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OPPORTUNITIES FOR POLLUTION PREVENTION

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142 TAYLOR 􏲣 CARBONELL 􏲣 DESIMONE influence of helium concentration on par- ticle size and particle size distribuiton. J. Polym. Sci. A 35:2009–13 36. Canelas DA, Betts DE, DeSimone JM. 1996. Dispersion polymerization of styrene in supercritical carbon dioxide: the importance of effective surfactants. Macromolecules 29:2818–21 37. Canelas DA, Betts DE, DeSimone JM. 1997. Dispersion polymerizations of styrene in carbon dioxide stabilized with poly(styrene-b-dimethylsiloxane). Macromolecules 30:5673–82 38. Canelas DA, DeSimone JM. 1996. Siloxane-based stabilizers for the disper- sion polymerization of styrene in super- critical carbon dioxide. Polym. Prepr. (Am. Chem. Soc., Div. Polym. Chem.) 37:542–43 39. Canelas DA, Betts DE, DeSimone JM. 1997. Preparation of poly(vinyl acetate) latexes in liquid and supercritical carbon dioxide. Polym. Prepr. (Am. Chem. Soc., Div. Polym. Chem.) 38:628–29 40. Canelas DA, Betts DE, DeSimone JM, Yates MZ, Johnston KP. 1998. Poly(vinyl acetate) and poly(vinyl acetate-co-ethylene) latexes via disper- sion polymerizations in carbon dioxide. Macromolecules 31:6794–805 41. Lepilleur C, Beckman EJ. 1997. Disper- sion polymerization of methyl methacry- late in supercritical CO2. Macromolecules 30:745–56 42. Clark MR, Kendall JL, DeSimone JM. 1997. Cationic dispersion polymerizations in liquid carbon dioxide. Macromolecules 30:6011–14 sion polymerization in supercritical CO2 with siloxane-based macromonomer. 2: The particle formation regime. Macro- molecules 31:2848–56 46. Niemeyer ED, Bright FV. 1998. The pH within PFPE reverse micelles formed in supercritical CO2. J. Phys. Chem. B 102:1474–78 46a. Harrison KL, Goveas J, Johnston KP, O’Rear EA III. 1994. Water-in- carbon dioxide microemulsions with a fluorocarbon-hydrocarbon hybrid sur- factant. Langmuir 10:3536–41 46b. Eastoe J, Bayazit Z, Martel S, Steytler DC, Heenan RK. 1996. Droplet structure in a water-in-CO2 microemulsion. Lang- muir 12(6):1423–24 46c. Eastoe J, Cazelles BMH, Steytler DC, Holmes JD, Pitt AR, et al. 1997. Water-in-CO2 microemulsions studied by small-angle neutron scattering Langmuir 13:6980–84 46d. Holmes JD, Steytler DC, Rees GD, Robinson BH. 1998. Bioconversions in a water-in-CO2 microemulsion. Langmuir 14:6371–76 46e. Eastoe J, Bayazit Z, Martel S, Steytler DC, Heenan RK. 1996. Droplet structure in water-in-CO2 microemulsion. Lang- muir 12:1423–24 46f. Johnston KP, Harrison KL, Clarke MJ, Howdle SM, Heitz MP, et al. 1996. Water- in-carbon dioxide microemulsions: an en- vironment for hydrophiles including pro- teins. Science 271:624–26 46g. Jacobson GB, Lee CT, Johnston KP. 1999. Organic synthesis in water/carbon dioxide microemulsions. J. Org. Chem. 64:1201–6 46h. Holmes JD, Bhargava PA, Korgel BA, Johnston KP. 1999. Synthesis of cad- mium sulfide Q-particles in water-in-CO2 microemulsions. Langmuir 15:6613– 43. Yong TM, Hems WP, van Nunen JLM, Holmes AB, Steinke JHG, et al. 1997. Synthesis of fluorinated block copoly- mers and their application as novel polymerisation surfactants in supercritical carbon dioxide. Chem. Commun. (18): 1811–12 15 44. Deleted in proof 45. O’Neill ML, Yates MZ, Johnston KP, Smith CD, Wilkinson SP. 1998. Disper- 46i. Holmes JD, Ziegler KJ, Audriani M, Lee CT Jr, Bhargava PA, et al. 1999. Buffer- ing the aqueous phase pH in water-in

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