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原作者当天就回复了,如下:
I'll have a look at digging out these data, but they might not be easily available as they were done when I was in Berkeley. One of the challenges in such systems is actually finding the appropriate UB3LYP state to follow - you'll need to do some stability analysis on whatever comes out with a default guess, and even that might not find the lowest state.
我用B3LYP/6-31G*(原paper中的方法)测试了一下波函数稳定性,确实原来那个带一个虚频的八面体结构的波函数不稳定。于是重新优化了波函数,在此基础上重新做了几何构型优化,优化完有用stable确认了波函数的稳定性,但这个结构依然存在一个虚频。我按照虚频振动方向变形了0.2个单位的距离,先做单点确认了波函数确实是稳定的,而且 此单能的能量已经比之前的那个驻点结构要明显低不少了。然后在此基础上进行几何构型优化,于是axial上的两个Cl-又开始跑得很远了,而且能量降低不少。
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