Coating Keplerate based host-guest material PMo12O40 @{Mo72Fe30} surface with silver iron molybdate

In a facile one pot solid–liquid interface synthesis, the green colored reduced host guest Keplerate [HxPMo12O40⊂H4MoVI72FeIII30 (CH3COO)15O254(H2O)98]·ca.60 H2O on treatment with AgNO3 plays the dual role of template as well as source for the deposition of a layer of mixed metal oxide α-AgFe(MoO4)2...

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Published in:Inorganica Chimica Acta Vol. 516; p. 120123
Main Authors: Tandekar, Kesar, Naulakha, Pragya, Supriya, Sabbani
Format: Journal Article
Language:English
Published: Amsterdam Elsevier B.V 01-02-2021
Elsevier Science Ltd
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Abstract In a facile one pot solid–liquid interface synthesis, the green colored reduced host guest Keplerate [HxPMo12O40⊂H4MoVI72FeIII30 (CH3COO)15O254(H2O)98]·ca.60 H2O on treatment with AgNO3 plays the dual role of template as well as source for the deposition of a layer of mixed metal oxide α-AgFe(MoO4)2 on its surface. The system [(PMo12O40) ⊂ {Mo72Fe30}] ⊂ AgFe(MoO4)2] hence generated is a three component system of the type [(core)shell]shell where three different forms of molybdenum cluster assemble to form a complex inorganic hybrid material. [Display omitted] •The formation of a complex metal oxide from a giant polyoxometalate compound.•The synthesis involves the reaction of a host-guest compound with silver nitrate.•Coating of α-AgFe(MoO4)2 on the surface of [(PMo12O40) ⊂ {Mo72Fe30}].•The compound has been characterized by routine analysis including microscopy. The fresh green colored reduced crystals of [HxPMo12O40 ⊂ H4MoVI72FeIII30(CH3COO)15O252(H2O)102] · xH2O (1) dissolved in aqueous AgNO3 solution, when refluxed, results in formation of yellow precipitate which on calcination at 450 °C gives crystalline α-AgFe(MoO4)2. When the dried crystals of host guest [HxPMo12O40 ⊂ H4MoVI72FeIII30(CH3COO)15O254(H2O)98] · ca.60 H2O (2) are treated with aqueous AgNO3 solution in which it is not soluble, a layer of a mixed metal oxide α-AgFe(MoO4)2 is deposited on its surface with simultaneous oxidation of 2 generating a yellow colored compound [{(PMo12O40) ⊂ (Mo72Fe30)} 0.99 ⊂ {AgFe(MoO4)2} 0.01] (3). We have proposed a new synthetic pathway for the construction of a POM based three component hybrid material following a solid–liquid interface reaction, wherein the role of the template and the source of the metal oxide layer are played by the POM Keplerate 2.
AbstractList The fresh green colored reduced crystals of [HxPMo12O40 ⊂ H4MoVI72FeIII30(CH3COO)15O252(H2O)102] · xH2O (1) dissolved in aqueous AgNO3 solution, when refluxed, results in formation of yellow precipitate which on calcination at 450 °C gives crystalline α-AgFe(MoO4)2. When the dried crystals of host guest [HxPMo12O40 ⊂ H4MoVI72FeIII30(CH3COO)15O254(H2O)98] · ca.60 H2O (2) are treated with aqueous AgNO3 solution in which it is not soluble, a layer of a mixed metal oxide α-AgFe(MoO4)2 is deposited on its surface with simultaneous oxidation of 2 generating a yellow colored compound [{(PMo12O40) ⊂ (Mo72Fe30)} 0.99 ⊂ {AgFe(MoO4)2} 0.01] (3). We have proposed a new synthetic pathway for the construction of a POM based three component hybrid material following a solid–liquid interface reaction, wherein the role of the template and the source of the metal oxide layer are played by the POM Keplerate 2.
In a facile one pot solid–liquid interface synthesis, the green colored reduced host guest Keplerate [HxPMo12O40⊂H4MoVI72FeIII30 (CH3COO)15O254(H2O)98]·ca.60 H2O on treatment with AgNO3 plays the dual role of template as well as source for the deposition of a layer of mixed metal oxide α-AgFe(MoO4)2 on its surface. The system [(PMo12O40) ⊂ {Mo72Fe30}] ⊂ AgFe(MoO4)2] hence generated is a three component system of the type [(core)shell]shell where three different forms of molybdenum cluster assemble to form a complex inorganic hybrid material. [Display omitted] •The formation of a complex metal oxide from a giant polyoxometalate compound.•The synthesis involves the reaction of a host-guest compound with silver nitrate.•Coating of α-AgFe(MoO4)2 on the surface of [(PMo12O40) ⊂ {Mo72Fe30}].•The compound has been characterized by routine analysis including microscopy. The fresh green colored reduced crystals of [HxPMo12O40 ⊂ H4MoVI72FeIII30(CH3COO)15O252(H2O)102] · xH2O (1) dissolved in aqueous AgNO3 solution, when refluxed, results in formation of yellow precipitate which on calcination at 450 °C gives crystalline α-AgFe(MoO4)2. When the dried crystals of host guest [HxPMo12O40 ⊂ H4MoVI72FeIII30(CH3COO)15O254(H2O)98] · ca.60 H2O (2) are treated with aqueous AgNO3 solution in which it is not soluble, a layer of a mixed metal oxide α-AgFe(MoO4)2 is deposited on its surface with simultaneous oxidation of 2 generating a yellow colored compound [{(PMo12O40) ⊂ (Mo72Fe30)} 0.99 ⊂ {AgFe(MoO4)2} 0.01] (3). We have proposed a new synthetic pathway for the construction of a POM based three component hybrid material following a solid–liquid interface reaction, wherein the role of the template and the source of the metal oxide layer are played by the POM Keplerate 2.
ArticleNumber 120123
Author Tandekar, Kesar
Supriya, Sabbani
Naulakha, Pragya
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  givenname: Sabbani
  surname: Supriya
  fullname: Supriya, Sabbani
  email: ssabbani@mail.jnu.ac.in
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Keywords Solid–liquid interface
α- AgFe(MoO4)2
Host-guest Keplerate
Reduced polyoxometalate
Multi-component
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Snippet In a facile one pot solid–liquid interface synthesis, the green colored reduced host guest Keplerate [HxPMo12O40⊂H4MoVI72FeIII30 (CH3COO)15O254(H2O)98]·ca.60...
The fresh green colored reduced crystals of [HxPMo12O40 ⊂ H4MoVI72FeIII30(CH3COO)15O252(H2O)102] · xH2O (1) dissolved in aqueous AgNO3 solution, when refluxed,...
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SubjectTerms Host-guest Keplerate
Host-guest materials
Interface reactions
Liquid-solid interfaces
Metal oxides
Multi-component
Oxidation
Reduced polyoxometalate
Silver nitrate
Solid–liquid interface
α- AgFe(MoO4)2
Title Coating Keplerate based host-guest material PMo12O40 @{Mo72Fe30} surface with silver iron molybdate
URI https://dx.doi.org/10.1016/j.ica.2020.120123
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