Department of Chemistry, Faculty of Science and Graduate School of Science and Engineering, Ehime University, Matsuyama 790-8577, Japan.
J Phys Chem A. 2011 Aug 18;115(32):8822-31. doi: 10.1021/jp203664r. Epub 2011 Jul 28.
In an aim to create a "sharp" molecular knife, we have studied site-specific fragmentation caused by Si:2p core photoionization of bridged trihalosilyltrimethylsilyl molecules in the vapor phase. Highly site-specific bond dissociation has been found to occur around the core-ionized Si site in some of the molecules studied. The site specificity in fragmentation and the 2p binding energy difference between the two Si sites depend in similar ways on the intersite bridge and the electronegativities of the included halogen atoms. The present experimental and computational results show that for efficient "cutting" the following conditions for the two atomic sites to be separated by the knife should be satisfied. First, the sites should be located far from each other and connected by a chain of saturated bonds so that intersite electron migration can be reduced. Second, the chemical environments of the atomic sites should be as different as possible.
为了创造一种“锋利”的分子刀,我们研究了桥连三卤硅基三甲基硅基分子在气相中 Si:2p 芯光致电离引起的特定位置的碎裂。在研究的一些分子中,发现高度特定位置的键在核心离化的 Si 位置处发生解离。碎片的位置特异性和两个 Si 位置之间的 2p 结合能差以相似的方式取决于相间桥和包含卤素原子的电负性。目前的实验和计算结果表明,为了有效地“切割”,分子刀应满足以下两个原子位点分离的条件。首先,两个位点应彼此远离,并通过饱和键链连接,从而减少相间电子迁移。其次,原子位点的化学环境应尽可能不同。