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很不幸,跑完了几个 DFT (B3LYP/6-31+G(d,p) ) S1 激发态的opt + freq.
发现有小小的 negative frequency。 再跑一次成本太高。
想请教一下大家,这个可以容忍还是需要再次加精度优化? 例外那个负频率对应的IR Int 对这个判定结果有多大影响了?
参考了帖子 http://www.gaussian.com/g_whitepap/vib.htm
里面有一段 “A note about negative frequency”
“You'll find that the frequencies for the translations are almost always extremely close to zero. The frequencies for rotations are quite a bit larger. So, how ``close to zero'' is close enough? For most methods (HF, MP2, etc.), you'd like the rotational frequencies to be around 10 wavenumbers or less. For methods which use numerical integration, like DFT, the frequencies should be less than a few tens of wavenumbers, say 50 or so.”
但这个解释有点模糊,另外只提到了频率,好像对于IR Inten 之类不很在意。想请大神指点详情。谢谢。
Case 1:
Full mass-weighted force constant matrix:
Low frequencies --- -58.4689 -11.8250 -4.2095 -0.7156 0.0177 0.4100
Low frequencies --- 13.5391 45.2874 73.0230
****** 1 imaginary frequencies (negative Signs) ******
Diagonal vibrational polarizability:
108.0064220 25.8468486 43.7482070
Harmonic frequencies (cm**-1), IR intensities (KM/Mole), Raman scattering
activities (A**4/AMU), depolarization ratios for plane and unpolarized
incident light, reduced masses (AMU), force constants (mDyne/A),
and normal coordinates:
1 2 3
A A A
Frequencies -- -57.6117 45.1193 72.7695
Red. masses -- 2.0793 7.0243 5.7788
Frc consts -- 0.0041 0.0084 0.0180
IR Inten -- 0.0161 0.0340 1.6005
Case 2:
Full mass-weighted force constant matrix:
Low frequencies --- -32.8770 -12.8801 -0.5486 -0.1589 0.2635 11.0292
Low frequencies --- 17.1687 114.6092 218.6386
****** 1 imaginary frequencies (negative Signs) ******
Diagonal vibrational polarizability:
129.1962504 12.7364658 19.9316493
Harmonic frequencies (cm**-1), IR intensities (KM/Mole), Raman scattering
activities (A**4/AMU), depolarization ratios for plane and unpolarized
incident light, reduced masses (AMU), force constants (mDyne/A),
and normal coordinates:
1 2 3
A A A
Frequencies -- -32.6837 114.5989 218.6383
Red. masses -- 10.2128 4.7052 4.7434
Frc consts -- 0.0064 0.0364 0.1336
IR Inten -- 0.1134 1.0882 2.1035
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