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Spray-Drying to Get Spin-Crossover Materials

机译:喷雾干燥以获得自旋交联材料

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摘要

Spin-crossover (SCO) triazole-based coordination polymers can be synthesized by micelle techniques, which almost always lead to rod-shaped nanoparticles. In order to notably reach new morphologies, we explore here the potentiality of the spray-drying (SD) method to get SCO materials. Three SCO coordination polymers and a mononuclear complex are investigated. In all cases, the SD method obtains particles definitely showing SCO. The features of the latter are yet always different from those of the referenced materials, in the sense that SCO is more gradual and incomplete, in adequacy with the poor crystallinity of the powders obtained by SD. In the case of coordination polymers, the particles are preferentially spherical. Indications of possible polymorphism and/or new materials induced by the use of the SD method are evidenced. In the case of the mononuclear complex, the SD method has allowed reproducing, in a quick and easy way, the well-known bulk compound. This exploratory work demonstrates the relevance of the concept and opens the way to a systematic scrutiny of all the experimental parameters to tune the size, morphology, and properties of the SD-synthesized SCO particles.
机译:可以通过胶束技术合成基于自旋交联(SCO)三唑的配位聚合物,该技术几乎总是产生棒状纳米颗粒。为了显着达到新的形貌,我们在这里探索使用喷雾干燥(SD)方法获得SCO材料的潜力。研究了三种SCO配位聚合物和单核配合物。在所有情况下,SD方法都会获得明确显示SCO的颗粒。后者的特征始终与参考材料的特征不同,就SCO而言,其渐进性和不完全性足以满足SD获得的粉末结晶性差的要求。在配位聚合物的情况下,颗粒优选为球形。证据表明使用SD方法可能导致多态性和/或新材料。在单核络合物的情况下,SD方法可以快速简便地复制众所周知的块状化合物。这项探索性工作证明了这一概念的相关性,并为系统地审查所有实验参数以调节SD合成SCO颗粒的大小,形态和性质开辟了道路。

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