-
10
-
-
33645456688
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-
- clusters
-
- clusters
-
-
-
-
17
-
-
0009988082
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-
J. V. Coe G. H. Lee J. G. Eaton S. T. Arnold H. W. Sarkas K. H. Bowen C. Ludewigt H. Haberland D. R. Worsnop J. Chem. Phys. 1990 92 3980
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J. Chem. Phys.
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, pp. 3980
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-
Coe, J.V.1
Lee, G.H.2
Eaton, J.G.3
Arnold, S.T.4
Sarkas, H.W.5
Bowen, K.H.6
Ludewigt, C.7
Haberland, H.8
Worsnop, D.R.9
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26
-
-
33645460077
-
-
The exponents on these additional diffuse functions differ slightly from the 6-31(1+,3+)G* exponents defined in our previous work (ref. 5), which were decremented by factors of 3.00 rather than 3.32
-
The exponents on these additional diffuse functions differ slightly from the 6-31(1+,3+)G* exponents defined in our previous work (ref. 5), which were decremented by factors of 3.00 rather than 3.32
-
-
-
-
27
-
-
33645451535
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-
The TZVPP + 3s2p basis consists of Ahlrichs' doubly-polarized, valence triple zeta (TZVPP) basis for the oxygen atoms, the singly-polarized TZVP basis for the hydrogen atoms and a 3s2p set of diffuse basis functions centered on each oxygen and each hydrogen atom, with exponents taken from ref. 28
-
The TZVPP + 3s2p basis consists of Ahlrichs' doubly-polarized, valence triple zeta (TZVPP) basis for the oxygen atoms, the singly-polarized TZVP basis for the hydrogen atoms and a 3s2p set of diffuse basis functions centered on each oxygen and each hydrogen atom, with exponents taken from ref. 28
-
-
-
-
32
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-
0001414996
-
-
J. Kong C. A. White A. I. Krylov C. D. Sherrill R. D. Adamson T. R. Furlani M. S. Lee A. M. Lee S. R. Gwaltney T. R. Adams C. Ochsenfeld A. T. B. Gilbert G. S. Kedziora V. A. Rassolov D. R. Maurice N. Nair Y. Shao N. A. Besley P. E. Maslen J. P. Dombroski H. Daschel W. Zhang P. P. Korambath J. Baker E. F. C. Byrd T. Van Voorhis M. Oumi S. Hirata C. Hsu N. Ishikawa J. Florian A. Warshel B. G. Johnson P. M. W. Gill M. Head-Gordon J. A. Pople J. Comput. Chem. 2000 21 1532
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(2000)
J. Comput. Chem.
, vol.21
, pp. 1532
-
-
Kong, J.1
White, C.A.2
Krylov, A.I.3
Sherrill, C.D.4
Adamson, R.D.5
Furlani, T.R.6
Lee, M.S.7
Lee, A.M.8
Gwaltney, S.R.9
Adams, T.R.10
Ochsenfeld, C.11
Gilbert, A.T.B.12
Kedziora, G.S.13
Rassolov, V.A.14
Maurice, D.R.15
Nair, N.16
Shao, Y.17
Besley, N.A.18
Maslen, P.E.19
Dombroski, J.P.20
Daschel, H.21
Zhang, W.22
Korambath, P.P.23
Baker, J.24
Byrd, E.F.C.25
Van Voorhis, T.26
Oumi, M.27
Hirata, S.28
Hsu, C.29
Ishikawa, N.30
Florian, J.31
Warshel, A.32
Johnson, B.G.33
Gill, P.M.W.34
Head-Gordon, M.35
Pople, J.A.36
more..
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36
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0003396304
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P. v. R. Schleyer, N. L. Allinger, T. Clark, J. Gasteiger, P. A. Kollman, H. F. Schaefer III and P. R. Schreiner, Wiley, Chichester, United Kingdom, p. 1792
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F. Weinhold, in Encyclopedia of Computational Chemistry, eds., P. v. R. Schleyer,,, N. L. Allinger,,, T. Clark,,, J. Gasteiger,,, P. A. Kollman,,, H. F. Schaefer III, and, P. R. Schreiner,, Wiley, Chichester, United Kingdom, 1999, Vol. 3, p. 1792
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(1999)
Encyclopedia of Computational Chemistry, Eds.
-
-
Weinhold In, F.1
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40
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33645451051
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-
All of the MP2 calculations reported here employ frozen core orbitals, but in our MBPT2(BHLYP) calculations all orbitals are correlated
-
All of the MP2 calculations reported here employ frozen core orbitals, but in our MBPT2(BHLYP) calculations all orbitals are correlated
-
-
-
-
42
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-
0037041097
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-
M. Gutowski C. S. Hall L. Adamowicz J. H. Hendricks H. L. de Clercq S. A. Lyapustina J. M. Nilles S.-J. Xu K. H. Bowen Jr Phys. Rev. Lett. 2002 88 143001
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(2002)
Phys. Rev. Lett.
, vol.88
, pp. 143001
-
-
Gutowski, M.1
Hall, C.S.2
Adamowicz, L.3
Hendricks, J.H.4
De Clercq, H.L.5
Lyapustina, S.A.6
Nilles, J.M.7
Xu, S.-J.8
Bowen Jr., K.H.9
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