17O and 1H relaxometric and DFT study of hyperfine coupling constants in [Mn(H2O)6]2+

被引:49
作者
Esteban-Gomez, David [1 ]
Cassino, Claudio [2 ]
Botta, Mauro [2 ]
Platas-Iglesias, Carlos [1 ]
机构
[1] Univ A Coruna, Dept Quim Fundamental, La Coruna 15008, Spain
[2] Univ Piemonte Orientale Amedeo Avogadro, Dipartimento Sci & Innovaz Tecnol, I-15121 Alessandria, Italy
关键词
INITIO MOLECULAR-DYNAMICS; DENSITY-FUNCTIONAL THEORY; PROTON RELAXATION-TIMES; SPHERE WATER-MOLECULES; GAUSSIAN-BASIS SETS; AB-INITIO; MN2+ COMPLEXES; FREE-RADICALS; NMR EVIDENCE; METAL-IONS;
D O I
10.1039/c3ra45721d
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Nuclear Magnetic Relaxation Dispersion (NMRD) profiles and O-17 NMR chemical shifts and transverse relaxation rates of aqueous solutions of [Mn(H2O)(6)](2+) were recorded to determine the parameters governing the relaxivity in this complex and the O-17 and H-1 hyperfine coupling constants (HFCCs). The analysis of the NMRD and O-17 NMR data provided a water exchange rate of k(ex)(298) = 28.2 x 10(6) s(-1), and A(O)/(h) over bar and A(H)/(h) over bar hyperfine coupling constants of -34.6 and 5.4 rad s(-1), respectively. DFT calculations (TPSSh model) performed on the [Mn(H2O)(6)](2+) and [Mn(H2O)(6)](2+)center dot 12H(2)O systems were used to evaluate theoretically the O-17 and H-1 HFCCs responsible for the O-17 NMR chemical shifts and the scalar contributions to O-17 and H-1 NMR relaxation rates. The use of a mixed cluster-continuum approach with the explicit inclusion of second-sphere water molecules is critical for an accurate calculation of HFCCs of coordinated water molecules. The impact of complex dynamics on the calculated HFCCs was evaluated with the use of molecular dynamics simulations within the atom-centered density matrix propagation (ADMP) approach. These molecular dynamics simulations show that the A(iso) values are critically affected by the distance between the oxygen atom of the coordinated water molecule and the Mn-II ion, as well as by the orientation of the water molecule plane with respect to the Mn-O vector. The substantial scalar contribution to relaxivity observed for [Mn(H2O)(6)](2+) is related to a combination of a slow water exchange rate and a slow electron spin relaxation.
引用
收藏
页码:7094 / 7103
页数:10
相关论文
共 72 条
[1]   Relaxometric evaluation of novel manganese(II) complexes for application as contrast agents in magnetic resonance imaging [J].
Aime, S ;
Anelli, PL ;
Botta, M ;
Brocchetta, M ;
Canton, S ;
Fedeli, F ;
Gianolio, E ;
Terreno, E .
JOURNAL OF BIOLOGICAL INORGANIC CHEMISTRY, 2002, 7 (1-2) :58-67
[2]   Dinuclear complexes formed with the triazacyclononane derivative ENOTA4-:: High-pressure 17O NMR evidence of an associative water exchange on [MnII2(ENOTA)(H2O)2] [J].
Balogh, Edina ;
He, Zhenjie ;
Hsieh, Wenyuan ;
Liu, Shuang ;
Toth, Eva .
INORGANIC CHEMISTRY, 2007, 46 (01) :238-250
[3]   The 17O hyperfine interaction in V17O(H217O)52+ and Mn (H217O)62+ determined by high field ENDOR aided by DFT calculations [J].
Baute, D ;
Goldfarb, D .
JOURNAL OF PHYSICAL CHEMISTRY A, 2005, 109 (35) :7865-7871
[4]   DENSITY-FUNCTIONAL THERMOCHEMISTRY .3. THE ROLE OF EXACT EXCHANGE [J].
BECKE, AD .
JOURNAL OF CHEMICAL PHYSICS, 1993, 98 (07) :5648-5652
[5]   DENSITY-FUNCTIONAL EXCHANGE-ENERGY APPROXIMATION WITH CORRECT ASYMPTOTIC-BEHAVIOR [J].
BECKE, AD .
PHYSICAL REVIEW A, 1988, 38 (06) :3098-3100
[6]   WATER PROTON RELAXATION FOR SOME LANTHANIDE AQUA IONS IN SOLUTION [J].
BERTINI, I ;
CAPOZZI, F ;
LUCHINAT, C ;
NICASTRO, G ;
XIA, ZC .
JOURNAL OF PHYSICAL CHEMISTRY, 1993, 97 (24) :6351-6354
[7]  
Bertini I, 1996, COORDIN CHEM REV, V150, pR7
[8]   PROTON RELAXATION TIMES IN PARAMAGNETIC SOLUTIONS [J].
BLOEMBERGEN, N .
JOURNAL OF CHEMICAL PHYSICS, 1957, 27 (02) :572-573
[9]   PROTON RELAXATION TIMES IN PARAMAGNETIC SOLUTIONS EFFECTS OF ELECTRON SPIN RELAXATION [J].
BLOEMBERGEN, N ;
MORGAN, LO .
JOURNAL OF CHEMICAL PHYSICS, 1961, 34 (03) :842-&
[10]   The arrangement of first- and second-shell water molecules around metal ions: effects of charge and size [J].
Bock, CW ;
Markham, GD ;
Katz, AK ;
Glusker, JP .
THEORETICAL CHEMISTRY ACCOUNTS, 2006, 115 (2-3) :100-112