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首页> 外文期刊>Nanoscale >Semi-hydrogenation of α,β-unsaturated aldehydes over sandwich-structured nanocatalysts prepared by phase transformation of thin-film Al2O3 to Al-TCPP
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Semi-hydrogenation of α,β-unsaturated aldehydes over sandwich-structured nanocatalysts prepared by phase transformation of thin-film Al2O3 to Al-TCPP

机译:薄膜Al2O3相变制Al-TCPP制备α,β不饱和醛在夹层结构纳米催化剂上的半氢化反应

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摘要

The semi-hydrogenation of α,β-unsaturated aldehydes to the desired unsaturated alcohols with both high conversion and high selectivity remains a big challenge. Herein, we designed a sandwich-structured nanocatalyst for the highly selective hydrogenation of various α,β-unsaturated aldehydes (e.g., cinnamaldehyde, furfural, crotonaldehyde, and 3-methyl-2-butenal) to the targeted unsaturated alcohols. Highly accessible platinum nanoparticles were sandwiched between a metal–organic framework (MOF) core (i.e., MIL-88B(Fe)) and a MOF shell (i.e., Al-TCPP). In particular, the growth of the Al-TCPP shell was achieved by atomic layer deposition (ALD) of thin-film Al2O3 followed by phase transformation with a tetrakis(4-carboxyphenyl)porphyrin (H4TCPP) linker. The thickness of the Al-TCPP shell can be finely controlled by adjusting the cycle number of alumina ALD and the concentration of the H4TCPP linker during the phase transformation of Al2O3 to Al-TCPP. It was proven that the permeable MOF shells could serve as selectivity regulators for the activation of the CO bonds in α,β-unsaturated aldehydes (in preference to the CC bonds), leading to higher selectivity towards unsaturated alcohols as compared to the conventional surface supported Pt catalysts. Mechanistic insights showed that the enhanced catalytic performance was attributed to (i) the modified electronic state of sandwiched Pt nanoparticles by the two MOF layers and (ii) the steric hindrance effect on substrate diffusion through the sandwich-structured catalysts.
机译:semi-hydrogenationα,β不饱和所需的不饱和醇醛高转化率和高选择性仍然是一个巨大的挑战。sandwich-structured nanocatalyst高度选择性加氢的各种α,β不饱和醛(例如,肉桂醛,糠醛、巴豆醛和3-methyl-2-butenal)有针对性的不饱和醇。铂纳米颗粒被夹在访问之间的有机框架(MOF)的核心(例如,mil - 88 b (Fe))和财政部外壳(例如,Al-TCPP)。Al-TCPP壳是通过原子层氧化铝薄膜沉积(ALD)紧随其后相变的tetrakis (4-carboxyphenyl)卟啉(H4TCPP)链接器。精确控制通过调整周期数肾上腺白质退化症患者和氧化铝的浓度H4TCPP链接器在相变氧化铝Al-TCPP。可以作为选择性渗透MOF贝壳监管机构的激活CO债券α,β不饱和醛(优先C债券),导致更高的选择性不饱和醇相比传统的表面支持工党的催化剂。机械论的观点表明,增强催化性能归因于(我)修改电子夹Pt的状态纳米粒子由两层MOF和(2)位阻影响基质扩散通过sandwich-structured催化剂。

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