A method for unprejudiced investigation of reaction mechanisms from molecular-dynamics simulations is presented. It combines the transition path sampling approach with a biasing strategy, which (a) allows optimization of transition paths crossing an energy minimum of the transition state surface. The bias is then used to (b) find reaction pathways, which follow different mechanistic routes. In the first step the manifold of similar trajectories that correspond to the same mechanism is reduced to a single characteristic dynamical path. Our method then allows a systematic search for further reaction mechanisms and the related energy barriers. It is illustrated at the example of a single particle in a two-dimensional potential and of the rathe...
In this paper, we give a review of recent transition path search methods for nanoscale phase transit...
Abstract This article reviews the concepts and methods of transition path sampling. These methods al...
Understanding mechanistic aspects of reactivity lies at the heart of chemistry. Once the potential e...
A method for unprejudiced investigation of reaction mechanisms from molecular-dynamics simulations i...
We present a novel transition path sampling shooting algorithm for the efficient sampling of complex...
Molecular dynamics is a powerful tool for studying the thermodynamics and kinetics of complex molecu...
The transition path sampling (TPS) method is a powerful approach to study chemical reactions or tran...
Transition path sampling (TPS) was developed for studying activated processes in complex systems wit...
In the past 15 years transition path sampling (TPS) has evolved from its basic algorithm to an entir...
Since the advent of density functional theory (DFT), computational modelling has become a widely-use...
We propose a transition path sampling (TPS) scheme designed to enhance sampling in systems with mult...
Computer simulations of molecular processes such as nucleation in first-order phase transitions or t...
The last decade has seen a rapid growth in the number of simulation methods and applications dealing...
Reaction mechanisms are an important tool for chemists in the determination of thermodynamic and kin...
Path sampling techniques have been shown to be very efficient tools to study rare events in chemical...
In this paper, we give a review of recent transition path search methods for nanoscale phase transit...
Abstract This article reviews the concepts and methods of transition path sampling. These methods al...
Understanding mechanistic aspects of reactivity lies at the heart of chemistry. Once the potential e...
A method for unprejudiced investigation of reaction mechanisms from molecular-dynamics simulations i...
We present a novel transition path sampling shooting algorithm for the efficient sampling of complex...
Molecular dynamics is a powerful tool for studying the thermodynamics and kinetics of complex molecu...
The transition path sampling (TPS) method is a powerful approach to study chemical reactions or tran...
Transition path sampling (TPS) was developed for studying activated processes in complex systems wit...
In the past 15 years transition path sampling (TPS) has evolved from its basic algorithm to an entir...
Since the advent of density functional theory (DFT), computational modelling has become a widely-use...
We propose a transition path sampling (TPS) scheme designed to enhance sampling in systems with mult...
Computer simulations of molecular processes such as nucleation in first-order phase transitions or t...
The last decade has seen a rapid growth in the number of simulation methods and applications dealing...
Reaction mechanisms are an important tool for chemists in the determination of thermodynamic and kin...
Path sampling techniques have been shown to be very efficient tools to study rare events in chemical...
In this paper, we give a review of recent transition path search methods for nanoscale phase transit...
Abstract This article reviews the concepts and methods of transition path sampling. These methods al...
Understanding mechanistic aspects of reactivity lies at the heart of chemistry. Once the potential e...