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Tuning the acidic-basic properties by Zn-substitution in Mg-Al hydrotalcites as optimal catalysts for the aldol condensation reaction

机译:通过mg-al水滑石中的Zn取代调节酸碱性,作为羟醛缩合反应的最佳催化剂

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摘要

Mg-Zn-Al hydrotalcites and derived mixed oxides with different Mg2+-to-Zn2+ ratios were prepared by co-precipitation in super-saturated conditions, followed by thermal decomposition at 500 A degrees C. The synthesized materials were evaluated as catalysts for the self-condensation of octanal in order to establish structure-to-functionality properties of the prepared materials. The presence of zinc affects the structural and textural properties of the as-synthesized hydrotalcites and derived mixed oxides, and provokes a remarkable modification on the acidic-basic properties of the materials as studied by CO2 and NH3-TPD. The presence of Zn2+ caused an increment in the concentration of surface acidic sites compared to the binary Mg-Al system. The samples characterized by a Zn/Mg ratio aecurrency sign1 showed the optimal ratio of acidic and basic sites and the best catalytic performance for the production of the alpha,beta-unsaturated aldehyde. The reconstruction of the layered materials (starting from the mixed oxides) caused an increment in the concentration of surface OH- groups, further modifying the selectivity of the reaction.
机译:通过在超饱和条件下共沉淀,然后在500 A的温度下热分解,制备Mg-Zn-Al水滑石和不同Mg2 + / Zn2 +比的衍生混合氧化物,然后将合成材料评估为自催化剂进行正辛烷的缩合反应,以建立所制备材料的结构-功能性质。锌的存在会影响合成的水滑石和衍生的混合氧化物的结构和质构性质,并通过CO2和NH3-TPD研究对材料的酸碱性质产生重大影响。与二元Mg-Al系统相比,Zn2 +的存在导致表面酸性部位浓度的增加。 Zn / Mg比出现率符号为1的样品显示出酸性和碱性位点的最佳比例,以及产生α,β-不饱和醛的最佳催化性能。层状材料的重建(从混合氧化物开始)导致表面OH-基团的浓度增加,从而进一步改变了反应的选择性。

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