TY - JOUR
T1 - Different hydrogen-bonding patterns in two [Zn(ENTPP)] complexes with water or methanol as ligands
AU - Fang, Weiguang
AU - Jiang, Jiaxun
AU - Yu, Hong
AU - Yang, Wen
AU - Ren, Xiaoming
AU - Hu, Chuanjiang
PY - 2012/6/10
Y1 - 2012/6/10
N2 - We have synthesized zinc complexes of H 2ENTPP (5-(8-ethoxycarbonyl-1-naphthyl)-10,15,20-triphenyl porphyrin) as a model to study hydrogen-bonding interactions. When water or methanol is a ligand, crystals of [Zn(ENTPP)(CH 3OH)] or [Zn(ENTPP)(H 2O)]C 6H 5CH 3 were obtained. In both structures, the ligand has hydrogen-bonding interactions, but in different patterns. In [Zn(ENTPP)(CH 3OH)], the methanol oxygen and carboxylate oxygen in the naphthyl group form an intermolecular hydrogen bond. In [Zn(ENTPP)(H 2O)]·C 6H 5CH 3, there are two independent molecules A and B. In molecule B, there is an intramolecular hydrogen bond between the water oxygen and the carboxylate oxygen, while in molecule A, besides the intramolecular hydrogen bond, there is an intermolecular hydrogen bond between the water oxygen and the carboxylate oxygen. 1H NMR spectra suggest the binding of methanol or water to zinc are equilibrium processes in solution. Equilibrium constant has been determined by UV-Vis measurements, and it suggests the binding affinity of zinc to methanol has been moderately increased.
AB - We have synthesized zinc complexes of H 2ENTPP (5-(8-ethoxycarbonyl-1-naphthyl)-10,15,20-triphenyl porphyrin) as a model to study hydrogen-bonding interactions. When water or methanol is a ligand, crystals of [Zn(ENTPP)(CH 3OH)] or [Zn(ENTPP)(H 2O)]C 6H 5CH 3 were obtained. In both structures, the ligand has hydrogen-bonding interactions, but in different patterns. In [Zn(ENTPP)(CH 3OH)], the methanol oxygen and carboxylate oxygen in the naphthyl group form an intermolecular hydrogen bond. In [Zn(ENTPP)(H 2O)]·C 6H 5CH 3, there are two independent molecules A and B. In molecule B, there is an intramolecular hydrogen bond between the water oxygen and the carboxylate oxygen, while in molecule A, besides the intramolecular hydrogen bond, there is an intermolecular hydrogen bond between the water oxygen and the carboxylate oxygen. 1H NMR spectra suggest the binding of methanol or water to zinc are equilibrium processes in solution. Equilibrium constant has been determined by UV-Vis measurements, and it suggests the binding affinity of zinc to methanol has been moderately increased.
KW - Binding constant
KW - Hydrogen bond
KW - Naphthyl
KW - Porphyrin
UR - http://www.scopus.com/inward/record.url?scp=84861378924&partnerID=8YFLogxK
U2 - 10.1080/00958972.2012.686035
DO - 10.1080/00958972.2012.686035
M3 - 文章
AN - SCOPUS:84861378924
SN - 0095-8972
VL - 65
SP - 1905
EP - 1914
JO - Journal of Coordination Chemistry
JF - Journal of Coordination Chemistry
IS - 11
ER -