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Rotello Research Group

It is all about particles ...

 

 

Cover Pages Advanced Materials, 2005, 17. Chem. Commun., 2005, 3,289.

2005

188) Verma, A.; Srivastava, S.; Rotello, V. M. “Modulation of the Interparticle Spacing and Optical Behavior of Nanoparticle Ensembles using a Single Protein Spacer” Chem. Mater. 2005, 17, 6317-6322.

187) You, C.-C.; De, M.; Rotello, V. M. “Contrasting Effects of Exterior and Interior Hydrophobic Moieties in the Complexation of Amino Acid-Functionalized Gold Clusters with a -Chymotrypsin” Org Lett.,2005, 7, 5685-5687.

186) Shenhar, S.; Xu, H.; Frankamp, B. L.; Mates, T. E.; Sanyal, A.; Uzun, O.; Rotello, V. M. “Molecular Recognition in Structured Matrices: Control of Guest Localization in Block Copolymer Films” J. Am. Chem. Soc., 2005, 127, 16318-16324.

185) You, C.-C. De, M.; Rotello, V. M. “Monolayer-Protected Nanoparticle-Protein Interactions” Curr. Opin. Chem. Biol., 2005, 9, 639-646.

184) Han, G.; Chari, N. S.; Verma, A.; Hong, R.; Martin, C. T.; Rotello, V. M. “Controlled Recovery of the Transcription of Nanoparticle-Bound DNA by Intracellular Concentrations of Glutathione" Bioconjugate Chem. 2005, 16, 1356-1359.

183) Xu, H.; Norsten, T. B.; Uzun, Jeoung E.; Rotello, V. M. “Stimuli Responsive Surfaces through Recognition-Mediated Polymer Modification” Chem. Comm., 2005, 5157-5159.

182) Uzun, U.; Xu, H.; Jeoung, E.; Thibault, R. J.; Rotello, V. M. “Recognition-Induced Polymersomes: Structure and Mechanism of Formation” ” Chem. Eur. J.,2005, 11, 6916-6920.

181) Hong, R.; Fischer, N. O.; Emrick, T.; Rotello, V. M. “Surface PEGylation and Ligand Exchange Chemistry of FePt Nanoparticles for Biological Applications” Chem. Mat., 2005, 17, 10693-10698.

180) Shenhar, R.; Jeoung, E.; Srivastava, S.; Norsten, T. B.; Rotello, V. M. “Cross-Linked Nanoparticle Stripes and Hexagonal Networks Obtained Via Selective Patterning of Block Copolymer Thin Films” Adv. Mat., 2005, 17, 2206-2210.

179) You, C-C.; De, M.; Han, G.; Rotello, V. M. “Tunable Inhibition and Denaturation of a -Chymotrypsin with Amino Acid-Functionalized Gold Nanoparticles” J. Am. Chem. Soc., 2005, 127, 12873-12881.

178) Carroll, J. B.; Cooke, G.; Garety, J. F.; Jordan, B. J.; Mabruk, S ; Rotello, V. M. “The Electrochemically-Tuneable Interactions Between Flavin-Functionalised C(60) Derivatives and 2,6-Diethylamidopyridine” Chem. Comm.2005, 3838-3840.

177) Sandaraj, B. S.; Vutukuri D. H.; Simard, J. M.; Khalikerd, A.; Hong, R.; Rotello, V. M.; Thayumanavan, S. “Non-Covalent Modification of Protein Surface using Amphiphilic Polymeric Scaffold – Implications in Modulating Protein Function” J. Am. Chem. Soc., 2005, 127, 10693-10698.

176) Frankamp, B. L.; Boal, A. K.; Tuominen, M. T.; Rotello, V. M. “Direct Control of the Magnetic Interaction Between Superparamagnetic Nanoparticles Using Dendrimer Mediated Self-Assembly” J. Am. Chem. Soc., 2005, 127, 9731-9735.

175) Nakade, H.; Ilker, M. F.; Uzun, O.; LaPointe, N. L.; Coughlin, E. B.; Rotello V. M. “Duplex Strand Formation using Alternating Copolymers” Chem. Comm.2005, 3271-3273.

174) Carroll, J. B.; Jordan, B. J.; Xu, H.; Erdogan,. B.; Lee, L.; Cheng, L.; Tiernan, C.; Cooke, G.; Rotello, Vincent M. “Model Systems for Flavoenzyme Activity: Site Isolated Redox Behavior in Flavin Functionalized Random Polystyrene Copolymers” Org. Lett., 2005, 7, 10693-10698.

173) Simard, J. M.; Szymanski, B.; Rotello, V. M. “Control of Substrate Selectivity through Complexation and Release of Chymoptrypsin from Gold Nanoparticle Surfaces” J. Biomed. Nanotech., 2005, 1, 341-344.

172) Boyd, A. S. F.; Carroll, J. B.; Cooke, G.; Garety, J. F.; Jordan, B. J.; Mabruk, S.; Rosair, G.; Rotello, V. M. "Model systems for Flavoenzyme Activity: a Tuneable Intramolecularly Hydrogen Bonded Flavin-Diamidopyridine Complex" Chem. Comm. 2005, 2468-2470.

171) McCusker, C.; Carroll, J. B.; Rotello, V. M. “Cationic Polyhedral Oligomeric Silsesquioxane (POSS) Units as Carriers for Drug Delivery Processes” Chem. Comm., 2005, 996-998.

170) Simard, J. M.; Szymanski, B.; Rotello, V. M. “Reversible Regulation of Chymotrypsin Activity using Negatively Charged Gold Nanoparticles featuring Malonic Acid Termini” Med. Chem., 2005, 1, 153-158.

169) Shenhar, R.; Norsten, T. B.; Rotello, V. M. “Polymer-Mediated Nanoparticle Assembly: Structural Control and Applications” Adv. Mat., 2005, 17, 657-669.

168) Srivastava, S.; Frankamp, B. L.; Rotello, V. M. “Controlled Plasmon Resonance of Gold Nanoparticles Self-Assembled with PAMAM Dendrimers” Chem. Mat.2005, 17, 487-490.

167) Foster, P.; Lahti, P.M.; Carroll, J. B.; Rotello, V. M. “Molecular Recognition In a Uradinyl-Functionalized Stable Radical” Chem. Comm.2005, 895-897.

166) Arvizo, R.; Verma. A.; Rotello, V.M. “Biomacromolecule Surface Recognition Using Nanoparticle Receptors” Supramol. Chem. 2005, 17, 155-161.

165)Srivastava, S.; Verma, A.; Frankamp, B. L.; Rotello, V. M.; “Controlled Assembly of Protein-Nanoparticle Composites through Protein Surface Recognition” Adv. Mat., 2005, 617-621.

164) Verma, A.; Rotello, V.M. “Surface Recognition of Biomacromolecules Using Nanoparticle Receptors” Chem Comm., 2005, 301-312.

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