La(Ⅲ) , Y(Ⅲ) complexes with diglycol aldehyde bis-arginine (H2DAAR) and tetraglycol aldehyde bis-lysine (H2TALY) Schiff bases were synthesized. They were characterized and formulated as La( H2DAAR) (NO3)3 ?6H2Oand Y...La(Ⅲ) , Y(Ⅲ) complexes with diglycol aldehyde bis-arginine (H2DAAR) and tetraglycol aldehyde bis-lysine (H2TALY) Schiff bases were synthesized. They were characterized and formulated as La( H2DAAR) (NO3)3 ?6H2Oand Y (H2TALY)(NO3)3 ·5H2Oseparately by elemental analyses. The obtained complexes were investigated in detail by high resolution solid state (HRSS) 13C NMR using cross polarization, magic angle spinning (CPMAS) , and total suppression of sidebands (TOSS)techniques. The results are supported by the liquid state 2D-1 H-13 C COSY NMR spectra. Some new information about the splitting peaks of 13C for -CH=N- group and alkene carbon bands, etc. in HRSS 13C NMR spectra are given.展开更多
基金Project supported by the National Natural Science Foundation of China (Grant No. 29671026)the Natural Science Foundation of Zhejiang Province (Grant No. 296062)the Laboratory of MRAMP (Grant No. 971502)
文摘La(Ⅲ) , Y(Ⅲ) complexes with diglycol aldehyde bis-arginine (H2DAAR) and tetraglycol aldehyde bis-lysine (H2TALY) Schiff bases were synthesized. They were characterized and formulated as La( H2DAAR) (NO3)3 ?6H2Oand Y (H2TALY)(NO3)3 ·5H2Oseparately by elemental analyses. The obtained complexes were investigated in detail by high resolution solid state (HRSS) 13C NMR using cross polarization, magic angle spinning (CPMAS) , and total suppression of sidebands (TOSS)techniques. The results are supported by the liquid state 2D-1 H-13 C COSY NMR spectra. Some new information about the splitting peaks of 13C for -CH=N- group and alkene carbon bands, etc. in HRSS 13C NMR spectra are given.