Publication | Closed Access
MOlecular MAterials Property Prediction Package (MOMAP) 1.0: a software package for predicting the luminescent properties and mobility of organic functional materials
402
Citations
39
References
2018
Year
EngineeringLuminescent PropertiesMolecular Charge MobilityComputational ChemistryChemistryElectronic Excited StateLuminescence PropertyMolecular DynamicsBiophysicsMaterials ScienceOrganic Functional MaterialsMolecular MaterialPhysical ChemistryQuantum ChemistryMolecular EngineeringCharge Mobility PropertiesOrganic Charge-transfer CompoundExcited State PropertyOrganic Material ChemistryNatural SciencesMolecular PropertyApplied PhysicsKinetic Monte CarloMolecule-based MaterialFunctional MaterialsSoftware Package
MOlecular MAterials Property Prediction Package (MOMAP) is a software toolkit for molecular materials property prediction. It focuses on luminescent properties and charge mobility properties. This article contains a brief descriptive introduction of key features, theoretical models and algorithms of the software, together with examples that illustrate the performance. First, we present the theoretical models and algorithms for molecular luminescent properties calculation, which includes the excited-state radiative/non-radiative decay rate constant and the optical spectra. Then, a multi-scale simulation approach and its algorithm for the molecular charge mobility are described. This approach is based on hopping model and combines with Kinetic Monte Carlo and molecular dynamics simulations, and it is especially applicable for describing a large category of organic semiconductors, whose inter-molecular electronic coupling is much smaller than intra-molecular charge reorganisation energy.
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