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本帖最后由 catenarygong 于 2017-1-16 09:30 编辑
最近在做一个可能有S2发射的体系,在优化S2态的时候,经常会出现优化着优化着,S3态的能量比S2态更低了,或者S2态比S1态能量更低了的情况
这样实际优化的那个构象就不是我想要的S2态而是那个能量更低的激发态的最优构象
比如opt td(singlets,nstates=5,root=2) pbe1pbe/6-31g** scrf=(solvent=acetonitrile)优化的这个结果:
初始的构象:
Excited State 1: Singlet-A 0.4286 eV 2892.57 nm f=0.0000 <S**2>=0.000
115 ->116 0.70441
Excited State 2: Singlet-A 1.7945 eV 690.90 nm f=1.7609 <S**2>=0.000
114 ->116 0.70437
This state for optimization and/or second-order correction.
Total Energy, E(TD-HF/TD-KS) = -1393.19385161
Copying the excited state density for this state as the 1-particle RhoCI density.
Excited State 3: Singlet-A 2.9055 eV 426.72 nm f=0.3911 <S**2>=0.000
113 ->116 0.69984
Excited State 4: Singlet-A 3.0974 eV 400.28 nm f=0.0001 <S**2>=0.000
115 ->117 0.69782
Excited State 5: Singlet-A 3.2982 eV 375.91 nm f=0.0104 <S**2>=0.000
112 ->116 0.70328
优化结束的构象:
Excited State 1: Singlet-A 2.8666 eV 432.52 nm f=0.3073 <S**2>=0.000
114 ->116 0.70075
Excited State 2: Singlet-A 1.8576 eV 667.44 nm f=0.9250 <S**2>=0.000
115 ->116 0.70282
This state for optimization and/or second-order correction.
Total Energy, E(TD-HF/TD-KS) = -1393.22865076
Copying the excited state density for this state as the 1-particle RhoCI density.
Excited State 3: Singlet-A 3.1537 eV 393.14 nm f=0.5205 <S**2>=0.000
113 ->116 0.69509
Excited State 4: Singlet-A 3.7101 eV 334.18 nm f=0.0065 <S**2>=0.000
108 ->116 0.23408
111 ->116 0.63984
115 ->118 -0.13833
Excited State 5: Singlet-A 3.7613 eV 329.63 nm f=0.0057 <S**2>=0.000
112 ->116 -0.69846
本来想考察的是S2态的势能面极小点,但是实际这个优化出出来的是S1态的势能面极小点了
两个问题:
1)这样的结果说明什么问题?是势能面的交叉点吗?
2)这样的问题怎么解决?如果我想找S2态的势能面极小点应该如何计算?加关键词或者限制步长可以吗?
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