Hydrogen bonds and ionic interactions in Guanidine/Guanidinium complexes: a computational case study

Structural Chemistry - Tập 19 - Trang 923-933 - 2008
Isabel Rozas1, Ibon Alkorta2, José Elguero2
1School of Chemistry, Trinity College, University of Dublin, Dublin 2, Ireland, UK
2Instituto de Quimica Medica, CSIC, Madrid, Spain

Tóm tắt

It is frequently said that hydrogen bonds (HBs) are enhanced by ionic interactions and in this article we intend to determine the degree at which this reinforcement happens. Considering our interest in the Guanidine(neutral)/Guanidinium(cation) system and its particular nature, all the possible 1:1 complexes with the Chloride(anion)/Hydrochloric acid(neutral) system have been studied at different levels of computation (B3LYP with 6-31+G* and TZVP basis sets; MP2 with 6-31+G*, 6-311++G** and aug-cc-pVDZ basis sets; CBS-QB3 and G3MP2). The nature of these interactions established in all the systems and, when possible, at all the levels of computation used in this study, has been analyzed using Atoms in Molecules and Natural Bond Orbital methodologies. By examining the interaction energy, the electron density at the bond critical bonds, the atomic energy, the charge transfer, the orbital energy, and the deformation energy we can conclude that HBs are stronger when the ionic interaction is stronger. Thus, both interactions do not work in an independent manner but one reinforces the other to different degrees depending on the nature of the charges present. Several correlations with the interaction energy have been found and a partition of the contributions of both the HB and ionic forces to the total interactions is proposed.

