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root/group/trunk/OOPSE-4/forceFields/MnM.frc
Revision: 3392
Committed: Wed May 14 14:31:48 2008 UTC (16 years, 2 months ago) by chuckv
File size: 8765 byte(s)
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File Contents

# Content
1 // This is the forcefield file for the Metal-NonMetal(MnM) Interaction Forcefield
2 //
3 // The sections are divided into AtomTypes
4 //
5
6
7 begin Options
8 Name = "MnM"
9 MetallicEnergyUnitScaling 23.0605423
10 end Options
11
12 begin AtomTypes
13 //Name mass (amu)
14 CH4 16.05
15 CH3 15.04
16 CH2 14.03
17 CH 13.02
18 SSD 18.0153
19 SSD1 18.0153
20 SSD_E 18.0153
21 SSD_RF 18.0153
22 O_TIP3P 15.9994
23 O_TIP4P 15.9994
24 O_TIP4P-Ew 15.9994
25 O_TIP5P 15.9994
26 O_TIP5P-E 15.9994
27 O_SPCE 15.9994
28 O_SPC 15.9994
29 H_TIP3P 1.0079
30 H_TIP4P 1.0079
31 H_TIP4P-Ew 1.0079
32 H_TIP5P 1.0079
33 H_SPCE 1.0079
34 H_SPC 1.0079
35 EP_TIP4P 0.0
36 EP_TIP4P-Ew 0.0
37 EP_TIP5P 0.0
38 C 12.0107
39 S 32.0655
40 Ni 58.710
41 Cu 63.550
42 Rh 102.90550
43 Pd 106.42
44 Ag 107.8682
45 Ir 192.217
46 Pt 195.09
47 Au 196.97
48 end AtomTypes
49
50 begin DirectionalAtomTypes
51 //Name I_xx I_yy I_zz (All moments in (amu*Ang^2)
52 SSD 1.7696 0.6145 1.1550
53 SSD1 1.7696 0.6145 1.1550
54 SSD_E 1.7696 0.6145 1.1550
55 SSD_RF 1.7696 0.6145 1.1550
56 end DirectionalAtomTypes
57
58
59 begin LennardJonesAtomTypes
60 //Name epsilon sigma
61 SSD 0.152 3.051
62 SSD1 0.152 3.016
63 SSD_E 0.152 3.035
64 SSD_RF 0.152 3.019
65 O_TIP3P 0.1521 3.15061
66 O_TIP4P 0.1550 3.15365
67 O_TIP4P-Ew 0.16275 3.16435
68 O_TIP5P 0.16 3.12
69 O_TIP5P-E 0.178 3.097
70 O_SPCE 0.15532 3.16549
71 O_SPC 0.15532 3.16549
72 CH4 0.279 3.73
73 CH3 0.185 3.75
74 CH2 0.0866 3.95
75 CH 0.0189 4.68
76 C 0.101745452544 3.35
77 end LennardJonesAtomTypes
78
79 begin SCAtomTypes
80 // Name epsilon(eV) c m n alpha(angstroms)
81 Ni 0.0073767 84.745 5.0 10.0 3.5157
82 Cu 0.0057921 84.843 5.0 10.0 3.6030
83 Rh 0.0024612 305.499 5.0 13.0 3.7984
84 Pd 0.0032864 148.205 6.0 12.0 3.8813
85 Ag 0.0039450 96.524 6.0 11.0 4.0691
86 Ir 0.0037674 224.815 6.0 13.0 3.8344
87 Pt 0.0097894 71.336 7.0 11.0 3.9163
88 Au 0.0078052 53.581 8.0 11.0 4.0651
89 end SCAtomTypes
90
91
92 // Metal non-metal interactions.
93 // Format: Metal Atom Type, Non-Metal Atom Type, Interaction Type, Interaction Parameters
94 // Where interaction type can be: MAW, LennardJones or ShiftedMorse or RepulsiveMorse
95 begin MetalNonMetalInteractions
96
97 //MAW (Metal Angular Water section)
98 // r_e, D_e beta ca1 cb1
99 Cu SSD_E MAW 2.5525 1.9850 1.1680 1.1250 0.750000
100 //Au SSD_E MAW 2.8170 1.7850 1.2680 1.2500 0.2050 0.0
101 //Au SSD_E MAW 2.7510 2.95 1.101 0.750000 0.750000
102 //1. 1.5 2.6500001 -3.000162356E-2 1.30999744
103 Au SSD_E MAW 2.65 2.45 1.5 -0.08 0.29
104
105 //LennardJones
106 // sigma epsilon
107
108
109 //Shifted Morse
110 // r0 D0 beta0
111 Au O_SPCE ShiftedMorse 3.70 0.0424 0.769
112
113 //Repulsive Morse
114 // r0 D0 beta0
115 Au H_SPCE RepulsiveMorse -1.00 0.00850 0.769
116
117
118 end MetalNonMetalInteractions
119
120
121 begin ChargeAtomTypes
122 // Name charge
123 O_TIP3P -0.834
124 O_SPCE -0.8476
125 O_SPC -0.82
126 H_TIP3P 0.417
127 H_TIP4P 0.520
128 H_TIP4P-Ew 0.52422
129 H_TIP5P 0.241
130 H_SPCE 0.4238
131 H_SPC 0.42
132 EP_TIP4P -1.040
133 EP_TIP4P-Ew -1.04844
134 EP_TIP5P -0.241
135 end ChargeAtomTypes
136
137 begin MultipoleAtomTypes
138 // OOPSE currently only supports charge-charge, charge-dipole,
139 // dipole-dipole, and charge-quadrupole interactions.
