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142 Advances in Polymer Science Editorial Board: A. Abe. A.-C ...

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Subject Index 241<br />

Microphases 11z, 116,119<br />

Microsphere 135,157<br />

Molecular bottlebrushes 15o, 151,154<br />

Molecular weight asymmetry 75<br />

Monoclonal antibody 2zz<br />

Monolayer 203<br />

Monte Carlo simulation lOZ, lO3, lO5,154<br />

Morphology llZ, 116-118<br />

Multiarm star polymer 4-41<br />

Multib<strong>in</strong> k<strong>in</strong>etic model 165<br />

Multibranched radical 14z<br />

Multifunctional coupl<strong>in</strong>g agent 3o-41<br />

Multifunctional <strong>in</strong>itiator 17-3o<br />

Multifunctional macromonomer 135<br />

Mushroom-brush transition 171<br />

NMR spectroscopy 156 , 172, 187<br />

Non-aqueous dispersion 158<br />

-Norbornenyl macromonomer 138,139<br />

Nucleation mechanism 163<br />

Nucleotide ZZl<br />

Order-disorder transition 72,11o, 116,12o-<br />

122<br />

Orthogonal <strong>in</strong>itiator 138<br />

1,3-Pentadienyl-term<strong>in</strong>ated macromonomer<br />

139<br />

Persistence length 153<br />

Phase boundaries z16<br />

Phase diagram 112<br />

Phenyl acetylene zo9<br />

Photobleach<strong>in</strong>g, recovery after 197<br />

Poly(amidoam<strong>in</strong>e)s (PAMAM) 184<br />

Poly(benzyl ether) 197<br />

- dendrimer 184, 18 9, 211<br />

Poty(carbosilane) dendrimer 191<br />

Poly(ethylene oxide) macromonomer 139<br />

Poly (L-lys<strong>in</strong>e) dendrimer r95,197, z15, 221<br />

Poly(macromonomer) 134,149,155<br />

Poly(paraphenylene) zo8<br />

Poly(phenylacetylene) 186<br />

- dendrimer 191<br />

Poly(propylene im<strong>in</strong>e) 6<br />

- dendrimer z15<br />

Polyacrylate macromonomer 139<br />

Polybutadienes, asymmetric 76<br />

Polycondensation 137<br />

Polydispersity 193<br />

Polyisoprenes, asymmetric 77<br />

Polymacromonomers, bulk properties 154<br />

<strong>Polymer</strong> redistribution reaction z18<br />

<strong>Polymer</strong>-dendrimer hybrid zn<br />

<strong>Polymer</strong>-polymer reaction 146,147<br />

<strong>Polymer</strong>s, asymmetric -functionalized 97<br />

Polyolef<strong>in</strong> macromonomer 136<br />

Polysiloxane macromonomer 141<br />

Polystyrene macromonomer 137<br />

Polystyryllithium 76, 78<br />

Pour po<strong>in</strong>t 11<br />

PS, end-capped 76,85<br />

Quaterpolymers 81, 96<br />

Radical polymerization k<strong>in</strong>etics <strong>142</strong><br />

Radioisotope zzz<br />

Radius of gyration 73, lO5,195<br />

Reactivity ratio 145,165<br />

Recovery after photobleach<strong>in</strong>g 197<br />

Renomalization group theory 73, lO5<br />

Retrosynthetic analysis 182<br />

R<strong>in</strong>g-open<strong>in</strong>g methathesis polymerization<br />

137<br />

Rotaxanes 214<br />

SAXS 151<br />

Scaled excluded-volume parameter 153<br />

Scann<strong>in</strong>g force microscopy 203<br />

SEC-DV 149<br />

SEC-LALLS 149,15o<br />

SEC-MALLS 149<br />

Sedimentation experiment 151<br />

Segment density 194, 200<br />

Segmental volume fraction 199<br />

Selective gas permeabie membrane 156<br />

Shear stability 12, 34<br />

Shell thickness 2o3<br />

Shr<strong>in</strong>kage factor 15o, 2o5<br />

Simulation 194<br />

Size exclusion chromatography (SEC) 193<br />

Smith-Ewart theory 17o<br />

Soap-free emulsion polymerization 169<br />

Solvent, common good lOO-lO8<br />

-, theta lOO, lO2<br />

Sphericity 194<br />

Star homopolymers 77, 81<br />

Star polymers, asymmetric 71, 74, 77, lOO,<br />

123, 124<br />

- -, core-shell type 139<br />

- -, double-haired 135<br />

- -, heteroarm 75<br />

- -, Janus-type 14o<br />

- -, multiarm 4-41<br />

Star-block copolymers 79,123

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