He Meng-Fu, Fu Hong-Quan, Su Ben-Fang, Yang Hua-Qing, Tang Jin-Qiang, Hu Chang-Wei
Key Laboratory of Green Chemistry and Technology, Ministry of Education, College of Chemistry, Sichuan University , Chengdu, Sichuan 610064, P. R. China.
J Phys Chem B. 2014 Dec 4;118(48):13890-902. doi: 10.1021/jp5060099. Epub 2014 Nov 24.
The coordination of cyclic β-D-glucose (CDG) to both Al(OH)(aq) and Al(OH)2(aq) ions has been theoretically investigated, using quantum chemical calculations at the PBE0/6-311++G(d,p), aug-cc-pvtz level under polarizable continuum model IEF-PCM, and molecular dynamics simulations. Al(OH)(aq) ion prefers to form both six- and five-coordination complexes, and Al(OH)2(aq) ion to form four-coordination complex. The two kinds of oxygen atoms (on hydroxyl and ring) of CDG can coordinate to both Al(OH)(aq) and Al(OH)2(aq) ions through single-O-ligand and double-O-ligand coordination, wherein there exists some negative charge transfer from the lone pair electron on 2p orbital of the coordinated oxygen atom to the empty 3s orbital of aluminum atom. The charge transfer from both the polarization and H-bond effects stabilizes the coordinated complex. When the CDG coordinates to both Al(OH)(H2O)4 and Al(OH)2(H2O)2 ions, the exchange of water with CDG would take place. The six-coordination complex (ηO4,O6(2)-CDG)Al(OH)(H2O)3 and the five-coordination complex (ηO4,O6(2)-CDG)Al(OH)2(H2O) are predicted to be the thermodynamically most preferable, in which the polarization effect plays a crucial role. The molecular dynamics simulations testify the exchange of water with CDG, and then support a five-coordination complex (ηO4,O6(2)-CDG)Al(OH)2(H2O) as the predominant form of the CDG coordination to Al(OH)2(aq) ion.
运用PBE0/6-311++G(d,p)、aug-cc-pvtz水平的量子化学计算方法,在极化连续介质模型IEF-PCM下,并结合分子动力学模拟,从理论上研究了环状β-D-葡萄糖(CDG)与Al(OH)(aq)和Al(OH)2(aq)离子的配位情况。Al(OH)(aq)离子倾向于形成六配位和五配位配合物,而Al(OH)2(aq)离子则倾向于形成四配位配合物。CDG的两种氧原子(羟基上的和环上的)可通过单氧配体和双氧配体配位与Al(OH)(aq)和Al(OH)2(aq)离子配位,其中存在从配位氧原子2p轨道上的孤对电子到铝原子空3s轨道的负电荷转移。极化和氢键效应引起的电荷转移使配位配合物更加稳定。当CDG与Al(OH)(H2O)4和Al(OH)2(H2O)2离子配位时,会发生水与CDG的交换。预测六配位配合物(ηO4,O6(2)-CDG)Al(OH)(H2O)3和五配位配合物(ηO4,O6(2)-CDG)Al(OH)2(H2O)是热力学上最稳定的,其中极化效应起关键作用。分子动力学模拟证实了水与CDG的交换,进而支持五配位配合物(ηO4,O6(2)-CDG)Al(OH)2(H2O)作为CDG与Al(OH)2(aq)离子配位的主要形式。