首页> 外文期刊>Microporous and mesoporous materials: The offical journal of the International Zeolite Association >Synthesis, structural configuration and DFT molecular orbital studies of [Mn-2[benzo[b]oxazole] acetonitrile] complexes encapsulated in ZSM-5: Direct synthesis of phenol by benzene hydroxylation
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Synthesis, structural configuration and DFT molecular orbital studies of [Mn-2[benzo[b]oxazole] acetonitrile] complexes encapsulated in ZSM-5: Direct synthesis of phenol by benzene hydroxylation

机译:ZSM-5中包封的[Mn-2 [Benzo [B]氧化锆]乙腈络合物的合成,结构构型和DFT分子轨道研究:苯羟基化直接合成苯酚

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摘要

In situ synthesis of Mn-BOA [BOA = 2[benzo[b]oxitzole] acetonitrile] complexes with loadings from 7.8 to 12.3 wt% in the microporous structure of zeolite ZSM-5 (Si/Al = 38) by the zeolite synthesis method was reported. The structure and characterization of the prepared samples have been identified by elemental analyses, XRD, XPS, EPR, FT-IR, UV-vis, TGA/DTGA, mass spectroscopy and pore structure analysis by nitrogen adsorption at -196 degrees C. A monotonic increase in crystallinity up to Mn-BOA(10.3%)/Z was shown and hence must be attributed to templating effect of manganese complex. Concurrently, the surface areas and pore volumes were decreased, suggesting that the complex remained intact within the zeolite walls., The XPS analysis of Mn-BOA(9.3%)/Z and Mn-BOA(12.3%)/Z confirm that manganese exists in the, +2 oxidation state, though the latter only has a satellite feature around 646 eV which could be a result of the presence of Mn2O3. The EPR of neat complex in solution exhibited broad spectra corresponding to nearest neighbor spin-spin interactions, whereas Mn-BOA(9.1%)/Z showed well resolved metal hyperfine features as in case of the spectra in dilute frozen solutions. Theoretically bond lengths, bond angles, energies of the highest occupied (HOMO), lowest unoccupied (LUMO) molecular orbital levels, reactivity parameters and the molecular electrostatic potential (ESP) have been calculated for all samples. The catalytic activity of the synthesized samples towards benzene hydroxylation to phenol using H2O2 as a green oxidant at room temperature was evaluated. The effects of contact time, catalyst amount, and concentration of benzene and H2O2 on the conversion rate were investigated. The encapsulated complexes showed higher activities compared to that of the neat complex.
机译:通过沸石合成方法在沸石ZSM-5(Si / Al = 38)的微孔结构中,在沸石合成方法的微孔结构中,在沸石结构中的载量为7.8-12.3wt%的载体的原位合成。已经报道。通过元素分析,XRD,XPS,EPR,FT-IR,UV-Vis,TGA / DTGA,质谱和孔结构分析,通过在-196摄氏度下通过氮吸附来鉴定制备样品的结构和表征。单调显着的结晶性增加(10.3%)/ z,因此必须归因于锰复合物的模板效果。同时,表面积和孔体积减少,表明复合物在沸石壁内保持完整,XPS分析(9.3%)/ Z和MN-BOA(12.3%)/ Z确认存在在+2氧化状态下,尽管后者仅具有卫星特征,其特征约为646eV,其可能是MN2O3存在的结果。溶液中整齐的络合物EPR表现出与最近邻旋旋相互作用对应的宽光谱,而Mn-BoA(9.1%)/ Z显示出良好的溶解的金属高血清特征,如稀释溶液中的光谱的情况下。已经计算了所有样品的理论上键合长度,键合角度,最高占用(HOMO),最低的未占用(LUMO)分子轨道水平,反应性参数和分子静电势(ESP)。评价了在室温下使用H 2 O 2作为绿色氧化剂在室温下致苯酚的合成样品对苯酚的催化活性。研究了接触时间,催化剂量和苯浓度和H2O2对转化率的影响。与整齐的络合物相比,包封的复合物显示出更高的活性。

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