Baytekin Bilge, Baytekin H Tarik, Hahn Uwe, Reckien Werner, Kirchner Barbara, Schalley Christoph A
Institut für Chemie und Biochemie, Freie Universität, Takustr. 3, 14195 Berlin, Germany.
Chemistry. 2009 Jul 20;15(29):7139-49. doi: 10.1002/chem.200900403.
The mass spectrometric characterization of Fréchet-type dendrons is reported. In order to provide the charges necessary for electrospray ionization, dendrons bearing an OH group at the focal point can be deprotonated and observed in the negative ion mode. Alternatively, the corresponding bromides can be converted to quaternary ammonium ions that can easily be detected in the positive mode. If the latter ions are subjected to collision-induced dissociation experiments, a fragmentation cascade begins with the dissociation of the focal amine. The focal benzyl cation quickly decomposes in a fragmentation cascade from the focal point to the periphery until the peripheral benzyl (or naphthylmethyl) cations are formed. Five different mechanisms are discussed in detail, three of which can be excluded based on experimental evidence. The cascade fragmentation is reminiscent of self-immolative dendrimers.
报道了弗雷谢型树枝状分子的质谱表征。为了提供电喷雾电离所需的电荷,在焦点处带有羟基的树枝状分子可以去质子化并在负离子模式下观察到。或者,相应的溴化物可以转化为季铵离子,这些离子可以很容易地在正离子模式下检测到。如果将后一种离子进行碰撞诱导解离实验,碎片化级联反应从焦点胺的解离开始。焦点苄基阳离子在从焦点到外围的碎片化级联反应中迅速分解,直到形成外围苄基(或萘甲基)阳离子。详细讨论了五种不同的机制,其中三种可以根据实验证据排除。级联碎片化让人联想到自毁型树枝状大分子。