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纳米多孔金属有机骨架HKUST-1对H3PW12O40的封装:合成、表征、活性与稳定性

H3PW12O40 Encapsulation by Nanoporous Metal Organic Framework HKUST-1: Synthesis, Characterization, Activity and Stability.

作者信息

Rafiee Ezzat, Nobakht Narges

出版信息

Acta Chim Slov. 2016;63(2):309-16. doi: 10.17344/acsi.2016.2236.

Abstract

Hybrid composite material was obtained through encapsulation of H3PW12O40 (PW) into HKUST-1 (Cu3(BTC)2, BTC = 1,3,5-benzenetricarboxylic acid), in molar composition of 5 Cu(NO3)2 · 3H2O/2.8 BTC/0.3 PW/0.6 CTAB by adding solutions of PW and copper salts to mixture of BTC and surfactant. The catalyst was characterized by various techniques including powder X-ray diffraction (XRD), Fourier transform infrared (FT-IR), scanning electron microscopy (SEM), energy dispersive X-ray (EDX), laser particle size analyzer, Brunauer Emmett-Teller (BET). The acidity of the catalyst was measured by a potentiometric titration with n-butylamine and PW/HKUST-1 presented very strong acidic sites with Ei > 100 mV. This nano catalyst was successfully used for the synthesis of various β-keto enol ethers at 45 °C with 51-98% yield after 5-75 min. The catalyst was easily recycled and reused at least four times without significant loss of its activity (94% yield after forth run). The presence of the PW in PW/HKUST-1 and reused PW/HKUST-1 structure, eliminating any doubt about collapse of the HKUST-1 after catalytic reaction and can be followed by FT-IR, XRD and SEM techniques. Brönsted and Lewis acidity of the PW/HKUST-1 catalyst was distinguished by studying the FT-IR and determined by chemisorption of pyridine. The strength and dispersion of the protons on PW/HKUST-1 was considerably high and active surface protons became more available for reactant.

摘要

通过将H3PW12O40(PW)封装到HKUST-1(Cu3(BTC)2,BTC = 1,3,5-苯三甲酸)中制备杂化复合材料,通过将PW溶液和铜盐溶液加入到BTC和表面活性剂的混合物中,摩尔组成为5 Cu(NO3)2·3H2O/2.8 BTC/0.3 PW/0.6 CTAB。采用粉末X射线衍射(XRD)、傅里叶变换红外光谱(FT-IR)、扫描电子显微镜(SEM)、能量色散X射线光谱(EDX)、激光粒度分析仪、布鲁诺尔-埃米特-泰勒(BET)等多种技术对催化剂进行了表征。通过用正丁胺进行电位滴定来测量催化剂的酸度,PW/HKUST-1呈现出Ei > 100 mV的非常强的酸性位点。该纳米催化剂在45℃下成功用于合成各种β-酮烯醇醚,5 - 75分钟后产率为51 - 98%。该催化剂易于回收再利用,至少可重复使用四次,且活性无明显损失(第四次运行后产率为94%)。PW/HKUST-1和再利用的PW/HKUST-1结构中PW的存在,消除了对催化反应后HKUST-1结构坍塌的任何疑问,并且可以通过FT-IR、XRD和SEM技术进行跟踪。通过研究FT-IR区分了PW/HKUST-1催化剂的布朗斯特和路易斯酸度,并通过吡啶的化学吸附来确定。PW/HKUST-1上质子的强度和分散性相当高,活性表面质子对反应物更易获得。

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