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A mineralogically-inspired silver-bismuth hybrid material: an efficient heterogeneous catalyst for the direct synthesis of nitriles from terminal alkynes

机译:一种矿物学 - 灵感的银 - 铋杂种材料:一种高效的异质催化剂,用于直接合成亚炔末端腈

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摘要

The synthesis and characterization of a silver-containing hybrid material is reported as a novel heterogeneous noble metal catalyst. In order to eliminate the need for traditional immobilization techniques, and to create a solid material with structurally-bound silver catalytic centers, the layered structure of a naturally occurring mineral served as the basis of the initial catalyst design. The novel material was prepared by means of the urea-mediated homogeneous precipitation of the corresponding metal nitrates, and was fully characterized by means of diverse instrumental techniques (X-ray diffractometry, Raman, IR, UV-Vis, EPR, X-ray photoelectron spectroscopies, thermal methods as well as atomic force, scanning and transmission electron microscopies). The as-prepared material exhibited outstanding activity in silver-catalyzed C=C bond activation to yield organic nitriles directly from terminal alkynes with less environmental concerns as compared to the classical synthesis methods. The effects of the reaction time, the temperature, as well as the role of various solvents, nitrogen sources and additives were carefully scrutinized in order to achieve high-yielding and selective nitrile formation. The heterogeneous nature of the reaction was verified and the solid catalyst was recycled and reused numerous times without loss of its activity or degradation of its structure, thereby offering a sustainable synthetic methodology.
机译:含银杂化材料的合成和表征被报道为新型非均质贵金属催化剂。为了消除传统固定技术的需要,并在具有结构上结合的银催化中心产生固体材料,因此天然存在的矿物的层状结构作为初始催化剂设计的基础。通过尿素介导的相应金属硝酸盐的均匀沉淀制备新型材料,并通过各种仪器技术(X射线衍射法,拉曼,IR,UV-Vis,EPR,X射线光电子)完全表征光谱法,热方法以及原子力,扫描和透射电子显微镜)。制备的材料在银催化的C = C键活化中表现出优异的活性,与经典合成方法相比,直接从亚炔炔烃直接产生有机腈。反应时间,温度以及各种溶剂,氮源和添加剂的作用的作用是小心仔细仔细仔细仔细仔细仔细仔细仔细仔细审查,以实现高产和选择性腈形成。验证了反应的非均相性质,并将固体催化剂再循环并重复使用无数次,而不会丧失其活性或其结构的降解,从而提供可持续的合成方法。

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