4-Bromo-2-methoxy-5-{(Z)-[(2-methyl-2-propanyl)(oxido)-lambda~5~-azanylidene]methylphenol | C12H16BrNO3 | MD Topology | NMR | X-Ray

Visualize with JSmol

Molecule Information

Molecule Typeheteromolecule
Residue Name (RNME)EUQB
FormulaC12H16BrNO3
IUPAC InChI Key
ALVRCVCEAOTGNH-UHFFFAOYSA-N
IUPAC InChI
InChI=1S/C12H18BrNO3/c1-12(2,3)14(16)7-8-5-10(15)11(17-4)6-9(8)13/h5-6,15-16H,7H2,1-4H3
IUPAC Name
Common Name4-Bromo-2-methoxy-5-{(Z)-[(2-methyl-2-propanyl)(oxido)-lambda~5~-azanylidene]methylphenol
Canonical SMILES (Daylight)
COc1c(O)cc(c(c1)Br)CN(O)C(C)(C)C
Number of atoms33
Net Charge0
Forcefieldmultiple
Molecule ID249519
ChemSpider ID26378906
ChEMBL ID 1642497
Visibility Public
Molecule Tags

Format

Molecular Dynamics (MD) Files

Generating ...

X-Ray - Docking Files

Generating ...

NMR Parameters

1H NMR Spectrum

Generating ...

Fragment-Based Charges

No charge assignments available. Use the button above to use OFraMP fragment-based charge assignment.

Topology History

Processing Information

QM Processing Stage

Click table to toggle details.

Processing Stage Template Semi-Empirical QM (QM0) DFT QM (QM1) DFT Hessian QM (QM2)
Calculation None Energy Minization Energy Minization Hessian
Level of Theory None Semi-Empirical / SCF DFT (B3LYP/6-31G*) DFT (B3LYP/6-31G*)
Default Size Limit (Atoms) 2000 500 50 40
Content of MD Topology
Charges Derived From None MOPAC Merz-Singh-Kollman Merz-Singh-Kollman
Geometry  User Provided Optimized Optimized Optimized
Non-Bonded Interactions Bonds Rule Based:

Parameters are asigned from existing parameters with a set of rules based on atom types and geometry.

Hessian Based:

Force constant are calculated from the QM potential. New parameters are created when no suitable parameters exists.

Angles
Dihedrals

Data

Current Processing StateCompleted
Total Processing Time1 day, 2:19:15 (hh:mm:ss)

ATB Pipeline Setting

Access to this feature is currently restricted

The maximum QM level is computed using the ATB Pipeline atom limits but can be manually increased on a case by case basis.

Calculated Solvation Free Energy

Access to this feature is currently restricted

Submit New Solvation Free Energy Computation