ABSTRACT: An electrostatically embedded generalized molecular fractionation with conjugate caps (EE-GMFCC) method is developed for efficient linear-scaling quantum mechanical (QM) calculation of protein energy. This approach is based on our previously proposed GMFCC/MM method (He; et al. J. Chem. Phys. 2006, 124, 184703), In this EE-GMFCC scheme, the total energy of protein is calculated by taking a linear combination of the QM energy of the neighboring residues and the two-body QM interaction energy between non-neighboring residues that are spatially in close contact. All the fragment calculations are embedded in a field of point charges representing the remaining protein environment, which is the major improvement over our previous GMFCC/...
The concept of the atomic charge is extensively used to model the electrostatic properties of protei...
ConspectusThe generalized energy-based fragmentation (GEBF) approach provides a very simple way of a...
In this chapter, I discuss combined quantum mechanics (QM) and molecular mechanics (MM; QM/MM) calcu...
An electrostatically embedded generalized molecular fractionation with conjugate caps (EE-GMFCC) met...
A new scheme for direct linear-scaling quantum mechanical calculation of electron density of protein...
A method to perform full quantum mechanical (ab initio) calculation of interaction energy involving ...
Abstract: We present a systematic study of numerical accuracy of various forms of molecular caps tha...
The Molecular Fractionation with Conjugate Caps (MFCC) method is a popular fragmentation method for ...
This study presents several divide and conquer type algorithms to compute electrostatic potentials i...
This study presents several divide and conquer type algorithms to compute electrostatic potentials i...
This study presents several divide and conquer type algorithms to compute electrostatic potentials i...
The concept of the atomic charge is extensively used to model the electrostatic properties of protei...
We present a general scheme to treat backbone hydrogen bonding in protein using the molecular fracti...
Hybrid quantum mechanical / molecular mechanical (QM/MM) approaches have been used to provide a gene...
Hybrid quantum mechanical / molecular mechanical (QM/MM) approaches have been used to provide a gene...
The concept of the atomic charge is extensively used to model the electrostatic properties of protei...
ConspectusThe generalized energy-based fragmentation (GEBF) approach provides a very simple way of a...
In this chapter, I discuss combined quantum mechanics (QM) and molecular mechanics (MM; QM/MM) calcu...
An electrostatically embedded generalized molecular fractionation with conjugate caps (EE-GMFCC) met...
A new scheme for direct linear-scaling quantum mechanical calculation of electron density of protein...
A method to perform full quantum mechanical (ab initio) calculation of interaction energy involving ...
Abstract: We present a systematic study of numerical accuracy of various forms of molecular caps tha...
The Molecular Fractionation with Conjugate Caps (MFCC) method is a popular fragmentation method for ...
This study presents several divide and conquer type algorithms to compute electrostatic potentials i...
This study presents several divide and conquer type algorithms to compute electrostatic potentials i...
This study presents several divide and conquer type algorithms to compute electrostatic potentials i...
The concept of the atomic charge is extensively used to model the electrostatic properties of protei...
We present a general scheme to treat backbone hydrogen bonding in protein using the molecular fracti...
Hybrid quantum mechanical / molecular mechanical (QM/MM) approaches have been used to provide a gene...
Hybrid quantum mechanical / molecular mechanical (QM/MM) approaches have been used to provide a gene...
The concept of the atomic charge is extensively used to model the electrostatic properties of protei...
ConspectusThe generalized energy-based fragmentation (GEBF) approach provides a very simple way of a...
In this chapter, I discuss combined quantum mechanics (QM) and molecular mechanics (MM; QM/MM) calcu...