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Regulation of Cu Species in CuO/SiO2 and Its Structural Evolution in Ethynylation Reaction

机译:CuO / SiO2中Cu种类的调控及其在乙炔化反应中的结构演变

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摘要

A Cu-based nano-catalyst has been widely used in the ethynylation of formaldehyde; however, the effects of the presence of Cu on the reaction have not yet been reported. CuO/SiO2 catalysts with different Cu species were prepared by impregnation (IM), deposition–precipitation (DP), and ammonia evaporation (AE). The structural evolution of the Cu species in different states of the ethynylation reaction and the structure–activity relationship between the existence state of the Cu species and the catalytic properties of the ethynylation reaction were studied. The results show that the Cu species in the CuO/SiO2 (IM), prepared using the impregnation method, are in the form of bulk CuO, with large particles and no interactions with the support. The bulk CuO species are transformed into Cu+ with a low exposure surface at the beginning of the reaction, which is easily lost. Thus, this approach shows the lowest initial activity and poor cycle stability. A high dispersion of CuO and copper phyllosilicate exists in CuO/SiO2 (DP). The former makes the catalyst have the best initial activity, while the latter slows release, maintaining the stability of the catalyst. There is mainly copper phyllosilicate in CuO/SiO2 (AE), which is slowly transformed into a highly dispersed and stable Cu+ center in the in situ reaction. Although the initial activity of the catalyst is not optimal, it has the optimal service stability.
机译:铜基纳米催化剂已被广泛用于甲醛的乙炔化中。然而,尚未报道Cu的存在对反应的影响。通过浸渍(IM),沉积-沉淀(DP)和氨蒸发(AE)制备了具有不同Cu种类的CuO / SiO2催化剂。研究了不同乙炔化反应状态下Cu物种的结构演化以及Cu物种存在状态与乙炔化反应催化性能之间的构效关系。结果表明,使用浸渍法制备的CuO / SiO2(IM)中的Cu物种为块状CuO,具有较大的颗粒且与载体没有相互作用。反应开始时,大量的CuO物种转化为具有低暴露表面的Cu + ,很容易丢失。因此,这种方法显示出最低的初始活性和较差的循环稳定性。 CuO / SiO2(DP)中存在高度分散的CuO和层状硅酸铜。前者使催化剂具有最佳的初始活性,而后者使释放减慢,保持了催化剂的稳定性。 CuO / SiO2(AE)中主要存在层状硅酸铜,它在原位反应中缓慢转变为高度分散且稳定的Cu + 中心。尽管催化剂的初始活性不是最佳的,但它具有最佳的使用稳定性。

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