Skip to content

Commit 433aa84

Browse files
authored
fix cite_efp.rst
1 parent 00407bc commit 433aa84

1 file changed

Lines changed: 12 additions & 12 deletions

File tree

doc/cite_efp.rst

Lines changed: 12 additions & 12 deletions
Original file line numberDiff line numberDiff line change
@@ -4,42 +4,42 @@
44
How to reference EFP
55
********************
66

7-
The paper desdcribing the original implementation of EFP1 (EFP version for water solvent) method in GAMESS is
7+
* The paper describing the original implementation of EFP1 (EFP version for water solvent) method in GAMESS:
88
`The first EFP paper (1996) <https://doi.org/10.1063/1.472045>`_
99

10-
Paul N. Day, Jan H. Jensen, Mark S. Gordon, Simon P. Webb, Walter J. Stevens, Morris Krauss, David Garmer, Harold Basch, Drora Cohen. An effective fragment method for modeling solvent effects in quantum mechanical calculations. J. Chem. Phys. **1996**, 105 (5), 1968–1986.
10+
Paul N. Day, Jan H. Jensen, Mark S. Gordon, Simon P. Webb, Walter J. Stevens, Morris Krauss, David Garmer, Harold Basch, Drora Cohen. An effective fragment method for modeling solvent effects in quantum mechanical calculations. J. Chem. Phys. **1996**, 105 (5), 1968–1986.
1111

12-
The original description of the EFP2 (general EFP) model:
12+
* The original description of the EFP2 (general EFP) model:
1313
`2001 Feature Article <https://doi.org/10.1021/jp002747h>`_
1414

15-
Mark S. Gordon, Mark A. Freitag, Pradipta Bandyopadhyay, Jan H. Jensen, Visvaldas Kairys, and Walter J. Stevens. The Effective Fragment Potential Method:  A QM-Based MM Approach to Modeling Environmental Effects in Chemistry. J. Phys. Chem. A **2001** 105 (2), 293-307
15+
Mark S. Gordon, Mark A. Freitag, Pradipta Bandyopadhyay, Jan H. Jensen, Visvaldas Kairys, and Walter J. Stevens. The Effective Fragment Potential Method:  A QM-Based MM Approach to Modeling Environmental Effects in Chemistry. J. Phys. Chem. A **2001** 105 (2), 293-307
1616

17-
A more recent review of the EFP2 model:
17+
* A more recent review of the EFP2 model:
1818
`2013 review of EFP2 developments <http://dx.doi.org/10.1146/annurev-physchem-040412-110031>`_
1919

20-
Mark S. Gordon, Quentin A. Smith, Peng Xu, Lyudmila V. Slipchenko.
20+
Mark S. Gordon, Quentin A. Smith, Peng Xu, Lyudmila V. Slipchenko.
2121
Accurate First Principles Model Potentials for Intermolecular Interactions.
2222
Ann. Rev. Phys. Chem. **2013** 64, 553-578.
2323

24-
Excited states QM/EFP models in GAMESS:
24+
* Excited states QM/EFP models in GAMESS:
2525
`2011 review of excited state QM/EFP models and applications <http://dx.doi.org/10.1021/jz200947j>`_
2626

27-
Albert DeFusco, Noriyuki Minezawa, Lyudmila V. Slipchenko, Federico Zahariev, and Mark S. Gordon.
27+
Albert DeFusco, Noriyuki Minezawa, Lyudmila V. Slipchenko, Federico Zahariev, and Mark S. Gordon.
2828
Modeling Solvent Effects on Electronic Excited States.
2929
J. Phys. Chem. Lett. **2011** 2 (17), 2184-2192.
3030

31-
CIS, CIS(D) and EOM-CCSD /EFP models in Q-Chem:
31+
* CIS, CIS(D) and EOM-CCSD /EFP models in Q-Chem:
3232
`EOM-CCSD and CIS(D) QM/EFP models <http://dx.doi.org/10.1021/jp101797a>`_
3333

34-
Lyudmila V. Slipchenko. Solvation of the Excited States of Chromophores in Polarizable Environment: Orbital Relaxation versus Polarization.
34+
Lyudmila V. Slipchenko. Solvation of the Excited States of Chromophores in Polarizable Environment: Orbital Relaxation versus Polarization.
3535
J. Phys. Chem. A **2010** 114 (33), 8824-8830.
3636

37-
If you use LibEFP library and/or EFP implementation in Q-Chem, please cite:
37+
* If you use LibEFP library and/or EFP implementation in Q-Chem, please cite:
3838

3939
`Original LibEFP paper <http://dx.doi.org/10.1002/jcc.23375>`_
4040

4141
Ilya A. Kaliman, Lyudmila V. Slipchenko. LIBEFP: A new parallel implementation of the effective fragment potential method as a portable software library. J. Comput. Chem. **2013** 34, 2284–2292.
4242

4343
`Parallel implementation of LibEFP <http://dx.doi.org/10.1002/jcc.23772>`_
4444

45-
Ilya A. Kaliman, Lyudmila V. Slipchenko. Hybrid MPI/OpenMP parallelization of the effective fragment potential method in the libefp software library. J. Comput. Chem. **2015** 36, 129–135.
45+
Ilya A. Kaliman, Lyudmila V. Slipchenko. Hybrid MPI/OpenMP parallelization of the effective fragment potential method in the libefp software library. J. Comput. Chem. **2015** 36, 129–135.

0 commit comments

Comments
 (0)