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Modeling the Kinetics of Hydrosilylation Based Polyaddition

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Summary.

Platinum(II) chloride was used in the hydrosilylation of 1,1,3,3-tetramethyldisiloxane and divinylbenzene. The reaction was monitored online by FTIR spectroscopy and reaction kinetics were determined by Self Modeling Curve Resolution (SMCR). The hydrosilylation polymerization follows a second order polyaddition kinetics with k = 2.03 × 10−4 dm3 mol−1 s−1.

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References

  • For reviews and selected publications, also including other transition metal catalysts than platinum, see: a) Imlinger NC, Wurst K, Buchmeiser MR (2005) J Organomet Chem 690: 4433; b) Imlinger NC, Wurst K, Buchmeiser MR (2005) Monatsh Chem 136: 47; c) Bantu B, Wang D, Wurst K, Buchmeiser MR (2005) Tetrahedron 61: 12145; d) Glaser PB, Tilley TD (2003) J Am Chem Soc 125: 13640; e) Marciniec B (2002) Silicon Chemistry 1: 155; f) Dioumaev VK, Bullock RM (2000) Nature 424: 530; g) Fu P-F, Brard L, Li Y, Marks TJ (1995) J Am Chem Soc 117: 7157; h) Brookhart M, Grant BE (1993) J Am Chem Soc 115: 2151; i) Uozumi Y, Kitayama K, Hayashi T (1993) Tetrahedron: Asymmetry 4: 2419

  • JL Speier JA Webster GH Barnes (1957) J Am Chem Soc 79 974 Occurrence Handle10.1021/ja01561a054 Occurrence Handle1:CAS:528:DyaG2sXltFyitA%3D%3D

    Article  CAS  Google Scholar 

  • MA Brook (2000) Silicon in Organic, Organometallic, and Polymer Chemistry John Wiley & Sons New York

    Google Scholar 

  • a) Louis E, Jussofie I, Kühn FE, Herrmann WA (2006) J Organomet Chem 691: 2031; b) Mukbaniani O, Tatrishvili T, Titvinidze G, Mukbaniani N (2006) J Appl Polym Sci 101: 388; c) He X, Herz J, Guenet J-M (1987) Macromolecules 20: 2003

  • a) Sia SK, Whitesides GM (2003) Electrophoresis 24: 3563; b) Campbell DJ, Beckman KJ, Calderon CE, Doolan PW, Ottosen RM, Ellis AB, Lisensky GC (1999) J Chem Educ 75: 537

    Google Scholar 

  • a) Sargent JR, Weber WP (1999) Macromolecules 32: 2826; b) Hu J, Son DY (1998) Macromolecules 31: 4645; c) Dvornic PR, Gerov VV, Govedarica MN (1994) Macromolecules 27: 7575

  • DG Blackmond (2005) Angew Chem 117 4374 Occurrence Handle10.1002/ange.200462544

    Article  Google Scholar 

  • M Brendel D Bonvin W Marquardt (2006) Chem Eng Sci 61 5404 Occurrence Handle10.1016/j.ces.2006.04.028 Occurrence Handle1:CAS:528:DC%2BD28XmtlWqur0%3D

    Article  CAS  Google Scholar 

  • a) Puxty G, Maeder M, Hungerbühler K (2006) Chemom Intell Lab Syst 81: 149; b) Carvalho AR, Wattoom J, Zhu L, Brereton RG (2006) Analyst 131: 90; c) Allian AD, Tjahjono M, Garland M (2006) Organometallics 25: 2182; d) Diewok J, de Juan A, Maeder M, Tauler R, Lendl B (2003) Anal Chem 75: 641; e) Tauler R, Smilde AK, Henshaw JM, Burgess LW, Kowalski BR (1994) Anal Chem 66: 3337; f) Henshaw JM, Burgess LW, Booksh KS, Kowalski BR (1994) Anal Chem 66: 3328

  • a) Jiang J-H, Liang Y, Ozaki Y (2004) Chemom Intell Lab Syst 71: 1; b) Windig W (1988) Chemom Intell Lab Syst 4: 201; c) Lawton WH, Sylvestre EA (1971) Technometrics 13: 617

  • ER Malinowski (2002) Factor Analysis in Chemistry John Wiley and Sons New York

    Google Scholar 

  • SD Frans JM Harris (1985) Anal Chem 57 1718 Occurrence Handle10.1021/ac00285a047 Occurrence Handle1:CAS:528:DyaL2MXktFahsrc%3D

    Article  CAS  Google Scholar 

  • PJ Gemperline (1999) Anal Chem 71 5398 Occurrence Handle10.1021/ac990648y Occurrence Handle1:CAS:528:DyaK1MXmslClu7c%3D

