Aurate(1-),tetrachloro-, hydrogen, tetrahydrate, (SP-4-1)- (9CI)

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CAS: 1303-50-0
MF: Cl4Au-
MW: 338.779
Synonyms: Aurate(1-),tetrachloro-, hydrogen, tetrahydrate, (SP-4-1)- (9CI)

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Yanlin Song

Institute of Chemistry, Chinese Academy of Sciences
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GuoBao Xu

Changchun Institute of Applied Chemistry, Chinese Academy of Sciences
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Zhuang Li

Chinese Academy of Sciences
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Yong Chen

Nankai Univerisity
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Yu Liu

Nankai University
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Hanying Zhao

Nankai University
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Co-reporter: Xueming Lian, Jie Jin, Jia Tian and Hanying Zhao
pp: 2261
Publication Date(Web):July 29, 2010
DOI: 10.1021/am1003156
Thermoresponsive nanohydrogels cross-linked by gold nanoparticles (AuNPs) were prepared by 1,3-dipolar cycloaddition reactions and in situ reversible addition−fragmentation chain-transfer (RAFT) polymerization. In order to synthesize thermoresponsive nanohydrogels, AuNPs decorated with azide groups (AuNPs-N3) were prepared through ligand exchange. Click reactions between AuNPs-N3 and dialkynetrithiocarbonate yielded cross-linked AuNP aggregates. The size and cross-linking density of AuNP aggregates increased with the molar ratio of acetylene groups to azide groups. After click reactions, the absorption maximum of the plasmon band of AuNPs red-shifted to a long wavelength. Thermoresponsive nanohydrogels were prepared by in situ RAFT polymerization of N-isopropylacrylamide (NIPAM) using trithiocarbonate in the cross-linked AuNP aggregates as chain-transfer agents. The thermoresponsive nanohydrogels presented a low critical solution temperature at around 32 °C due to the “coil-to-globule” transition of connecting PNIPAM chains in the nanohydrogels. The size of the thermoresponsive nanohydrogels was determined by the molar ratio of acetylene groups to azide groups.Keywords: click reaction; gold nanoparticles; nanohydrogel; RAFT polymerization

Shengli Chen

Wuhan University
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Baizhao Zeng

Wuhan University
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Faqiong Zhao

Wuhan University
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Shen Aiguo

Wuhan University
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