Nakagaki S, Ferreira G K B, Ucoski G M, Castro K A D F. Chemical reactions catalyzed by metalloporphyrin-based metal-organic frameworks[J]. Molecules, 2013, 18(6): 7279-7308
[2]
Campestrini S, Meunier B. Olefin epoxidation and alkane hydroxylation catalyzed by robust sulfonated manganese and iron porphyrins supported on cationic ion-exchange resins[J]. Inorganic Chemistry, 1992, 31(11): 1999-2006
[3]
Lyons J E, Ellis Jr P E. Selective low temperature hydroxylation of isobutane by molecular oxygen catalyzed by an iron perhaloporphyrin complex[J]. Catalysis Letters, 1991, 8(1): 45-51
[4]
Chen H L, Ellis Jr P E, Wijesekera T, Hagan T E, Groh S E, Lyons J E, Ridge D P. Correlation between gas-phase electron affinities, electrode potentials, and catalytic activities of halogenated metalloporphyrins[J]. Journal of the American Chemical Society, 1994, 116(3): 1086-1089
[5]
Lyons J E, Ellis P E, Myers H K. Halogenated metalloporphyrin complexes as catalysts for selective reactions of acyclic alkanes with molecular oxygen[J]. Journal of Catalysis, 1995, 155(1): 59-73
[6]
Lyaskovskyy V,Suarez AI O,Lu Hongjian. Mechanism of cobalt (Ⅱ) porphyrin-catalyzed C—H amination with organic azides: radical nature and H-atom abstraction ability of the key cobalt(Ⅲ)-nitrene intermediates[J].Journal of the American Chemical Society, 2011, 133(31): 12264-12273
[7]
Lu Hongjian,Zhang X Peter. Catalytic C—H functionalization by metalloporphyrins: recent developments and future directions[J]. Chemical Society Reviews, 2011, 40(4): 1899-1909
[8]
Liu Wei, Huang Xiongyi, Cheng M J, Nielsen R J, Goddard Ⅲ W A, Groves J T. Oxidative aliphatic C—H fluorination with fluoride ion catalyzed by a manganese porphyrin[J]. Science, 2012, 337(6100): 1322-1325
[9]
Zhou Xiantai,Tang Qinghua,Ji Hongbing. Remarkable enhancement of aerobic epoxidation reactivity for olefins catalyzed by μ-oxo-bisiron (Ⅲ) porphyrins under ambient conditions[J]. Tetrahedron Letters, 2009, 50(47): 6601-6605
[10]
Zhou Xiantai, Ji Hongbing, Yuan Qiulan. Baeyer-Villiger oxidation of ketones catalyzed by iron (Ⅲ) meso-tetraphenylporphyrin chloride in the presence of molecular oxygen[J]. Journal of Porphyrins and Phthalocyanines, 2008, 12(2): 94-100
[11]
Zhou Xiantai, Yuan Qiulan, Ji Hongbin. Highly efficient aerobic oxidation of oximes to carbonyl compounds catalyzed by metalloporphyrins in the presence of benzaldehyde[J]. Tetrahedron Letters, 2010, 51(4): 613-617
[12]
She Yuanbin(佘远斌),Wang Lanzhi(王兰芝),Song Xufeng(宋旭锋). Synthesis and QSAR of metal porphyrin biomimetic catalysts and their application in oxidation of hydrocarbons.[J] Fine Chemicals (精细化工), 2005, 22(6): 401-408
[13]
Sun Zhicheng, She Yuanbin, Zhou Xiantai. Synthesis, characterization and spectral properties of substituted tetraphenylporphyrin iron chloride complexes[J]. Molecules, 2011, 16(4): 2960-2970
[14]
She Yuabin, Wang Weijie, Li Guojun. Oxidation of p/o-hydroxybenzaldehydes catalyzed by metalloporphyrins with molecular oxygen[J]. Chinese Journal of Chemical Engineering, 2012, 20(2): 262-266 浏览
[15]
Guo Cancheng,Liu Xiaoqin, Liu Yang, Liu Qiang, Chu Mingfu, Zhang Xiaobing. Studies of simple μ-oxo-bisiron (Ⅲ) porphyrin as catalyst of cyclohexane oxidation with air in absence of cocatalysts or coreductants[J]. Journal of Molecular Catalysis A: Chemical, 2003, 192(1): 289-294
[16]
Guo Cancheng, Huang Gang, Zhang Xiaoqing, Guo Dongcai. Catalysis of chitosan-supported iron tetraphenylporphyrin for aerobic oxidation of cyclohexane in absence of reductants and solvents[J]. Applied Catalysis A: General, 2003, 247(2): 261-267
[17]
Liao Yuting(廖玉婷),Zhang Yulei(张宇蕾),Ma Siyu(马思渝). A theoretical study on the substituent effect of porphine symmetry[J]. Journal of Beijing Normal University:Natural Science(北京师范大学学报:自然科学版), 2005(6): 608-612
[18]
Fa Huanbao(法焕宝),Wang Xingqiao(王杏乔). Electrochemical properties of porphyrins and transition metalloporphyrins[J]. Journal of Jilin University:Science Edition(吉林大学学报:理学版), 2007, 45(1): 107-110
[19]
Guo Cancheng(郭灿城),Zhang Shang(张尚),Lei Yuwu(雷裕武). Study on the substituent effects of the oxidation of mono-and bisporphinatoiron(Ⅲ) with Phio[J]. Acta Chimica Sinica(化学学报), 1993, 51(9): 928-932
