Title
PASTA: Python Algorithms for Searching Transition stAtes.
Abstract
Chemical reactions are often associated with an energy barrier along the reaction pathway which hinders the spontaneity of the reaction. Changing the energy barrier along the reaction pathway allows one to modulate the performance of a reaction. We present a module, Python Algorithms for Searching Transition stAtes (PASTA), to calculate the energy barrier and locate the transition state of a reaction efficiently. The module is written in python and can perform nudged elastic band, climbing image nudged elastic band and automated nudged elastic band calculations. These methods require the knowledge of the potential energy surface (and its gradient along some direction). This module is written such that it works in conjunction with density functional theory (DFT) codes to obtain this information. Presently it is interfaced with three well known DFT packages: Vienna Ab initio Simulation Package (VASP), Quantum Espresso and Spanish Initiative for Electronic Simulations with Thousands of Atoms (SIESTA). This module is easily extendable and can be interfaced with other DFT, force-field or empirical potential based codes. The uniqueness of the module lies in its user-friendliness. For users with limited computing resources, this module will be an effective tool as it allows to perform the calculations image by image. On the other hand, users with plentiful computing resources (such as users in a high performance computing environment) can perform the calculations for large number of images simultaneously. This module gives users complete flexibility, thereby enabling them to perform calculations on large systems making the best use of the available resources.
Year
DOI
Venue
2018
10.1016/j.cpc.2018.06.026
Computer Physics Communications
Keywords
Field
DocType
NEB,CI-NEB,AutoNEB,Transition state,Energy barrier,Python,DFT
Uniqueness,Potential energy surface,Quantum ESPRESSO,Supercomputer,Algorithm,Transition state,Density functional theory,NumPy,Mathematics,Python (programming language)
Journal
Volume
ISSN
Citations 
233
0010-4655
0
PageRank 
References 
Authors
0.34
0
4
Name
Order
Citations
PageRank
Sudipta Kundu100.34
Satadeep Bhattacharjee200.68
Seung-Cheol Lee3102.38
Manish Jain4143.35