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Dissociative protonation sites: Reactive centers in protonated molecules leading to fragmentation in mass spectrometry

机译:解离质子化位点:质子化分子中的反应中心导致质谱碎裂

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It is often found in mass spectrometry that when a molecule is protonated at the thermodynamically most favorable site, no fragmentation occurs, but a major reaction is observed when the proton migrates to a different position. For benzophenones, acetophenones, and dibenzyl ether, which are all preferentially protonated at the oxygen, deacylation or dealkylation was observed in the collision- induced dissociation of the protonated molecules. For para- monosubstituted benzophenones, electron- withdrawing substituents favor the formation of RC6H4CO+ ( R) substituent), whereas electron- releasing groups favor the competing reaction leading to C6H5CO+. The ln[(RC6H4CO+)/(C6H5CO+)] values are well- correlated with the sigma(+)(p) substituent constants. In the fragmentation of protonated acetophenones, deacetylation proceeds to give an intermediate proton- bound dimeric complex of ketene and benzene. The distribution of the product ions was found to depend on the proton affinities of ketene and substituted benzenes, and the kinetic method was applied in identifying the reaction intermediate. Protonated dibenzyl ether loses formaldehyde upon dealkylation, via an ion- neutral complex of the benzyloxymethyl cation and neutral benzene. These gas- phase retro- Friedel- Crafts reactions occurred as a result of the attack of the proton at the carbon atom to which the carbonyl or the methylene group is attached on the aromatic ring, which is described as the dissociative protonation site.
机译:在质谱中经常发现,当分子在热力学最有利的位置质子化时,不会发生断裂,但是当质子迁移到不同位置时会观察到主要反应。对于二苯甲酮,苯乙酮和二苄基醚,它们都优先在氧气上质子化,在碰撞诱导的质子化分子解离中观察到脱酰基或脱烷基。对于对单取代的二苯甲酮,吸电子取代基有利于RC6H4CO +(R)取代基的形成,而电子释放基团有利于导致C6H5CO +的竞争反应。 ln [(RC6H4CO +)/(C6H5CO +)]值与sigma(+)(p)取代基常数高度相关。在质子化的苯乙酮的断裂中,进行脱乙酰作用,得到酮和苯的中间质子结合的二聚体复合物。发现产物离子的分布取决于乙烯酮和取代的苯的质子亲和力,并采用动力学方法鉴定反应中间体。质子化的二苄基醚通过苄氧基甲基阳离子和中性苯的离子中性络合物在脱烷基后损失甲醛。这些气相逆Friedel-Crafts反应是由于质子在芳环上连接羰基或亚甲基的碳原子上的攻击而发生的,该碳原子被描述为解离质子化位点。

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