[20]
Yang Weijun(阳卫军),Guo Canchen(郭灿城),Mao Yanli(毛彦利). Relationship between electronical behavior of metalloporphyrins and their catalytic performance for α-pinenne oxidation[J]. Chinese Journal of Catalysis (催化学报), 2005, 26(5): 360-364
[21]
Ellis Jr P E, Lyons J E. Halogen substituent effects on the catalytic activity of iron porphyrin complexes for selective air-oxidation of alkanes in the liquid phase[J]. Catalysis Letters, 1989, 3(5/6): 389-397
[22]
Ghosh A. Substituent effects on valence ionization potentials of free base porphyrins: a local density functional study[J]. Journal of the American Chemical Society, 1995, 117(16): 4691-4699
[23]
Nifiatis F, Athas J C, Gunaratne K D, Gunararne K D D, Gurung Y, Monette K M, Shivokevich P J. Substituent effects of porphyrin on singlet oxygen generation quantum yields[J]. Open Spectroscopy Journal, 2011, 5: 1-12
[24]
Zhang Lijuan,Qi Dongdong,Zhao Luyang, Bian Yongzhong, Li Wenjun. Substituent effects on the structure-property relationship of unsymmetrical methyloxy and methoxycarbonyl phthalocyanines: DFT and TDDFT theoretical studies[J]. Journal of Molecular Graphics and Modelling, 2012, 35: 57-65
[25]
Wei Lu, She Yuanbin, Yu Yanmin, Yao Xiaoqian, Zhang Suojiang. Substituent effects on geometric and electronic properties of iron tetraphenylporphyrin: a DFT investigation[J]. Journal of Molecular Modelling, 2012, 18(6): 2483-2491
[26]
Wang Lanzhi(王兰芝), She Yuanbin(佘远斌), Zhong Rugang(钟儒刚). Relationship between structure and catalytic activity of chloro-iron tetraphenylporphyrin compounds[J]. Journal of Chemical Industry and Engineering (China) (化工学报), 2006, 57(6): 1339
[27]
Zhang Yanhui(张燕慧), She Yuanbin(佘远斌), Zhong Rugang(钟儒刚), Zhou Xiantai(周贤太), Ji Hongbing(纪红兵). Study on the correlation between molecular frontier orbital energy and catalytic activity of cobalt porphyrins[J]. Acta Chimica Sinica(化学学报), 2004, 62: 2228-2232
[28]
Yuan Ying, Ji Hongbing, Chen Yixia, Han Yong, Song Xufeng, She Yuanbin, Zhong Rugang. Oxidation of cyclohexane to adipic acid using Fe-porphyrin as a biomimetic catalyst[J]. Organic Process Research & Development, 2004, 8(3): 418-420
[29]
She Yuanbin(佘远斌), Luo Zhenhua(罗振华), Song Xufeng(宋旭锋), Duan Lili(段丽丽), Yun Yue(恽悦), Zhang Tianhui(张天慧). Novel green synthesis of o-nitrobenzaldehyde by oxidation of o-nitrotoluene with metal porphyrins as biomimetic catalysts[J]. Journal of Chemical Industry and Engineering (China) (化工学报) 2007, 58(11): 2782
[30]
Wang Mei, She Yuanbin, Zhou Xiantai, Ji Hongbing. Efficient solvent-free synthesis of chloropropene carbonate from the coupling reaction of CO2 and epichlorohydrin catalyzed by magnesium porphyrins as chlorophyll-like catalysts[J]. Chinese Journal of Chemical Engineering, 2011, 19(3): 446-451 浏览
[31]
Balanay M P, Lee S H, Yu S, Kim D H. Application of long-range-corrected density functional in metallated porphyrin analogues for dye-sensitized solar cells[J]. Notes, 2011, 32(2): 705
[32]
Asghari-Khiavi M, Safinejad F. Theoretical studies on metal porphyrin halides: geometrical parameters and nonlinear optical responses[J]. J. Molecular Modelling, 2010, 16(3): 499-503
[33]
Vogel E, Brring M, Fink J, Rosen D, Schmickler H, Lex J, Chan K W K, Wu Y D, Plattner D A, Nendel M, Houk K N. From porphyrin isomers to octapyrrolic “Figure Eight” macrocycles[J]. Angewandte Chemie International Edition in English, 1995, 34(22): 2511-2514
[34]
Becke A D. Density-functional exchange-energy approximation with correct asymptotic behavior[J]. Physics Review A, 1988, 38(6): 3098-3100
[35]
Lee C, Yang W, Parr R G. Development of the Colle-Salvetti conelation energy formula into a functional of the electron density[J]. Physics Review B, 1988, 37, 785-789
[36]
Zhao Wenbo(赵文伯), She Yuanbin(佘远斌), Wang Pan(王磐), Li Linsha(李林莎), Zhang Yanhui(张燕慧). Aerobic oxidation of 4-nitroethylbenzene to 4-nitroacetophenone catalyzed by metalloporphyrins or compounding catalytic systems[J]. Journal of Beijing University of Technology(北京工业大学学报), 2012, 38, 773-777
[37]
Mansuy D. A brief history of the contribution of metalloporphyrin models to cytochrome P450 chemistry and oxidation catalysis[J]. Comptes Rendus Chimie, 2007, 10(4): 392-413