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Frontiers of Chemical Science and Engineering

ISSN 2095-0179

ISSN 2095-0187(Online)

CN 11-5981/TQ

Postal Subscription Code 80-969

2018 Impact Factor: 2.809

Front Chem Eng Chin    2009, Vol. 3 Issue (2) : 219-221    https://doi.org/10.1007/s11705-009-0058-z
RESEARCH ARTICLE
Study on a green synthesis of μ-oxo-bis[tetraarylphenylporphyrinatoiron]
Aixin WANG, Yuanbin SHE(), Jing FAN
Institute of Green Chemistry and Fine Chemicals, Beijing University of Technology, Beijing 100124, China
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Abstract

A novel method for the synthesis of μ-oxo-bis[tetraarylporphyrinatoiron] ([TRPPFe]2O) based on the reaction between tetraarylporphyrinironchloride (TRPPFeCl) and H2O in toluene was investigated in this paper. Three kinds of [TRPPFe]2O were synthesized by this novel synthetic method, and their structures were characterized by elemental analysis, IR spectra and UV-Vis spectroscopy.

Keywords μ-oxo-bis[tetraarylphenylporphinatoiron]      green synthesis      water     
Corresponding Author(s): SHE Yuanbin,Email:sheyb@bjut.edu.cn   
Issue Date: 05 June 2009
 Cite this article:   
Aixin WANG,Yuanbin SHE,Jing FAN. Study on a green synthesis of μ-oxo-bis[tetraarylphenylporphyrinatoiron][J]. Front Chem Eng Chin, 2009, 3(2): 219-221.
 URL:  
https://academic.hep.com.cn/fcse/EN/10.1007/s11705-009-0058-z
https://academic.hep.com.cn/fcse/EN/Y2009/V3/I2/219
Fig.1  Structures of three of [TRPPFe]O
1 R = R = H, [TPPFe]O; 2 R = CH, R = H, [T(-CH)PPFe]O; 3 R = H, R = Cl, [T(-Cl)PPFe]O
compoundsλmax benzene/nmelemental analysis[found(calcd)]/%νFe –O–Fe/cm-1
CHNO
[TPPFe]2O408, 571, 61178.24(78.11)4.09(4.14)8.03(8.28)1.19(1.18)891 876
[T(p-CH3)PPFe]2O409, 572, 61378.81(78.69)5.11(4.92)7.51(7.65)1.02(1.09)892 874
[T(o-Cl)PPFe]2O407, 56965.09(64.71)3.09(2.94)6.46(6.86)1.19(0.98)887 863
Tab.1  Data of UV-Vis spectra, elemental analysis and IR of [TRPPFe]O
Fig.2  IR spectra of TPPFeCl and [TPPFe]O
Fig.3  UV-Vis spectra of TPPFeCl and [TPPFe]O
Fig.4  
1 Poltowicz J, Tabor E, Pamin K, Haber J. Effect of substituents in the manganese μ-oxo porphyrins catalyzed oxidation of cyclooctane with molecular oxygen. Inorg Chem Commun , 2005, 8: 1125-1127
doi: 10.1016/j.inoche.2005.09.003
2 Pistorio B J, Synthesis of μ-oxo-bismetallotetraphenylporphyrin Chinese Patent Chang C J, Nocera D G A. Phototriggered molecular spring for aerobic catalytic oxidation reactions. J Am Chem Soc , 2002, 124: 7884-7885
doi: 10.1021/ja026017u
3 She Y B, Feng L S, Wang A X, Li X Y.Synthesis of μ-oxo-bismetallotetraphenylporphyrin. Chinese Patent, Chinese Patent, 200710099095.7
4 Lindsey J S, Schreiman I C, Hsu H C, Kearney P C, Marguerettaz A M. Rothemund and adler-longo reactions revisited: synthesis of tetraphenylporphyrins under equilibrium conditions. J Org Chem , 1987, 52: 827-836
doi: 10.1021/jo00381a022
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