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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Photocatalytic Hydrogen Production from Water by Noble-Metal-Free Molecular Catalyst Systems Containing Rose Bengal and the Cobaloximes of BF_x-Bridged Oxime Ligands
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Photocatalytic Hydrogen Production from Water by Noble-Metal-Free Molecular Catalyst Systems Containing Rose Bengal and the Cobaloximes of BF_x-Bridged Oxime Ligands

机译:含玫瑰红和BF_x桥接肟配体的钴肟的无贵金属分子催化体系从水中光催化制氢

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Hydrogen evolution was observed from the noble-metal-free catalyst systems, comprising Rose Bengal, BF_x-bridged cobaloximes, and triethylamine, in an aqueous solution under irradiation of visible light. Two types of BF_x-bridged cobaloximes-namely, the annulated cobaloximes [Co(dmgBF2)2(H2O)2] (1, dmgBF2 = (difiuoroboryl)dimethylglyoximate anion) and [Co(dpgBF2)2(H2O)2] (2, dpgBF2 = (difluoroboryl)diphenylglyoximate anion), and the clathrochelated cobaloximes [Co(dmg(BF)_(2/3))3](BF4) (3) and [Co(dpg(BF)_(2/3))3](BF4) (4)-were used as catalysts. Among the four cobalt complexes, complex 1 displayed the highest hydrogen-evolving efficiency, with turnovers up to 327. Complexes 2 and 4 that bear the diphenylglyoximate ligands exhibited much lower efficiencies as compared with their analogues 1 and 3 that have the dimethylglyoximate ligands. The hydrogen-evolving efficiency of the annulated cobalt(II) complex 1 that contains two labile axial ligands is more than three times as high as that of the encapsulated cobalt(III) complex 3 that has a single macrobicyclic ligand. The different pathways for formation of the cobalt(I) species from these two types of cobaloximes are discussed on the basis of the results obtained from fluorescence and laser flash photolysis spectroscopic studies.
机译:在可见光照射下,从含玫瑰金,BF_x桥联的钴肟和三乙胺的无贵金属催化剂体系中观察到氢气的逸出。两种类型的BF_x桥联的钴肟-即环式钴肟[Co(dmgBF2)2(H2O)2](1,dmgBF2 =(difiuoroboryl)dimethylglyoximate阴离子)和[Co(dpgBF2)2(H2O)2](2, dpgBF2 =(二氟硼基)二苯基乙二肟酸根阴离子)和笼形螯合钴肟[Co(dmg(BF)_(2/3))3](BF4)(3)和[Co(dpg(BF)_(2/3)) 3](BF 4)(4)-用作催化剂。在这四种钴配合物中,配合物1表现出最高的放氢效率,周转率高达327。与具有二甲基乙二肟酸配体的类似物1和3相比,具有二苯基乙二肟酸配体的配合物2和4的效率要低得多。包含两个不稳定的轴向配体的环化钴(II)配合物1的放氢效率是具有单个大双环配体的包封的钴(III)配合物3的放氢效率的三倍以上。根据从荧光和激光闪光光解光谱研究获得的结果,讨论了从这两种类型的钴肟形成钴(I)物种的不同途径。

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