Download Progress in Controlled Radical Polymerization: Materials and by Krzysztof Matyjaszewski, Brent Sumerlin, Nicolay Tsarevsky PDF

By Krzysztof Matyjaszewski, Brent Sumerlin, Nicolay Tsarevsky

content material: PREFACE ; 1. CONTROLLING POLYMER fundamental constitution utilizing CRP: SYNTHESIS OF SEQUENCE-CONTROLLED AND SEQUENCE-DEFINED POLYMERS ; MIRELA ZAMFIR AND JEAN-FRANCOIS LUTZ ; 2. RAFT POLYMERIZATION: a robust instrument FOR THE SYNTHESIS AND learn OF OLIGOMERS ; MEILIANA SIAUW, BRIAN S. HAWKETT, AND SEBASTIEN PERRIER ; three. NEW ARCHITECTURES AND purposes OF ORGANOBORON POLYMERS ready through managed RADICAL POLYMERIZATION ; FEI CHENG AND FRIEDER JAKLE ; four. SYNTHESIS AND CHARACTERIZATION OF PE-B-POEGMA COPOLYMERS ready via LINEAR/HYPERBRANCHED TELECHELIC POLYETHYLENE-INITIATED ATRP OF OLIGO(ETHYLENE GLYCOL) METHACRYLATES ; PINGWEI LIU, WEIQIANG LU, WEN-JUN WANG, BO-GENG LI, ZHIBIN YE, AND SHIPING ZHU ; five. MICROGEL-CORE big name POLYMERS AS practical booths FOR CATALYSIS AND MOLECULAR reputation ; TAKAYA TERASHIMA AND MITSUO SAWAMOTO ; 6. SYNTHESIS AND SEC CHARACTERIZATION OF POLY(METHYL METHACRYLATE) celebrity POLYMERS ; JAMES A. BURNS, DAVID M. HADDLETON, AND C. REMZI BECER ; 7. SYNTHESIS OF ?-END FUNCTIONALIZED POLYMERS via TELLURIUM-METAL TRANSMETALLATION response ; EIICHI KAYAHARA AND SHIGERU YAMAGO ; eight. POLY(GLYCIDYL METHACRYLATE-BLOCK-STYRENE) FOR PHOTOLITHOGRAPHICALLY PATTERNABLE face up to fabrics ; QIN LOU AND DEVON A. SHIPP ; nine. NANOSCALE practical PATTERNING of skinny motion pictures utilizing BLOCK COPOLYMERS ready via CRP ; BRIGITTE VOIT, MARIA RIEDEL, AND JAN STADERMANN ; 10. SYNTHESIS AND CHARACTERIZATION OF POLYHEDRAL OLIGOMERIC SILSEQUIOXANE-CORE celebrity POLYSTYRENE through NITROXIDE-MEDIATED POLYMERIZATION ; DAVID GLE, TRANG N. T. PHAN, VALERIE MONIER, LAURENCE CHARLES, DENIS BERTIN, AND DIDIER GIGMES ; eleven. POLYMER?INORGANIC HYBRID fabrics utilizing managed RADICAL POLYMERIZATION ; A. O. PATIL, H. DONG, A. H. TSOU, AND S. BODIGE ; 12. functions OF floor INITIATED ATRP TO THE practise OF POLYELECTROLYTE BRUSHES FOR ANTIFOULING, ADHESION keep an eye on, FRICTION regulate ; MOYOTASU KOBAYASHI, YUKI TERAYAMA, TATSUYA ISHIKAWA, MASAMI TERADA, HIROE SOEJIMA, DAIKI MURAKAMI, AND ATSUSHI TAKAHARA ; thirteen. floor INTIATED ATOM move RADICAL POLYMERIZATIONS FROM INDIUM TIN OXIDE ELECTRODES: ELECTROCHEMISTRY OF POLYMER BRUSHES ; BO YUN KIM, R. CLAYTON SHALLCROSS, NEAL R. ARMSTRONG, HYO-JU KIM, WOO JIN CHUNG, RABINDRA SAHOO, KOOKHEON CHAR, PHILIP T. DIRLAM, PHILIP J. COSTANZO, AND JEFFREY PYUN ; 14. SURFACE-FUNCTIONALIZED AND SURFACE-FUNCTIONALIZABLE POLY(VINYLIDENE FLUORIDE) MEMBRANES through CONTROLLED/LIVING RADICAL POLYMERIZATION and click on CHEMISTRY ; TAO CAI, KOON-GEE NEOH, AND EN-TANG KANG ; 15. GRAFTING OF POLY(METHYL METHACRYLATE) at the floor OF CYLINDRICAL MESOPORES OF ORDERED SILICA through ATOM move RADICAL POLYMERIZATION ; LIANG CAO AND MICHAL KRUK ; sixteen. STRUCTURING OF POLYMER BRUSHES AND floor NITROXIDE alternate REACTIONS ; HENDRIK WAGNER, MAIKE BECKER, LIFENG CHI, AND ARMIDO STUDER ; 17. floor amendment OF round debris WITH BIOACTIVE GLYCOPOLYMERS ; ANDRE PFAFF AND AXEL H. E. MULLER ; 18. task keep an eye on OF MUSSEL GLUE DERIVED ENZYMES: A learn ON THERMORESPONSIVE TYROSINASE-PNIPAM CONJUGATES ; PATRICK WILKE, WILLIAM L. A. BROOKS, ROMINA KUHNLE, BRENT SUMERLIN, AND HANS G. BORNER ; 19. NEW layout OF THIOL-RESPONSIVE DEGRADABLE BLOCK COPOLYMER MICELLES AS managed DRUG supply autos ; QIAN ZHANG, SAMUEL ALEKSANIAN, ALEXANDER CUNNINGHAM, AND JUNG KWON OH ; 20. (NITRILOTRIACETIC ACID)-END-FUNCTIONALIZED POLYSTYRENES SYNTHESIZED by means of ATRP ; MOHAMMAD ABDUL KADIR, HONG Y. CHO, BONG-SOO KIM, YOUNG-ROK KIM, SUN-GU LEE, UNYONG JEONG, AND HYUN-JONG PAIK ; EDITORS' BIOGRAPHIES ; INDEXES

