Dual thermo-responsive polyrotaxane-based triblock copolymers synthesized viaATRP of N-isopropylacrylamide initiated with self-assemblies of Br end-capped Pluronic F127 with β-cyclodextrins
Literature Information
Jin Wang, Peng Gao, Lin Ye, Ai-ying Zhang, Zeng-guo Feng
Dual thermo-responsive polyrotaxane (PR)-based triblock copolymers were synthesized via the atom transfer radical polymerization (ATRP) of N-isopropylacrylamide (NIPAAm) initiated with self-assemblies made from a distal 2-bromopropionyl end-capped Pluronic F127 with a varying amount of β-cyclodextrins (β-CDs) in the presence of Cu(I)Cl/N,N,N′,N′′,N′′- pentamethyldiethylenetriamine at 25 °C in aqueous medium. The structure of the copolymers was characterized in detail by means of 1H NMR, GPC, FTIR, and XRD analyses. The number of entrapped β-CDs and the degree of polymerization (DP) of attached NIPAAm oligomers appeared to be tunable. A two-step thermo-responsive transition arisen from a combination of a polypseudorotaxane middle block and poly(N-isopropylacrylamide) (PNIPAAm) flanking blocks was demonstrated by turbidity measurements. The number of entrapped β-CDs and DP of PNIPAAm are crucial for this dual thermo-responsive transition. The aggregates of one selected PR-based triblock copolymer were evidenced by TEM observations exhibiting a morphology change from core-shell particles to worm-like aggregates with increasing temperature. Furthermore, this sample can encapsulate and separate a negatively charged dye Coomassie Brilliant Blue G-250 from the aqueous solution when heated up to its deposition temperature.
Recommended Journals

Faraday Discussions

Photochemical & Photobiological Sciences

Angewandte Chemie International Edition

Green Chemistry

Physical Chemistry Chemical Physics

Molecular Diversity

European Journal of Organic Chemistry

Journal of Medical Biochemistry

Nature Reviews Drug Discovery

Current Pharmaceutical Biotechnology
Related Literature
Cryogenic abnormal thermal expansion properties of carbon-doped La(Fe,Si)13 compounds
Rongjin Huang, Wei Wang, Laifeng Li
DOI: 10.1039/C5CP03948G
Vibronic couplings and coherent electron transfer in bridged systems
Raffaele Borrelli, Amedeo Capobianco, Alessandro Landi, Andrea Peluso
DOI: 10.1039/C5CP01190F
Protein motions and dynamic effects in enzyme catalysis
Louis Y. P. Luk, E. Joel Loveridge, Rudolf K. Allemann
DOI: 10.1039/C5CP00794A
Characterizing the nanoclay induced constrained amorphous region in model segmented polyurethane–urea/clay nanocomposites and its implications on gas barrier properties
Sangram K. Rath, Kathi Sudarshan, Rupesh S. Bhavsar, Ulhas K. Kharul, Pradeep K. Pujari, Manoranjan Patri, Devang V. Khakhar
DOI: 10.1039/C5CP05260B
Solvent-shared pairs of densely charged ions induce intense but short-range supra-additive slowdown of water rotation
Ana Vila Verde, Mark Santer, Reinhard Lipowsky
DOI: 10.1039/C5CP05726D
Fmoc–RGDS based fibrils: atomistic details of their hierarchical assembly
David Zanuy, Jordi Poater, Miquel Solà, Ian W. Hamley
DOI: 10.1039/C5CP04269K
Long term puzzles of the CH and CD energetics and related phenomena revisited; solutions sought through REMPI-photofragmentations of bromomethanes
Arnar Hafliðason, Huasheng Wang, Ágúst Kvaran
DOI: 10.1039/C5CP06097D
Probing the dynamics of highly excited toluene on the fs timescale
C. C. Papadopoulou, S. Kaziannis, C. Kosmidis
DOI: 10.1039/C5CP04346H
Photoelectron spectroscopy and density functional calculations of CnSm− (n = 2–7; m = 1, 2) clusters
Xi-Ling Xu, Xiao-Jiao Deng, Hong-Guang Xu, Wei-Jun Zheng
DOI: 10.1039/C5CP04482K
You might also like
What is 3-Fluoro-2-methylbenzylamine (CAS: 771573-36-5)?
3-Fluoro-2-methylbenzylamine is an organic compound with the CAS number 771573-3...
Is Tert-butyl 2-(oxetan-3-ylidene)acetate (CAS: 1207175-03-8) safe?
Tert-butyl 2-(oxetan-3-ylidene)acetate is considered safe for its intended uses ...
What precautions should be taken when handling 4-Acetyl-2-fluorobenzonitrile (CAS: 214760-18-6)?
Proper personal protective equipment (PPE) such as gloves, goggles, and a lab co...
How is 2-Ethyl-4-methyl-1,3-thiazole (CAS: 15679-12-6) typically synthesized?
2-Ethyl-4-methyl-1,3-thiazole is commonly synthesized via the reaction of thiour...
How should 5',5''-([2,2'-Bithiophene]-5,5'-diyl)bis(([1,1':3',1''-terphenyl]-4,4''-dicarboxylic acid)) (CAS: 1227780-71-3) be stored?
This compound should be stored in a cool, dry place away from direct sunlight an...
What regulatory guidelines apply to L-Lysine Acetate Salt (CAS: 52315-92-1)?
L-Lysine Acetate Salt (CAS: 52315-92-1) is subject to various regulatory guideli...
Is 6-Fluoro-3-hydroxy-2-pyrazinecarboxamide (CAS: 259793-96-9) safe?
6-Fluoro-3-hydroxy-2-pyrazinecarboxamide (CAS: 259793-96-9) is generally conside...
What are the physical and chemical properties of 1,1'-Sulfonylbis(1H-imidazole) (CAS: 7189-69-7)?
1,1'-Sulfonylbis(1H-imidazole) is a crystalline solid with a molecular weight of...
What industries use 4-methyl-7-nitro-1H-indole-3-carbonitrile (CAS: 289483-82-5)?
4-Methyl-7-nitro-1H-indole-3-carbonitrile (CAS: 289483-82-5) is primarily used i...
How should waste containing 5-Bromo-3-indolyl-beta-galactoside (CAS: 97753-82-7) be handled?
Waste containing 5-Bromo-3-indolyl-beta-galactoside (CAS: 97753-82-7) should be ...
Source Journal
Polymer Chemistry

Polymer Chemistry welcomes submissions in all areas of polymer science that have a strong focus on macromolecular chemistry. Manuscripts may cover a broad range of fields, yet no direct application focus is required.


![2-[({[(2-Methyl-2-propanyl)oxy]carbonyl}amino)methyl]isonicotinic acid structure 2-[({[(2-Methyl-2-propanyl)oxy]carbonyl}amino)methyl]isonicotinic acid structure](https://static.chemtradehub.com/structs/473/473924-63-9-973b.webp)

