Low temperature synthesis of iron selenide by thermolysis of organometallic precursor for photodegradation under direct sunlight

In this article, 1-(4-fluorobenzoyl)-3-(4-ferrocenyl-3-methylphenyl)selenourea (P-1) has been synthesized and characterized (FTIR, multinuclear NMR, CHNS and AAS) and used as a single source precursor for the fabrication of iron selenide (FeSe) by simple thermolysis at 200 °C in a vacuum furnace. By...

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Main Authors: Raja Azadar Hussain, Syed Hamza Safeer
Format: Article
Language:English
Published: Elsevier 2022-01-01
Series:Results in Chemistry
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2211715622002752
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author Raja Azadar Hussain
Syed Hamza Safeer
author_facet Raja Azadar Hussain
Syed Hamza Safeer
author_sort Raja Azadar Hussain
collection DOAJ
description In this article, 1-(4-fluorobenzoyl)-3-(4-ferrocenyl-3-methylphenyl)selenourea (P-1) has been synthesized and characterized (FTIR, multinuclear NMR, CHNS and AAS) and used as a single source precursor for the fabrication of iron selenide (FeSe) by simple thermolysis at 200 °C in a vacuum furnace. By using UV–visible spectroscopy, the synthesized tetragonal FeSe has been used to degrade methyl orange (MO) and methyl violet (MV) under direct sunlight.
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spelling doaj.art-9bfc4213f9bc4be69a125091fd987b1c2022-12-22T02:59:42ZengElsevierResults in Chemistry2211-71562022-01-014100556Low temperature synthesis of iron selenide by thermolysis of organometallic precursor for photodegradation under direct sunlightRaja Azadar Hussain0Syed Hamza Safeer1Department of Chemistry, Quaid-i-Azam University, Islamabad 45320, Pakistan; Corresponding author.Department of Physis, Quaid-i-Azam University, Islamabad 45320, PakistanIn this article, 1-(4-fluorobenzoyl)-3-(4-ferrocenyl-3-methylphenyl)selenourea (P-1) has been synthesized and characterized (FTIR, multinuclear NMR, CHNS and AAS) and used as a single source precursor for the fabrication of iron selenide (FeSe) by simple thermolysis at 200 °C in a vacuum furnace. By using UV–visible spectroscopy, the synthesized tetragonal FeSe has been used to degrade methyl orange (MO) and methyl violet (MV) under direct sunlight.http://www.sciencedirect.com/science/article/pii/S2211715622002752Iron selenideMethyl orangeMethyl violet
spellingShingle Raja Azadar Hussain
Syed Hamza Safeer
Low temperature synthesis of iron selenide by thermolysis of organometallic precursor for photodegradation under direct sunlight
Results in Chemistry
Iron selenide
Methyl orange
Methyl violet
title Low temperature synthesis of iron selenide by thermolysis of organometallic precursor for photodegradation under direct sunlight
title_full Low temperature synthesis of iron selenide by thermolysis of organometallic precursor for photodegradation under direct sunlight
title_fullStr Low temperature synthesis of iron selenide by thermolysis of organometallic precursor for photodegradation under direct sunlight
title_full_unstemmed Low temperature synthesis of iron selenide by thermolysis of organometallic precursor for photodegradation under direct sunlight
title_short Low temperature synthesis of iron selenide by thermolysis of organometallic precursor for photodegradation under direct sunlight
title_sort low temperature synthesis of iron selenide by thermolysis of organometallic precursor for photodegradation under direct sunlight
topic Iron selenide
Methyl orange
Methyl violet
url http://www.sciencedirect.com/science/article/pii/S2211715622002752
work_keys_str_mv AT rajaazadarhussain lowtemperaturesynthesisofironselenidebythermolysisoforganometallicprecursorforphotodegradationunderdirectsunlight
AT syedhamzasafeer lowtemperaturesynthesisofironselenidebythermolysisoforganometallicprecursorforphotodegradationunderdirectsunlight