2006
DOI: 10.1002/anie.200502517
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Reactive Polymers: A Versatile Toolbox for the Immobilization of Functional Molecules on TiO2 Nanoparticles

Abstract: Three in one: TiO2 nanoparticles have been functionalized with reactive polymeric ligands that incorporate chelating dopamine anchor groups, a modifying unit to allow the binding of functional molecules such as fluorescent dyes (see picture), as well as groups to tailor the solubility of the inorganic nanocrystals in different solvents.

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Cited by 96 publications
(61 citation statements)
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“…The reactive ester groups of this monomer are known to react with any primary amine. [16] At least the polymer to ) belonging to the pentaflouroacrylate disappears after stirring the dissolved polymer with an excess of the amine containing anchor group. After conversion an absorption at 1 647 cm À1 can be detected showing the formation of an amide bond.…”
Section: Resultsmentioning
confidence: 99%
“…The reactive ester groups of this monomer are known to react with any primary amine. [16] At least the polymer to ) belonging to the pentaflouroacrylate disappears after stirring the dissolved polymer with an excess of the amine containing anchor group. After conversion an absorption at 1 647 cm À1 can be detected showing the formation of an amide bond.…”
Section: Resultsmentioning
confidence: 99%
“…Synthesis of Poly(pentafluoro-phenylacrylate) (PFA): PFA was prepared as reported previously [13]. Gel permeation chromatography analysis (tetrahydrofuran, light scattering detection) gave a numberaverage molar mass of M n ¼ 29.…”
Section: Methodsmentioning
confidence: 99%
“…We synthesized a statistical copolymer whose structure and functionality can be tailored. [13] The copolymer contains amino-terminated side groups and catechol groups. The catechol groups are capable of binding to minerals, metals, and metal oxides.…”
mentioning
confidence: 99%
“…The block-copolymers needed for the surface modification are prepared mostly by RAFT polymerization [129] via a reactive ester intermediate. [130] The reactive ester allows the incorporation of various anchor groups, [125,130] which permit a coating of oxidic as well as sulfidic nanostructures (see Figure 18). [125,128c] The concept of solubilizing inorganic nanorods can be extended to nanorods made from ZnO, W. Pisula, M. Zorn, J. Y. Chang, K. Müllen, R. Zentel Figure 17.…”
Section: Lc-phases From Inorganic Nanorodsmentioning
confidence: 99%