Закономерности образования сополимеров из мономеров разной активности в условиях полимеризации с обратимой передачей цепи (1105567), страница 25
Текст из файла (страница 25)
37. P. 5586–5595.93. Kim J., Zhou H., Nguyen S.T., Torkelson J.M. Synthesis and application of styrene/4hydroxystyrene gradient copolymers made by controlled radical polymerization:compatibilization of immiscible polymer blends via hydrogen-bonding effects // Polymer.2006. V. 47. P. 5799–5809.94. Gray M.K., Zhou H., Nguyen S.T., Torkelson J.M. Differences in enthalpy recovery ofgradient and random copolymers of similar overall composition: styrene/4-methylstyrenecopolymers made by nitroxide-mediated controlled radical polymerization // Polymer.2004. V.
45. P. 4777–4786.95. Zaremski M.Y., Plutalova A.V., Garina E.S., Lachinov M.B., Golubev V.B. On theMechanismandKineticsofTEMPO-MediatedRadicalCopolymerization//Macromolecules. 1999. V. 32. P. 6359–6362.96. Заремский М.Ю., Морозов А.В., Плуталова А.В., Лачинов М.Б., Голубев В.Б.Обратимое ингибирование нитроксилами радикальной сополимеризации стирола сакриловыми мономерами // Высокомолек. соед. Сер.
Б. 2000. Т. 42. № 8. С. 1441–1445.97. Плуталова А.В., Заремский М.Ю., Павлов М.Г., Гарина Е.С., Лачинов М.Б.,Голубев В.Б. Константа равновесия обратимого ингибирования псевдоживойрадикальнойсополимеризациистироласбутилакрилатомвнитроксила // Высокомолек. соед. Сер. Б. 1999. Т. 41. № 3. С. 552–555.присутствии13898. Заремский М.Ю., Резниченко А.Л., Гриневич Ю.А., Гарина Е.С., Лачинов М.Б.,Голубев В.Б. Псевдоживая радикальная сополимеризация винилацетата состиролом в условиях обратимого ингибирования нитроксилами // Высокомолек.соед. Сер.
А. 2005. Т. 47. № 6. С. 898–908.99. Hawker C.J., Frechet J., Grubbs R., Dao J. Preparation of Hyperbranched and StarPolymers by a "Living", Self-Condensing Free Radical Polymerization // J. Am. Chem.Soc. 1995. V. 117. P. 10763–10764.100. Grubbs R., Hawker C.J., Dao J., Fréchet J. A Tandem Approach to Graft and DendriticGraft Copolymers Based on “Living” Free Radical Polymerizations // AngewandteChemie International Edition in English. 1997. V.
36. P. 270–272.101. Hawker C.J. Architectural Control in “Living” Free Radical Polymerizations: Preparationof Star and Graft Polymers // Angewandte Chemie International Edition in English. 1995.V. 34. P. 1456–1459.102. Voit B. New developments in hyperbranched polymers // Journal of Polymer SciencePart A: Polymer Chemistry. 2000. V. 38. P. 2505–2525.103. Li C., He J., Cao J., Yang Y. Controlled Radical Polymerization of Styrene in thePresence of a Polymerizable Nitroxide Compound // Macromolecules. 1999.
V. 32.P. 7012–7014.104. Niu A., Li C., Zhao Y., He J., Yang Y., Wu C. Thermal Decomposition Kinetics andStructure of Novel Polystyrene Clusters with MTEMPO as a Branching Agent //Macromolecules. 2001. V. 34 P. 460–464.105. Husseman M., Malmström E., McNamara M., Mate M., Mecerreyes D., Benoit D.,Hedrick J., Mansky P., Huang E., Russell T., Hawker C.J. Controlled Synthesis ofPolymerBrushesby“Living”FreeRadicalPolymerizationTechniques//Macromolecules.
1999. V. 32. P. 1424–1431.106. Kato M., Kamigaito M., Sawamoto M., Higashimura T. Polymerization of MethylMethacrylatewiththeCarbon(triphenylphosphine)ruthenium(II)/MethylaluminumTetrachloride/DichlorotrisBis(2,6-di-tert-butylphenoxide)Initiating System: Possibility of Living Radical Polymerization // Macromolecules. 1995.V. 28. P. 1721–1723.107. Lena F., Matyjaszewski K. Transition metal catalysts for controlled radicalpolymerization // Progress in Polymer Science.
