DOI: 10.1021/acs.inorgchem.6c02864 ISSN: 0020-1669

An Oxalate- and Phosphite-Bridging Multi-HoIII-Encapsulated Tellurotungstate and Its Photochromic Performance

Yuan Xu, Tiantian Gong, Lijuan Chen, Junwei Zhao

Abstract

Photochromic functional materials have attracted increasing interest for advanced smart devices, reversible optical switching, and rewritable information storage. Herein, a multi-HoIII-encapsulated tellurotungstate [H2N(CH3)2]18Na2H2[Ho4(OX)2(HPO3)2W6O10][B-α-TeW8O31]4(NO3)2·56H2O (H2OX = H2C2O4, 1) was synthesized. Its polyanion is constructed from four tetravacant Keggin [B-α-TeW8O31]10– subunits and a HPO32–-bridged decanuclear heterometallic [Ho4(HPO3)2(OX)2W6O10]20+ cluster. Interestingly, two oxalate ligands link a pair of {Ho2(HPO3)W3O5[B-α-TeW8O31]2}8– moieties to consolidate the overall polyanion. Enlightened by the inherent photochromic feature of polyoxometalates induced by photoinduced electron transfer in organic donor environments, a flexible transparent photochromic PVA/GL/1 film was fabricated by embedding 1 into a poly(vinyl alcohol) (PVA) matrix with glycerol (GL). The resulting PVA/GL/1 film exhibits photochromic behavior upon 365 nm UV irradiation. Notably, this film achieves fast coloration within 2 s and reaches the color saturation state at 30 s. Moreover, the preprinted texts and patterns can be completely faded within 5 h at room temperature, and the erasure time can be shortened to 2 h under 50 °C. This coloration–decoloration process can be steadily repeated for over 10 cycles, manifesting superior cycle performance. Benefiting from its fast response, tunable photochromic behavior, and cyclic stability, the PVA/GL/1 film may hold great application prospects in erasable inkless printing, anticounterfeiting encryption, and information storage.

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