首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Rhodium-calix[4]pyrrole and rhodium-tetraphenyl porphyrin: preparation, surface grafting and their catalytic application in nitro-benzene reduction
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Rhodium-calix[4]pyrrole and rhodium-tetraphenyl porphyrin: preparation, surface grafting and their catalytic application in nitro-benzene reduction

机译:铑 - 杯[4]吡咯和铑 - 四苯基卟啉:制备,表面嫁接及其在硝基 - 苯的催化应用

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Rhodium containing macromolecules calix[4]pyrrole (RhCP) and tetraphenyl porphyrin (RhTPP) were prepared and grafted on the surface of functionalised molecular sieve materials. H-1 and C-13 NMR, CHNS and mass spectral analyses were used for the structural elucidation of homogeneous organometallic complexes.H-1 NMR and CHNS analyses confirm the formation of calix[4]pyrrole (CP) and tetraphenyl porphyrin (TPP). The introduction of rhodium ions into the macromolecule is well evident from the disappearance of the H-1 NMR signal characteristic of N-H proton (7.1 ppm in CP and -2.74 ppm in TPP). Furthermore the formation of RhCP and RhTPP complexes is confirmed using CHNS and mass spectral analysis; the data are in line with theoretically calculated values. The grafting of RhCP and RhTPP on a diamino functionalised SBA-15 support was confirmed through low angle XRD, C-13 MAS-NMR and SEM-EDAX analysis. Both homogeneous and heterogeneous catalysts were utilized for nitrobenzene reduction. RhCP and RhTPP heterogenized on SBA-15-F showed complete conversion of nitrobenzene with exclusive formation of aniline as a product. The catalytic activities were retained in both the systems even after several runs.
机译:制备含有大分子晕胶[4]吡咯(RHCP)和四苯基卟啉(RHTPP)并接枝在功能化的分子筛材料表面上。 H-1和C-13 NMR,CHN和质谱分析用于均相有机金属配合物的结构阐明.H-1 NMR和CHN分析证实CALIX [4]吡咯(CP)和四苯基卟啉(TPP)的形成。从N-H质子的H-1 NMR信号特性的消失(CPP中的7.1ppm和-2.74ppm,在TPP中的7.1ppm中的7.1ppm和-2.74ppm)的消失中,将铑离子引入大分子中是看法。此外,使用CHN和质谱分析确认RHCP和RHTPP复合物的形成;数据符合理论上计算的值。通过低角度XRD,C-13MAS-NMR和SEM-EDAX分析,确认了偶极官能化SBA-15载体上的RHCP和RHTPP的接枝。均匀和非均相催化剂均用于硝基苯还原。 SBA-15-F上的RHCP和RHTPP异质化表明硝基苯完全转化为苯胺作为产物的独占形成。即使在几次运行后,催化活性也保留在系统中。

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