Tài liệu tham khảo

Gilli P, Bertolasi V, Ferretti V, Gilli G (1994) J Am Chem Soc 116:909. doi:10.1021/ja00082a011 Gilli P, Bertolasi V, Pretto L, Ferretti V, Gilli G (2004) J Am Chem Soc 126:3845. doi:10.1021/ja030213z Gilli G, Gilli P (2000) J Mol Struct 552:1. doi:10.1016/S0022-2860(00)00454-3 Gilli P, Bertolasi V, Ferretti V, Gilli G (2000) J Am Chem Soc 122:10405. doi:10.1021/ja000921+ Gilli P, Bertolasi V, Pretto L, Lyčka A, Gilli G (2002) J Am Chem Soc 124:13554. doi:10.1021/ja020589x Braga D, Rubini K, Maini L (2004) Cryst Eng Comm 6:236. doi:10.1039/b409904b Ferretti V, Bertolasi V, Pretto L (2004) N J Chem 26:646. doi:10.1039/b314143h Mascal M, Marjo CE, Blake AJ (2000) Chem Commun (Camb) 1591. doi:10.1039/b002361m Braga D, Maini L, Grepioni F, De Cian A, Felix O, Fischer J et al (2000) N J Chem 24:547. doi:10.1039/b002061n Braga D, Angelino A, Tagliavini E, Grepioni F (1998) J Chem Soc Dalton Trans 1961. doi:10.1039/a800914g Braga D, Grepioni F (1997) Acc Chem Res 30:81. doi:10.1021/ar9602009 Tsoucaris G (ed) (1998) Current challenges on large supramolecular assemblies. Kluwer, Dordrecht Brammer L, Swearingen JK, Bruton EA, Sherwood P (2002) Proc Natl Acad Sci USA 99:4956. doi:10.1073/pnas.072623399 Lee SO, Shacklady DM, Horner MJ, Ferlay S, Hosseini MW, Ward MD (2005) Cryst Growth Des 5:995. doi:10.1021/cg049660w Son SU, Reingold JA, Carpenter GB, Czech PT, Sweigart DA (2006) Organometallics 25:5276. doi:10.1021/om0604425 Pakiari AH, Eskandari K (2006) J Mol Struct Theochem 759:51. doi:10.1016/j.theochem.2005.10.040 Recommendation from IUPAC Task Group 2004-026-2-100. May 2007. E. Arunan personal communication Meot-Ner M (2005) Chem Rev 105:213. doi:10.1021/cr9411785 Mayer I, Lukovits I, Radnai T (1992) Chem Phys Lett 188:595. doi:10.1016/0009-2614(92)80872-9 Levy JB (1998) Struct Chem 9:179. doi:10.1023/A:1022466913479 Ayotte P, Nielsen SB, Weddle GH, Johnson MA, Xantheas SS (1999) J Phys Chem A 103:10665. doi:10.1021/jp991963r Garrett BC, Dixon DA, Camaioni DM, Chipman DM, Johnson MA, Jonah CD, Kimmel GA, Miller JH, Rescigno TN, Rossky PJ, Xantheas SS, Colson SD, Laufer AH, Ray D, Barbara PF, Bartels DM, Becker KH, Bowen H, Bradforth SE, Carmichael I, Coe JV, Corrales LR, Cowin JP, Dupuis M, Eisenthal KB, Franz JA, Gutowski MS, Jordan KD, Kay BD, LaVerne JA, Lymar SV, Madey TE, McCurdy CW, Meisel D, Mukamel S, Nilsson AR, Orlando TM, Petrik NG, Pimblott SM, Rustad JR, Schenter GK, Singer SJ, Tokmakoff A, Wang LS, Wittig C, Zwier TS (2005) Chem Rev 105:355. doi:10.1021/cr030453x Chen Y, Kortemme T, Robertson T, Baker D, Varani G (2004) Nucleic Acids Res 32:5147. doi:10.1093/nar/gkh785 Félix O, Hosseini MW, De Cian A, Fischer J (1997) Angew Chem Int Ed Engl 36:102. doi:10.1002/anie.199701021 Kim S, Schaefer HF III (2007) J Phys Chem A 111:10381. doi:10.1021/jp072727g Kim S, Schaefer HF III (2007) J Chem Phys 125:144305. doi:10.1063/1.2356464 Botschwina P, Oswald R, Dyczmons V (2007) Int J Mass Spectrom 267:308. doi:10.1016/j.ijms.2007.02.057 Russell VA, Etter MC, Ward MD (1994) Chem Mater 6:1206. doi:10.1021/cm00044a019 Rozas I, Kruger PE (2005) J Chem Theory Comput 1:1055. doi:10.1021/ct050009x Bader RFW (1990) Atoms in molecules. A quantum theory. Oxford University, New York Bieger-Konig FW, Bader RFW, Tang TH (1982) J Comput Chem 3:317. doi:10.1002/jcc.540030306 Reed AE, Curtiss LA, Weinhold F (1988) Chem Rev 88:899. doi:10.1021/cr00088a005 