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Preview | Issue Date | Title | Author(s) | Program | Calculation type | Method(s) | Basis Set | Energy | Solv. | Vibr. | Orb. |
---|---|---|---|---|---|---|---|---|---|---|---|
11-Oct-2023 | Zr6-Cl-(OH)2 | Solé-Daura, Albert | Gaussian; 16; ES64L-G16RevA.03 | Geometry optimization Minimum | RB3LYP | LANL2DZ 6-31G(D,P) GEN | -3707.73819674; Eh | ||||
11-Oct-2023 | Zr-Cl-(OH)3 | Solé-Daura, Albert | Gaussian; 16; ES64L-G16RevA.03 | Geometry optimization Minimum | RB3LYP | LANL2DZ 6-31G(D,P) GEN | -3707.28062582; Eh | ||||
11-Oct-2023 | Zr-(OH)5 | Solé-Daura, Albert | Gaussian; 16; ES64L-G16RevA.03 | Geometry optimization Minimum | RB3LYP | LANL2DZ 6-31G(D,P) GEN | -3322.40547471; Eh | ||||
11-Oct-2023 | Zr-(OH)3 | Solé-Daura, Albert | Gaussian; 16; ES64L-G16RevA.03 | Geometry optimization Minimum | RB3LYP | LANL2DZ 6-31G(D,P) GEN | -3323.34277224; Eh | ||||
11-Oct-2023 | Zr-(OH)4 | Solé-Daura, Albert | Gaussian; 16; ES64L-G16RevA.03 | Geometry optimization Minimum | RB3LYP | LANL2DZ 6-31G(D,P) GEN | -3322.88199105; Eh | ||||
11-Oct-2023 | Zr6-Cl2-(OH)2 | Solé-Daura, Albert | Gaussian; 16; ES64L-G16RevA.03 | Geometry optimization Minimum | RB3LYP | LANL2DZ 6-31G(D,P) GEN | -4091.67731538; Eh | ||||
11-Oct-2023 | Zr6-Cl3-OH | Solé-Daura, Albert | Gaussian; 16; ES64L-G16RevA.03 | Geometry optimization Minimum | RB3LYP | LANL2DZ 6-31G(D,P) GEN | -4476.07415180; Eh | ||||
11-Oct-2023 | Zr6-Cl3 | Solé-Daura, Albert | Gaussian; 16; ES64L-G16RevA.03 | Geometry optimization Minimum | RB3LYP | LANL2DZ 6-31G(D,P) GEN | -4476.52711583; Eh | ||||
11-Mar-2024 | 3 | Solé-Daura, Albert | Gaussian; 16; ES64L-G16RevA.03 | Geometry optimization Minimum | UB3LYP | LANL2DZ 6-31G(D,P) GEN | -1342.86899793; Eh | ||||
11-Mar-2024 | 4 | Solé-Daura, Albert | Gaussian; 16; ES64L-G16RevA.03 | Geometry optimization Minimum | UB3LYP | LANL2DZ 6-31G(D,P) GEN | -1342.94248630; Eh |
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- 30 Polyoxometalates
- 26 Epoxidation
- 20 CO2
- 20 CO2RR
- 20 Iron
- 20 Photocatalysis
- 20 salophen
- 20 Zirconium
- 17 Hydrolysis
- 17 phosphoester
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- 67 Gaussian