2010. V. 35. P. 959–1021.139108. Thayer J. Organometallic Compounds and Living Organisms. Elsevier, 1984. 286 p.109. Vidts K., Du Prez F. Design of water-soluble block copolymers containing poly(4vinylpyridine) by atom transfer radical polymerization // European Polymer Journal.2006. V. 42. P. 43–50.110. Mühlebach A., Gaynor S., Matyjaszewski K. Synthesis of Amphiphilic BlockCopolymers by Atom Transfer Radical Polymerization (ATRP) // Macromolecules. 1998.V. 31. P.
6046–6052.111. Kajiwara A., Matyjaszewski K. Formation of Block Copolymers by Transformation ofCationic Ring-Opening Polymerization to Atom Transfer Radical Polymerization(ATRP) // Macromolecules. 1998. V. 31. P. 3489–3493.112. Li M., Jahed N., Min K., Matyjaszewski K.
Preparation of Linear and Star-Shaped BlockCopolymers by ATRP Using Simultaneous Reverse and Normal Initiation Process inBulk and Miniemulsion // Macromolecules. 2004. V. 37. 2434–2441.113. Matyjaszewski K., Ziegler M., Arehart S., Greszta D., Pakula T. Gradient copolymers byatom transfer radical copolymerization // J. Phys. Org. Chem. 2000. V. 13. P. 775–786.114. Matyjaszewski K., Xia J. Atom Transfer Radical Polymerization // Chem. Rev. 2001.V. 101. P. 2921–2990.115. Lee S., Russell A.J., Matyjaszewski K. ATRP Synthesis of Amphiphilic Random,Gradient, and Block Copolymers of 2-(Dimethylamino)ethyl Methacrylate and n-ButylMethacrylate in Aqueous Media // Biomacromolecules.
2003. V. 4. P. 1386–1393.116. Min K., Li M., Matyjaszewski K. Preparation of gradient copolymers via ATRP using asimultaneous reverse and normal initiation process. I. Spontaneous gradient // Journal ofPolymer Science Part A: Polymer Chemistry. 2005. V. 43.
P. 3616–3622.117. Min K., Oh J., Matyjaszewski K. Preparation of Gradient Copolymers via ATRP inMiniemulsion. II. Forced Gradient // Journal of Polymer Science: Part A: PolymerChemistry. 2007. V. 45. P. 1413–1423.118. Hong S., Lutz J-F., Inoue Y., Strissel C., Nuyken O., Matyjaszewski K. Use of anImmobilized/Soluble Hybrid ATRP Catalyst System for the Preparation of BlockCopolymers, Random Copolymers, and Polymers with High Degree of Chain EndFunctionality // Macromolecules.
2003. V. 36. P. 1075–1082.140119. Harris H., Holder S. Octadecyl acrylate based block and random copolymers prepared byATRP as comb-like stabilizers for colloidal micro-particle one-step synthesis in organicsolvents // Polymer. 2006. V. 47. P. 5701–5706.120. Gao B., Chen X., Iván B., Kops J., Batsberg W. Synthesis of triblock and randomcopolymers of 4-acetoxystyrene and styrene by living atom transfer radicalpolymerization // Polymer Bulletin.
1997. V. 39. P. 559–565.121. Li Y., Armes S. Synthesis and Chemical Degradation of Branched Vinyl PolymersPrepared via ATRP: Use of a Cleavable Disulfide-Based Branching Agent //Macromolecules. 2005. V. 38. P. 8155–8162.122. Gaynor S.G., Edelman S., Matyjaszewski K. Synthesis of Branched and HyperbranchedPolystyrenes // Macromolecules. 1996. V. 29. P. 1079–1081.123. Rosselgong J., Armes S. Synthesis of Branched Methacrylic Copolymers: Comparisonbetween RAFT and ATRP and Effect of Varying the Monomer Concentration //Macromolecules. 2010. V. 43. P. 2145–2156.124.
