photocatalytic features and first principle calculations. SCIENTIFIC REPORTS, 11 (1). ISSN 2045-2322

[thumbnail of 37 RM 2021 1.pdf] Text
37 RM 2021 1.pdf
Restricted to Registered users only

Download (918kB) | Request a copy

Abstract

Ideal sillenite type Bi12FeO20 (BFO) micron sized single crystals have been successfully grown via inexpensive hydrothermal method. The refined single crystal X-ray diffraction data reveals cubic Bi12FeO20 structure with single crystal parameters. Occurrence of rare Fe4+ state is identified via X-ray photoelectron spectroscopy (XPS) and X-ray absorption spectroscopy (XAS). The lattice parameter (a) and corresponding molar volume (Vm) of Bi12FeO20 have been measured in the temperature range of 30–700 °C by the X-ray diffraction method. The thermal expansion coefficient (α) 3.93 × 10–5 K−1 was calculated from the measured values of the parameters. Electronic structure and density of states are investigated by first principle calculations. Photoelectrochemical measurements on single crystals with bandgap of 2 eV reveal significant photo response. The photoactivity of as grown crystals were further investigated by degrading organic effluents such as Methylene blue (MB) and Congo red (CR) under natural sunlight. BFO showed photodegradation efficiency about 74.23% and 32.10% for degrading MB and CR respectively. Interesting morphology and microstructure of pointed spearhead like BFO crystals provide a new insight in designing and synthesizing multifunctional single crystals.

Item Type: Article
Subjects: AC Rearch Cluster
Depositing User: Unnamed user with email techsupport@mosys.org
Date Deposited: 14 Dec 2023 05:55
Last Modified: 15 Dec 2023 11:02
URI: https://ir.vignan.ac.in/id/eprint/555

Actions (login required)

View Item
View Item