Starke Ines, Koch Andreas, Kammer Stefan, Holdt Hans-Jürgen, Möller Heiko Michael
Chemisches Institut, Universität Potsdam, K.-Liebknechtstr. 24-25, 14476, Potsdam, Germany.
J Mass Spectrom. 2018 May;53(5):408-418. doi: 10.1002/jms.4071.
The complex formation of the following diazaperylene ligands (L) 1,12-diazaperylene 1, 1,1'-bisisoquinoline 2, 2,11-disubstituted 1,12-diazaperylenes (alkyl = methyl, ethyl, isopropyl, 3, 5, 7), 3,3'-disubstituted 1,1'-bisisoquinoline (alkyl = methyl, ethyl, isopropyl, 4, 6, 8 and with R = phenyl, 11 and with pyridine 12), and the 5,8-dimethoxy-substituted diazaperylene 9, 6,6'-dimethoxy-substituted bisisoquinoline 10 with AgBF4 was investigated. Collision-induced dissociation measurements were used to evaluate the relative stabilities of the ligands themselves and for the [1:1] complexes as well as for the homoleptic and heteroleptic silver [1:2] complexes in the gas phase. This method is very useful in rapid screening of the stabilities of new complexes in the gas phase. The influence of the spatial arrangement of the ligands and the type of substituents employed for the complexation were examined. The effect of the preorganization of the diazaperylene on the threshold activation voltages and thus of the relative binding energies of the different complexes are discussed. Density functional theory calculations were used to calculate the optimized structures of the silver complexes and compared with the stabilities of the complexes in the gas phase for the first time.
研究了以下二氮苝配体(L)的络合物形成:1,12 - 二氮苝1、1,1'-联异喹啉2、2,11 - 二取代的1,12 - 二氮苝(烷基 = 甲基、乙基、异丙基,3、5、7)、3,3'-二取代的1,1'-联异喹啉(烷基 = 甲基、乙基、异丙基,4、6、8且R = 苯基,11且R = 吡啶,12),以及5,8 - 二甲氧基取代的二氮苝9、6,6'-二甲氧基取代的联异喹啉10与AgBF₄的情况。采用碰撞诱导解离测量来评估配体本身、[1:1]络合物以及气相中同配和异配银[1:2]络合物的相对稳定性。该方法在快速筛选气相中新络合物的稳定性方面非常有用。研究了配体的空间排列以及用于络合的取代基类型的影响。讨论了二氮苝的预组织对阈值活化电压以及不同络合物相对结合能的影响。首次使用密度泛函理论计算来计算银络合物的优化结构,并与气相中络合物的稳定性进行比较。