Weinhold F, Carpenter JE (1988) In: Naaman R, Vager Z (eds) The structure of small molecules, NBO version 3.1, Plenum, New York Frisch MJ, Trucks GW, Schlegel HB, Scuseria GE, Robb MA, Cheeseman JR, Montgomery JA Jr, Vreven T, Kudin KN, Burant JC, Millam JM, Iyengar SS, Tomasi J, Barone V, Mennucci B, Cossi M, Scalmani G, Rega N, Petersson GA, Nakatsuji H, Hada M, Ehara M, Toyota K, Fukuda R, Hasegawa J, Ishida M, Nakajima T, Honda Y, Kitao O, Nakai H, Klene M, Li X, Knox JE, Hratchian HP, Cross JB, Bakken V, Adamo C, Jaramillo J, Gomperts R, Stratmann RE, Yazyev O, Austin AJ, Cammi R, Pomelli C, Ochterski JW, Ayala PY, Morokuma K, Voth GA, Salvador P, Dannenberg JJ, Zakrzewski VG, Dapprich S, Daniels AD, Strain MC, Farkas O, Malick DK, Rabuck AD, Raghavachari K, Foresman JB, Ortiz JV, Cui Q, Baboul AG, Clifford S, Cioslowski J, Stefanov BB, Liu G, Liashenko A, Piskorz P, Komaromi I, Martin RL, Fox DJ, Keith T, Al-Laham MA, Peng CY, Nanayakkara A, Challacombe M, Gill PMW, Johnson B, Chen W, Wong MW, Gonzalez C, Pople JA (2004) Gaussian 03, revision C.02. Gaussian, Inc., Wallingford, CT Hariharan PC, Pople JA (1973) Theor Chim Acta 28:213. doi:10.1007/BF00533485 Hariharan PC, Pople JA (1974) Mol Phys 27:209. doi:10.1080/00268977400100171 Schaefer A, Huber C, Ahlrichs R (1994) J Chem Phys 100:5829. doi:10.1063/1.467146 Head-Gordon M, Pople JA, Frisch MJ (1988) Chem Phys Lett 153:503. doi:10.1016/0009-2614(88)85250-3 Frisch MJ, Head-Gordon M, Pople JA (1990) Chem Phys Lett 166:275. doi:10.1016/0009-2614(90)80029-D Frisch MJ, Head-Gordon M, Pople JA (1990) Chem Phys Lett 166:281. doi:10.1016/0009-2614(90)80030-H Krishnan R, Binkley JS, Seeger R, Pople JA (1980) J Chem Phys 72:650. doi:10.1063/1.438955 Woon DE, Dunning TH Jr (1993) J Chem Phys 98:1358. doi:10.1063/1.464303 Dunning TH Jr (1989) J Chem Phys 90:1007. doi:10.1063/1.456153 Montgomery JA Jr, Frisch MJ, Ochterski JW, Petersson GA (2000) J Chem Phys 112:6532. doi:10.1063/1.481224 Curtiss LA, Redfern PC, Raghavachari K, Rassolov V, Pople JA (1999) J Chem Phys 110:4703. doi:10.1063/1.478385 Boys SB, Bernardi F (1970) Mol Phys 19:553. doi:10.1080/00268977000101561 Alkorta I, Picazo O (2005) Arkivoc ix:305 Koskinen JT (1998) Z Naturforsch B Chem Sci 53:386 Aue DH, Bowers MT (1979) In: Bowers MT (ed) Gas phase chemistry, vol 2, chap 9. Academic Press, New York Bondi A (1964) J Phys Chem 68:441. doi:10.1021/j100785a001 Alkorta I, Rozas I, Elguero J (1998) Chem Soc Rev 27:163. doi:10.1039/a827163z Rozas I, Alkorta I, Elguero J (2000) J Am Chem Soc 122:11154. doi:10.1021/ja0017864 Alkorta I, Rozas I, Elguero J (1998) Struct Chem 9:243. doi:10.1023/A:1022424228462 Alkorta I, Barrios L, Rozas I, Elguero J (2000) J Mol Struct Theochem 496:131. doi:10.1016/S0166-1280(99)00177-3 Espinosa E, Alkorta I, Elguero J, Molins E (2002) J Chem Phys 117:5529. doi:10.1063/1.1501133 Rozas I, Alkorta I, Elguero J (1998) J Phys Chem A 48:102 Wiberg KB, Rablen PR (1993) J Comput Chem 14:1504. doi:10.1002/jcc.540141213 Weinhold F, Landis CR (2005) Valency and bonding. A natural bond orbital donor–aceptor perspective. Cambridge Press, Cambridge, p 611 Rozas I, Alkorta I, Elguero J (2004) J Phys Chem B 108:3335. doi:10.1021/jp036901m Rozas I, Alkorta I, Elguero J (2005) Org Biomol Chem 3:366. doi:10.1039/b415768k McNaught AD, Wilkinson A (1997) IUPAC compendium of chemical terminology, 2nd edn. IUPAC, NY