Direct Synthesis of Polymer Nanocapsules with a Noncovalently Tailorable Surface

Hollow out your pumpkin: The direct synthesis of approximately 100‐nm‐diameter polymer nanocapsules was carried out in the absence of preorganized structures or templates. The method appears to be applicable to any monomer that has a flat core and multiple polymerizable groups at the periphery (see...

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Veröffentlicht in:Angewandte Chemie International Edition 2007-01, Vol.46 (19), p.3471-3474
Hauptverfasser: Kim, Dongwoo, Kim, Eunju, Kim, Jeeyeon, Park, Kyeng Min, Baek, Kangkyun, Jung, Minseon, Ko, Young Ho, Sung, Wokyung, Kim, Hyung Seok, Suh, Ju Hyung, Park, Chan Gyung, Na, Oh Sung, Lee, Dong-ki, Lee, Kyung Eun, Han, Sung Sik, Kim, Kimoon
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container_end_page 3474
container_issue 19
container_start_page 3471
container_title Angewandte Chemie International Edition
container_volume 46
creator Kim, Dongwoo
Kim, Eunju
Kim, Jeeyeon
Park, Kyeng Min
Baek, Kangkyun
Jung, Minseon
Ko, Young Ho
Sung, Wokyung
Kim, Hyung Seok
Suh, Ju Hyung
Park, Chan Gyung
Na, Oh Sung
Lee, Dong-ki
Lee, Kyung Eun
Han, Sung Sik
Kim, Kimoon
description Hollow out your pumpkin: The direct synthesis of approximately 100‐nm‐diameter polymer nanocapsules was carried out in the absence of preorganized structures or templates. The method appears to be applicable to any monomer that has a flat core and multiple polymerizable groups at the periphery (see picture). The surface properties of the polymer shell, which comprises cucurbituril, can be easily tailored through host–guest chemistry.
doi_str_mv 10.1002/anie.200604526
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subjects Capsules - chemical synthesis
cucurbituril
Drug Carriers - chemical synthesis
host-guest systems
Humans
KB Cells - cytology
KB Cells - pathology
Microscopy, Electron, Scanning
Microscopy, Electron, Transmission
Nanocapsules - chemistry
nanostructures
Particle Size
polymers
Polymers - chemical synthesis
supramolecular chemistry
Surface Properties
title Direct Synthesis of Polymer Nanocapsules with a Noncovalently Tailorable Surface
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