Gao H., Matyjaszewski K. Synthesis of Star Polymers by a Combination of ATRP andthe “Click” Coupling Method // Macromolecules. 2006. V. 39. P. 4960–4965.125. Gao H., Ohno S., Matyjaszewski K. Low Polydispersity Star Polymers via Cross-LinkingMacromonomers by ATRP // J. Am. Chem. Soc. 2006. V. 128. P. 15111–15113.126. Gao H., Matyjaszewski K. Structural Control in ATRP Synthesis of Star Polymers Usingthe Arm-First Method // Macromolecules. 2006. V. 39.
P. 3154–3160.127. Matyjaszewski K. Atom Transfer Radical Polymerization (ATRP): Current Status andFuture Perspectives // Macromolecules. 2012. V. 45. P. 4015−4039.128. Yeole N. Thiocarbonylthio Compounds // Synlett. 2010. V. 10. P. 1572−1573.129. McCormick C.L., Lowe A. Aqueous RAFT Polymerization: Recent Developments inSynthesis of Functional Water-Soluble (Co)polymers with Controlled Structures // Acc.Chem. Res. 2004. V. 37. P. 312–325.130. Moad G., Rizzardo E., Thang S. Radical addition–fragmentation chemistry in polymersynthesis // Polymer. 2008. V. 49. P. 1079–1131.131. Moad G., Chong Y.K., Postma A., Rizzardo E., Thang S.H.
Advances in RAFTpolymerization: the synthesis of polymers with defined end-groups // Polymer. 2005.V. 46. P. 8458–8468.141132. Vana P., Davis T.P., Barner-Kowollik C. Kinetic Analysis of Reversible AdditionFragmentation Chain Transfer (RAFT) Polymerizations: Conditions for Inhibition,Retardation, and Optimum Living Polymerization // Macromolecular Theory andSimulations. 2002. V. 11. P. 823–835.133. Coote M. Ab Initio Study of the Addition−Fragmentation Equilibrium in RAFTPolymerization: When Is Polymerization Retarded? // Macromolecules. 2004.
V. 37.P. 5023–5031.134. Mayadunne R., Rizzardo E., Chiefari J., Chong Y., Moad G., Thang S.H. Living RadicalPolymerization with Reversible Addition−Fragmentation Chain Transfer (RAFTPolymerization) Using Dithiocarbamates as Chain Transfer Agents // Macromolecules.1999. V. 32.
P. 6977–6980.135. Benaglia M., Chiefari J., Chong Y., Moad G., Rizzardo E., Thang S.H. Universal(Switchable) RAFT Agents // J. Am. Chem. Soc. 2009. V. 131. P. 6914–6915.136. Duréault A., Taton D., Destarac M., Leising F., Gnanou Y. Synthesis of MultifunctionalDithioesters Using Tetraphosphorus Decasulfide and Their Behavior as RAFT Agents //Macromolecules. 2004.
V. 37. P. 5513–5519.137. Baussarda J-F., Habib-Jiwanb J-L., Laschewskya A., Mertogluc M., Storsberga J. Newchain transfer agents for reversible addition-fragmentation chain transfer (RAFT)polymerization in aqueous solution // Polymer. 2004. V. 45. P. 3615–3626.138. Skeya J., O’Reilly R. Facile one pot synthesis of a range of reversible addition–fragmentation chain transfer (RAFT) agents // Chem. Commun. 2008. V.
35. 4183–4185.139. Theis A., Stenzel M., Davis T., Coote M., Barner-Kowollik C. A Synthetic Approach to aNovel Class of Fluorine-Bearing Reversible Addition–Fragmentation Chain Transfer(RAFT) Agents: F-RAFT // Australian Journal of Chemistry. 2005. V. 58. P. 437–441.140. Chong Y., Le T., Moad G., Rizzardo E., Thang S.H. A More Versatile Route to BlockCopolymers and Other Polymers of Complex Architecture by Living RadicalPolymerization: The RAFT Process // Macromolecules. 1999. V. 32. P. 2071–2074.141.