140 // Dipoles may be either traditional point-dipoles or split-dipoles.
141 // possible formats for a multipolar atom type are:
142 //
143 // Point-dipoles:
144 // name d phi theta psi dipole_moment
145 //
146 // Split-dipoles:
147 // name s phi theta psi dipole_moment splitdipole_distance
148 //
149 // Point-Quadrupoles:
150 // name q phi theta psi Qxx Qyy Qzz
151 //
152 // Atoms with both dipole and quadrupole moments:
153 // name dq phi theta psi dipole_moment Qxx Qyy Qzz
154 //
155 // Atoms with both split dipoles and quadrupole moments:
156 // name sq phi theta psi dipole_moment splitdipole_distance Qxx Qyy Qzz
157 //
158 // Euler angles are given in zxz convention in units of degrees.
159 //
160 // Charges are given in units of electrons.
161 //
162 // Dipoles are given in units of Debyes.
163 //
164 // Split dipole distances are given in units of Angstroms.
165 //
166 // Quadrupole moments are given in units of 10^-26 esu cm^2 (also known as an
167 // esu centi-barn)
168 //
169 SSD_E dq 0.0 0.0 0.0 2.42 -1.682 1.762 -0.08
170 SSD_RF dq 0.0 0.0 0.0 2.48 -1.682 1.762 -0.08
171 SSD dq 0.0 0.0 0.0 2.35 -1.682 1.762 -0.08
172 SSD1 dq 0.0 0.0 0.0 2.35 -1.682 1.762 -0.08
173 end MultipoleAtomTypes
174
175 begin StickyAtomTypes
176 //name w0 v0 (kcal/mol) v0p rl (Ang) ru rlp rup
177 SSD_E 0.07715 3.90 3.90 2.40 3.80 2.75 3.35
178 SSD_RF 0.07715 3.90 3.90 2.40 3.80 2.75 3.35
179 SSD 0.07715 3.7284 3.7284 2.75 3.35 2.75 4.0
180 SSD1 0.07715 3.6613 3.6613 2.75 3.35 2.75 4.0
181 end StickyAtomTypes
182
183
184 begin BondTypes
185
186 //Atom1 Atom2 Fixed
187 //V_Fixed = 0
188
189 //Atom1 Atom2 Harmonic b0 Kb (kcal/mol)
190 //V_Harmonic = 0.5*Kb(b- bo)^2
191 //Harmonic Examples
192 CH3 CH3 Harmonic 1.526 260
193 CH3 CH2 Harmonic 1.526 260
194 CH3 CH Harmonic 1.526 260
195 CH2 CH2 Harmonic 1.526 260
196 CH2 CH Harmonic 1.526 260
197 CH CH Harmonic 1.526 260
198
199 //Atom1 Atom2 Cubic b0 K3 K2 K1 K0
200 //V_Cubic = K3(b - b0)^3 + K2(b - b0)^2 + K1(b - b0) + K0
201
202
203 //Atom1 Atom2 Quartic b0 K4 K3 K2 K1 K0
204 //V_Quartic = K4(b - b0)^4 + K3(b - b0)^3 + K2(b - b0)^2 + K1(b - b0) + K0
205
206
207 //Atom1 Atom2 Polynomial b0 i Ki [j Kj]
208 //V_Quartic = Ki(b - b0)^i + Kj(b - b0)^j + ...
