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Non-Hydrothermal Synthesis of Cu(I)-Microleaves from Cu (II)-Nanorods

机译:Cu(i) - 微生物的非热热合成(II) - 纳米棒

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Simultaneous transformation of structural morphology, material dimension and oxidation state of Cu (II)-nanorod was achieved with 3-(Triethoxysilyl)propylamine, (APTS) and 4-nitrobenzalde- hyde (4-NB) under non-hydrothermal condition. Morphology of the modified Cu(I) material was found to resemble with the leaf of colocasea. Conversion of a Cu(II) based nono-material to a Cu(I)-based micro-material was confirmed from EPR, MAS- NMR and cyclic voltametric (CV) study. BET-surface area, Raman signal intensity and thermal stability of the Cu(I)-microleaf was greatly enhanced due to presence of Cu-OSi linkage. Both the Cu(II) and Cu(I) material were found to be effective catalyst systems for nitro-aldol reaction as well as catalytic oxidation of methylene blue (MB) dye in presence of H2O2. High %yield (> 90%) of nitro-aldol product was obtained with both the catalyst. Catalytic reaction under microwave irradiation was found to bring substantial decrease in reaction time. Cu (II)- material was however not recyclable because of its soft nature. While the Cu(I)-microleaf was recycled upto four consecutive cycles. These materials were found to degrade methylene blue dye within 20 min in presence of H2O2 but in absence of light. Dark phase catalytic oxidation of MB was monitored both via UV-vis and cyclic voltametric study.
机译:在非hydrothermal条件下,使用3-(三乙基)丙酰胺,(APTS)和4-硝基苯甲酰苯胺(APTS)和4-硝基苯甲酰苯胺(APTS)和4-硝基苯甲酰苯胺(APTS)和4-硝基苯甲胺(APTS)和4-硝基苯胺的结构形态,材料尺寸和氧化态。发现修饰的Cu(I)材料的形态与Colocasea的叶片相似。 EPR,Mas-NMR和循环伏安法(CV)研究证实了基于Cu(II)的非材料(I)的Cu(I)的微材料的转化。由于存在Cu-Osi链接,Cu(I) - 微膜的BET面积,拉曼信号强度和热稳定性大大增强。发现在H2O2存在下,Cu(II)和Cu(I)材料都是用于硝基醛醇反应的有效催化剂系统,以及甲基蓝(MB)染料的催化氧化。用两种催化剂获得了硝基醛醇产物的高收率(> 90%)。发现在微波辐照下的催化反应可在反应时间大幅下降。 Cu(ii) - 然而,由于其柔软的性质,材料不可回收。而Cu(i) - 微膜则连续四个循环回收。在H2O2存在的20分钟内,发现这些材料在20分钟内降解亚甲基蓝染料,但在没有光的情况下。通过UV-VIS和环状伏安学研究监测MB的暗相催化氧化。

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