    Article  CAS  Google Scholar 

  • W Caseri PS Pregosin (1988) J Organomet Chem 356 259 Occurrence Handle10.1016/0022-328X(88)83096-1 Occurrence Handle1:CAS:528:DyaL1MXltlCht70%3D

    Article  CAS  Google Scholar 

  • D Lin-Vien NB Colthup WG Fateley JG Grasselli (1991) The Handbook of Infrared and Raman Characteristic Frequencies of Organic Molecules Academic San Diego

    Google Scholar 

  • B Tieke (2005) Makromolekulare Chemie: Eine Einführung WILEY-VCH Weinheim

    Google Scholar 

  • RI Shrager (1986) Chemom Intell Lab Syst 1 59 Occurrence Handle10.1016/0169-7439(86)80026-0 Occurrence Handle1:CAS:528:DyaL2sXnsFeiug%3D%3D

    Article  CAS  Google Scholar 

  • R Henrion G Henrion (1994) Multivariate Datenanalyse: Methodik und Anwendung in der Chemie und verwandten Gebieten Springer Berlin

    Google Scholar 

  • C Ruckebusch A de Juan L Duponchel JP Huvenne (2006) Chemom Intell Lab Syst 80 209 Occurrence Handle10.1016/j.chemolab.2005.06.009 Occurrence Handle1:CAS:528:DC%2BD28XhslOrtb4%3D

    Article  CAS  Google Scholar 

  • M Amrhein B Srinivasan D Bonvin MM Schumacher (1996) Chemom Intell Lab Syst 33 17 Occurrence Handle10.1016/0169-7439(95)00086-0 Occurrence Handle1:CAS:528:DyaK28XjtFaqsL8%3D

    Article  CAS  Google Scholar 

  • a) Domínguez-Vidal A, Saenz-Navajas MP, Ayora-Canada MJ, Lendl B (2006) Anal Chem 78: 3257; b) de Juan A, Maeder M, Martinez M, Tauler R (2000) Chemom Intell Lab Syst 54: 123; c) Tauler R, Smilde A, Kowalski B (1995) J Chemom 9: 31

  • ER Malinowski (1977) Anal Chem 49 606 Occurrence Handle10.1021/ac50012a026 Occurrence Handle1:CAS:528:DyaE2sXhsV2qsrk%3D

    Article  CAS  Google Scholar 

  • M Meloun J Capek P Miksik RG Brereton (2000) Anal Chim Acta 423 51 Occurrence Handle10.1016/S0003-2670(00)01100-4 Occurrence Handle1:CAS:528:DC%2BD3cXntF2rtrw%3D

    Article  CAS  Google Scholar 

  • Z-P Chen Y-Z Liang J-H Jiang Y Li J-Y Qian R-Q Yu (1999) J Chemom 13 15 Occurrence Handle10.1002/(SICI)1099-128X(199901/02)13:1<15::AID-CEM527>3.0.CO;2-I Occurrence Handle1:CAS:528:DyaK1MXisVWit7Y%3D

    Article  CAS  Google Scholar 

  • a) Windig W (2005) Chemom Intell Lab Syst 77: 206; b) Gourvénec S, Massart DL, Rutledge DN (2002) Chemom Intell Lab Syst 61: 51

    Google Scholar 

  • a) Puxty G, Maeder M, Rhinehart RR, Alam S, Moore S, Gemperline PJ (2005) J Chemom 19: 329; b) Furusjö E, Danielsson L-G (1998) Anal Chim Acta 373: 83; c) Knorr FJ, Harris JM (1981) Anal Chem 53: 272

  • a) Furusjö E, Danielsson L-G (2000) J Chemom 14: 483; b) Furusjö E, Danielsson L-G (2000) Chemom Intell Lab Syst 50: 63

  • A Lorber (1984) Anal Chem 56 1004 Occurrence Handle10.1021/ac00270a031 Occurrence Handle1:CAS:528:DyaL2cXhs1Oitr0%3D

    Article  CAS  Google Scholar 

  • M Maeder AD Zuberbühler (1990) Anal Chem 62 2220 Occurrence Handle10.1021/ac00219a013 Occurrence Handle1:CAS:528:DyaK3cXlsVChsbo%3D

    Article  CAS  Google Scholar 

  • R Bro S de Jong (1997) J Chemom 11 393 Occurrence Handle10.1002/(SICI)1099-128X(199709/10)11:5<393::AID-CEM483>3.0.CO;2-L Occurrence Handle1:CAS:528:DyaK2sXmslSgt7k%3D

    Article  CAS  Google Scholar 

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Correspondence to Manfred Krell or Michael R. Buchmeiser.

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Imlinger, N., Krell, M. & Buchmeiser, M. Modeling the Kinetics of Hydrosilylation Based Polyaddition. Monatsh. Chem. 138, 285–291 (2007). https://doi.org/10.1007/s00706-007-0619-0

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  • DOI: https://doi.org/10.1007/s00706-007-0619-0

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