209
210
211 end BondTypes
212
213 begin BendTypes
214
215 //Harmonic
216 //Atom1 Atom2 Atom3 Harmonic Theta0 Ktheta
217 //V_Harmonic = 0.5*Ktheta(Theta - Theta0)^2
218 //Ktheta: kcal/mole/rad**2
219 //Theta0: degrees
220 //Harmonic examples
221 //
222 CH3 CH2 CH3 Harmonic 114.0 117.68
223 CH3 CH2 CH2 Harmonic 114.0 117.68
224 CH3 CH2 CH Harmonic 114.0 117.68
225 CH3 CH CH3 Harmonic 112.0 117.68
226 CH3 CH CH2 Harmonic 112.0 117.68
227 CH3 CH CH Harmonic 112.0 117.68
228 CH2 CH2 CH2 Harmonic 114.0 117.68
229 CH2 CH2 CH Harmonic 114.0 117.68
230 CH2 CH CH2 Harmonic 112.0 117.68
231 CH2 CH CH Harmonic 112.0 117.68
232 CH CH2 CH Harmonic 114.0 117.68
233 CH CH CH Harmonic 112.0 117.68
234
235
236
237 //UreyBradley
238 //Atom1 Atom2 Atom3 UreyBradley Theta0 Ktheta S0 Kub
239 //V_UreyBradleyBend = Ktheta(Theta - Theta0)^2 + Kub(S - S0)^2
240 //Ktheta: kcal/mole/rad**2
241 //Theta0: degrees
242 //Kub: kcal/mole/A**2
243 //S0: A
244
245 //Cubic
246 //Atom1 Atom2 Atom3 Cubic Theta0 K3 K2 K1 K0
247 //V_Cubic = K3(Theta - Theta0)^3 + K2(Theta - Theta0)^2 + K1(Theta - Theta0) + K0
248
249 //Quartic
250 //Atom1 Atom2 Atom3 Quartic Theta0 K4 K3 K2 K1 K0
251 //V_Quartic = K4(Theta - Theta0)^4 + K3(Theta - Theta0)^3 + K2(Theta - Theta0)^2 + K1(Theta - Theta0) + K0
252
253 //Polynomial
254 //Atom1 Atom2 Atom3 Polynomial Theta0 i Ki [j Kj]
255 //V_Polynomial = Ki(Theta - Theta0)^i + Kj(Theta - Theta0)^j + ...
256
257 end BendTypes
258
259 begin TorsionTypes
260
261 //Cubic
262 //Atom1 Atom2 Atom3 Atom4 Cubic k3 k2 k1 k0 ( all are kcal/mol )
263 //V_Cubic = k3(cos phi)^3 + k2(cos phi)^2 + k1(cos phi) + k0
264 //Cubic Examples
265 CH3 CH2 CH2 CH3 Cubic 5.9602 -0.2568 -3.802 2.1586
266 CH3 CH2 CH CH3 Cubic 3.3254 -0.4215 -1.686 1.1661
267 CH3 CH CH CH3 Cubic 3.3254 -0.4215 -1.686 1.1661
268 CH3 CH2 CH2 CH2 Cubic 5.9602 -0.2568 -3.802 2.1586
269 CH3 CH2 CH CH2 Cubic 3.3254 -0.4215 -1.686 1.1661
270 CH3 CH CH2 CH2 Cubic 3.3254 -0.4215 -1.686 1.1661
271 CH3 CH CH CH2 Cubic 3.3254 -0.4215 -1.686 1.1661
272 CH3 CH2 CH2 CH Cubic 5.9602 -0.2568 -3.802 2.1586
273 CH3 CH2 CH CH Cubic 3.3254 -0.4215 -1.686 1.1661
274 CH3 CH CH2 CH Cubic 3.3254 -0.4215 -1.686 1.1661
275 CH3 CH CH CH Cubic 3.3254 -0.4215 -1.686 1.1661
276 CH2 CH2 CH2 CH2 Cubic 5.9602 -0.2568 -3.802 2.1586
277 CH2 CH2 CH CH2 Cubic 3.3254 -0.4215 -1.686 1.1661
278 CH2 CH CH CH2 Cubic 3.3254 -0.4215 -1.686 1.1661
279 CH2 CH2 CH2 CH Cubic 5.9602 -0.2568 -3.802 2.1586
280 CH2 CH2 CH CH Cubic 3.3254 -0.4215 -1.686 1.1661
281 CH2 CH CH2 CH Cubic 3.3254 -0.4215 -1.686 1.1661
282 CH2 CH CH CH Cubic 3.3254 -0.4215 -1.686 1.1661
283 CH CH2 CH2 CH Cubic 5.9602 -0.2568 -3.802 2.1586
284 CH CH2 CH CH Cubic 3.3254 -0.4215 -1.686 1.1661
285 CH CH CH CH Cubic 3.3254 -0.4215 -1.686 1.1661
286
287
288 //Charmm
289 //Atom1 Atom2 Atom3 Atom4 Charmm Kchi n delta [Kchi n delta]
290 //V_Charmm = Kchi(1 + cos(n(chi) - delta))
291 //Kchi: kcal/mole
292 //n: multiplicity
293 //delta: degrees
294 //in some cases, a Charmm may have two or three terms. If n is equal to 0, it falls back to harmonic form
295
296 //Quartic
297 //Atom1 Atom2 Atom3 Atom4 Quartic k4 k3 k2 k1 k0 ( all are kcal/mol )
298 //V_Quartic = k4(cos phi)^4 + k3(cos phi)^3 + k2(cos phi)^2 + k1(cos phi) + k0
299
300 //Polynomial
301 //Atom1 Atom2 Atom3 Atom4 Polynomial i Ki [j Kj]
302 //VPolynomial = Ki (cos phi)^i + ... + Kj (cos phi)^j
303
304 end TorsionTypes
305
306