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首页> 外文期刊>Microporous and mesoporous materials: The offical journal of the International Zeolite Association >Preparation of mesoporous palladium nanoclusters supported over hematite (alpha-Fe2O3) for selective catalytic hydrogenation of alpha,beta-unsaturated aldehydes
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Preparation of mesoporous palladium nanoclusters supported over hematite (alpha-Fe2O3) for selective catalytic hydrogenation of alpha,beta-unsaturated aldehydes

机译:支撑在赤铁矿(Alpha-Fe2O3)上的介孔钯纳米能器的制备用于α,β不饱和醛的选择性催化氢化

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摘要

Atomically precise monodisperse palladium nanoclusters protected by N-acetyl-L-cysteine (Pd-n(NALC)(m)) ligand were synthesized. Protected nanoclusters block the mesoporous pores of supports and decrease their specific surface area after loading with 1 wt % as found in our previous work. The new synthesized palladium clusters with special crystal structure did not block the mesoporous pores of iron oxide support (alpha-Fe2O3). Moreover, the pore volume and pore diameter of the support was increased by synthesizing palladium clusters with 1 wt % dopant. The doped catalyst was irradiated by microwave synthesis labstation 1 hat 80 degrees C and 500 W to gently remove of the protected N-acetyl-L-cysteine ligands and produce bare palladium clusters supported on iron oxide. The particles size of the synthesized palladium clusters was investigated by high resolution transmission electron microscope (HRTEM). The spectroscopic properties and chemical composition of Pd-n(NALC)(m) clusters were studied by UV-vis spectroscopy and thermogravimetric analysis (TGA), elemental analysis and atomic absorption spectroscopy. FTIR was used for the free ligand (NALC) and the protected palladium cluster, where the disappearance of the S-H vibrational band at 2535-2570 cm(-1) in the palladium clusters spectrum confirmed the ligand is anchored to the cluster surface through the sulfur atom. The crystallinity of the bare iron oxide and the doped palladium clusters (1%Pd-n(NALC)(m)/alpha-Fe2O3) and the microwave treated catalyst (1% Pd-n/alpha-Fe2O3) were determined by powder X-ray diffraction analysis. BET surface area, pore volume and average pore diameter were investigated via nitrogen adsorption at -196 degrees C. The catalytic properties of atomically precise palladium nanoclusters supported on iron oxide were investigated for reduction of cinnamaldehyde as example for alpha,beta-unsaturated aldehydes. The catalytic activity of synthesized catalysts increased in this order 1% Pd-n/alpha-Fe2O3 1% Pd-n(NALC)(m)/alpha-Fe2O3 Pd-n(NALC)(m). The catalytic reduction reaction in toluene was performed at temperature 20-80 degrees C. The aforementioned synthesized catalysts showed 100% chemoselectivity in the reduction of cinnamaldehyde at room temperature. (C) 2017 Published by Elsevier Inc.
机译:合成了由N-乙酰-1-半胱氨酸(Pd-N(NALC)(M))配体保护的原子精确的单分散纳米能器。受保护的纳米能器阻断介孔的孔隙孔,并在我们以前的工作中找到1wt%后减少它们的比表面积。具有特殊晶体结构的新合成的钯簇未阻断氧化铁载体的介孔孔(α-Fe2O3)。此外,通过用1wt%掺杂剂合成钯簇来增加孔的孔体积和孔径。通过微波合成Labstation 1帽80℃和500W照射掺杂的催化剂,以轻轻地除去受保护的N-乙酰基-1-半胱氨酸配体并产生负载在氧化铁上的裸钯簇。通过高分辨率透射电子显微镜(HRTEM)研究了合成钯簇的颗粒尺寸。通过UV-Vis光谱和热重分析(TGA),元素分析和原子吸收光谱研究了PD-N(NALC)(M)簇的光谱性质和化学组成。 FTIR用于自由配体(NALC)和受保护的钯簇,其中SH振动带在2535-2570cm(-1)中的钯簇光谱的消失证实了通过硫锚定到簇表面上原子。粉末X测定裸氧化铁和掺杂氧化铁簇(1%Pd-N(NALC)(NALC)(M)/α-Fe 2 O 3)和微波处理催化剂(1%PD-N /α-Fe 2 O 3)的结晶度 - 射线衍射分析。通过氮吸附在-196摄氏度下研究BET表面积,孔体积和平均孔径。研究支持在氧化铁上负载的原子上精确的钯纳米能器的催化性能,以将肉桂醛还原为α,β-不饱和醛的实施例。合成催化剂的催化活性在该命令中增加1%PD-N /α-Fe 2 O 3> 1%PD-N(NALC)(M)/ alpha-Fe2O3& pd-n(nalc)(m)。甲苯的催化还原反应在温度20-80℃下进行。上述合成催化剂在室温下减少肉桂醛的化学选择性。 (c)2017年由elsevier公司发布

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