Sørensen Søren S, Ren Xiangting, Du Tao, Traverson Ayoub, Xi Shibo, Jensen Lars R, Bauchy Mathieu, Horike Satoshi, Wang John, Smedskjaer Morten M
Department of Chemistry and Bioscience, Aalborg University, Aalborg, 9220, Denmark.
Chemistry DER, University Paris-Saclay, ENS Paris-Saclay, Gif-Sur-Yvette, 91190, France.
Small. 2023 Apr;19(14):e2205988. doi: 10.1002/smll.202205988. Epub 2023 Jan 26.
Chemical diversification of hybrid organic-inorganic glasses remains limited, especially compared to traditional oxide glasses, for which property tuning is possible through addition of weakly bonded modifier cations. In this work, it is shown that water can depolymerize polyhedra with labile metal-ligand bonds in a cobalt-based coordination network, yielding a series of nonstoichiometric glasses. Calorimetric, spectroscopic, and simulation studies demonstrate that the added water molecules promote the breakage of network bonds and coordination number changes, leading to lower melting and glass transition temperatures. These structural changes modify the physical and chemical properties of the melt-quenched glass, with strong parallels to the "modifier" concept in oxides. It is shown that this approach also applies to other transition metal-based coordination networks, and it will thus enable diversification of hybrid glass chemistry, including nonstoichiometric glass compositions, tuning of properties, and a significant rise in the number of glass-forming hybrid systems by allowing them to melt before thermal decomposition.
与传统氧化物玻璃相比,有机-无机杂化玻璃的化学多样性仍然有限,对于传统氧化物玻璃而言,通过添加弱键合改性阳离子可以调节其性能。在这项工作中,研究表明水可以使钴基配位网络中具有不稳定金属-配体键的多面体解聚,从而产生一系列非化学计量的玻璃。量热、光谱和模拟研究表明,添加的水分子促进了网络键的断裂和配位数的变化,导致熔点和玻璃化转变温度降低。这些结构变化改变了熔体淬火玻璃的物理和化学性质,与氧化物中的“改性剂”概念有很强的相似性。研究表明,这种方法也适用于其他基于过渡金属的配位网络,因此将能够实现杂化玻璃化学的多样化,包括非化学计量玻璃组成、性能调节,以及通过使玻璃形成杂化体系在热分解前熔化而显著增加可形成玻璃的杂化体系的数量。