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Chem. 2009, 47, 6704–6714. 33. Sokolov, A. ; Novikov, V. ; Ding, Y. J. : Condens. Matter 2007, 19, 205116. 34. Fox, T. ; Flory, P. J. J. Appl. Phys. 1950, 21, 581–591. 35. Fox, T. ; Flory, P. J. J. Polym. Sci. 1954, 14, 315–319. ; ACS Symposium Series; American Chemical Society: Washington, DC, 2012. edu Boron-containing polymers hold great potential for applications in the fields of controlled delivery, stimuli-responsive materials, luminescent materials, optoelectronics, catalysis, and chemical sensors.

T. ; Rizzardo, E. Tetrahedron Lett. 1999, 40 (12), 2435–2438. 28. ; Davis, T. ; O’Shea, M. S. Macromolecules 2006, 39, 5307–5318. 29. ; Thang, S. H. Aust. J. Chem. 2009, 62, 1402–1472. 30. Chong, Y. ; Thang, S. H. Macromolecules 2007, 40, 4446–4455. 31. ; Zard, S. Z. Tetrahedron Lett. 1996, 37, 5877–5880. 32. ; Rizzardo, E. J. Polym. , Part A: Polym. Chem. 2009, 47, 6704–6714. 33. Sokolov, A. ; Novikov, V. ; Ding, Y. J. : Condens. Matter 2007, 19, 205116. 34. Fox, T. ; Flory, P. J. J. Appl. Phys.

T. ; Rizzardo, E. Tetrahedron Lett. 1999, 40 (12), 2435–2438. 28. ; Davis, T. ; O’Shea, M. S. Macromolecules 2006, 39, 5307–5318. 29. ; Thang, S. H. Aust. J. Chem. 2009, 62, 1402–1472. 30. Chong, Y. ; Thang, S. H. Macromolecules 2007, 40, 4446–4455. 31. ; Zard, S. Z. Tetrahedron Lett. 1996, 37, 5877–5880. 32. ; Rizzardo, E. J. Polym. , Part A: Polym. Chem. 2009, 47, 6704–6714. 33. Sokolov, A. ; Novikov, V. ; Ding, Y. J. : Condens. Matter 2007, 19, 205116. 34. Fox, T. ; Flory, P. J. J. Appl. Phys.

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