<div><p>Hi All,</p><p>I am attempting to perform a TD-DFT calculation using the CAM-B3LYP functional on a simple 3-atom titania system. However, the energies I am obtaining differ significantly from those produced by a different code (Gaussian), even if I use the same functional and all-electron basis-set. Interestingly, when using the B3LYP functional, the results align well with Gaussian outputs. This suggests that the discrepancy is likely due to incorrect usage or configuration of the CAM-B3LYP functional with this titania system (in the past I got reasonable values with same functional applied to a formaldehyde molecule)</p><p>Below is the relevant section of my input file, specifically the XC definition:</p><br /> &XC</div> &XC_FUNCTIONAL<br /> &HYB_GGA_XC_CAM_B3LYP<br /> _AC 0.81<br /> _ALPHA 0.65<br /> _BETA -0.46<br /> _OMEGA 0.33<br /> &END HYB_GGA_XC_CAM_B3LYP<br /> &END XC_FUNCTIONAL<br /> &HF<br /> &SCREENING<br /> EPS_SCHWARZ 1.0E-12<br /> &END<br /> &MEMORY<br /> MAX_MEMORY 10000<br /> EPS_STORAGE_SCALING 0.1<br /> &END MEMORY<br /> FRACTION 0.19<br /> &END<br /> &VDW_POTENTIAL<br /> POTENTIAL_TYPE PAIR_POTENTIAL<br /> &PAIR_POTENTIAL<br /> PARAMETER_FILE_NAME dftd3.dat<br /> TYPE DFTD3<br /> REFERENCE_FUNCTIONAL B3LYP<br /> R_CUTOFF [angstrom] 16<br /> &END<br /> &END VDW_POTENTIAL<br /> &END XC<br /><div><br /></div><div>I am uncertain about the correct value for the "FRACTION" parameter in the HF section. Should this parameter align somehow with the _ALPHA, _BETA, and _OMEGA values specified for the CAM-B3LYP functional?</div><div><p>I would greatly appreciate any guidance or suggestions on correctly configuring the CAM-B3LYP functional for this calculation. I attach my input and output files.</p><p>Thank you for your help!</p><p>Best regards,<br />Miguel</p></div>
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