Literature DB >> 34209392

Solid-Phase "Self-Hydrolysis" of [Zn(NH3)4MoO4@2H2O] Involving Enclathrated Water-An Easy Route to a Layered Basic Ammonium Zinc Molybdate Coordination Polymer.

Kende Attila Béres1, István E Sajó2, György Lendvay1, László Trif1, Vladimir M Petruševski3, Berta Barta-Holló4, László Korecz1, Fernanda Paiva Franguelli1,5, Krisztina László6, Imre Miklós Szilágyi5, László Kótai1,7.   

Abstract

An aerial humidity-induced solid-phase hydrolytic transformation of the [Zn(NH3)4]MoO4@2H2O (compound 1@2H2O) with the formation of [(NH4)xH(1-x)Zn(OH)(MoO4)]n (x = 0.92-0.94) coordination polymer (formally NH4Zn(OH)MoO4, compound 2) is described. Based on the isostructural relationship, the powder XRD indicates that the crystal lattice of compound 1@2H2O contains a hydrogen-bonded network of tetraamminezinc (2+) and molybdate (2-) ions, and there are cavities (O4N4(μ-H12) cube) occupied by the two water molecules, which stabilize the crystal structure. Several observations indicate that the water molecules have no fixed positions in the lattice voids; instead, the cavity provides a neighborhood similar to those in clathrates. The @ symbol in the notation is intended to emphasize that the H2O in this compound is enclathrated rather than being water of crystallization. Yet, signs of temperature-dependent dynamic interactions with the wall of the cages can be detected, and 1@2H2O easily releases its water content even on standing and yields compound 2. Surprisingly, hydrolysis products of 1 were observed even in the absence of aerial humidity, which suggests a unique solid-phase quasi-intramolecular hydrolysis. A mechanism involving successive substitution of the ammonia ligands by water molecules and ammonia release is proposed. An ESR study of the Cu-doped compound 2 (2#dotCu) showed that this complex consists of two different Cu2+(Zn2+) environments in the polymeric structure. Thermal decomposition of compounds 1 and 2 results in ZnMoO4 with similar specific surface area and morphology. The ZnMoO4 samples prepared from compounds 1 and 2 and compound 2 in itself are active photocatalysts in the degradation of Congo Red dye. IR, Raman, and UV studies on compounds 1@2H2O and 2 are discussed in detail.

Entities:  

Keywords:  ammine; hydrolysis; photocatalysis; thermal analysis; vibrational spectroscopy; zinc molybdate

Year:  2021        PMID: 34209392     DOI: 10.3390/molecules26134022

Source DB:  PubMed          Journal:  Molecules        ISSN: 1420-3049            Impact factor:   4.411


  1 in total

1.  Thermally Induced Solid-Phase Quasi-Intramolecular Redox Reactions of [Hexakis(urea-O)iron(III)] Permanganate: An Easy Reaction Route to Prepare Potential (Fe,Mn)Ox Catalysts for CO2 Hydrogenation.

Authors:  Kende Attila Béres; Zoltán Homonnay; Libor Kvitek; Zsolt Dürvanger; Martina Kubikova; Veronika Harmat; Fanni Szilágyi; Zsuzsanna Czégény; Péter Németh; Laura Bereczki; Vladimir M Petruševski; Mátyás Pápai; Attila Farkas; László Kótai
Journal:  Inorg Chem       Date:  2022-08-31       Impact factor: 5.436

  1 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.