becomes more reactive. These changes in K/sub 14//K/sub 15/ demonstrate increasing selectivity for /sup 15/N in preference to /sup 14/N as reactivity increases and thus are in violation of the reactivity-selectivity principle. However, these observed changes in K/sub 14//K/sub 15/ are consistent with a very recent prediction that such ''anti-Hammond'' effects should result from changes in quantum mechanical
该论文报告说,当 CH/sub 3/X 变得更具反应性时,甲基转移到烷基取代的
吡啶的 /sup 14/N//sup 15/N 速率常数比值会降低(变得更加逆向),并且也可能随着
吡啶变得更具反应性。K/sub 14//K/sub 15/ 的这些变化表明,随着反应性的增加,对/sup 15/N 的选择性比对/sup 14/N 的选择性增加,因此违反了反应性-选择性原则。然而,这些观察到的 K/sub 14//K/sub 15/ 变化与最近的预测一致,即这种“反哈蒙德”效应应该是由过渡态中量子力学混合配置的变化引起的,并且应该支配自由能表面结构扰动的更熟悉的影响。