2,475
Views
6
CrossRef citations to date
0
Altmetric
Articles

A CO2-switchable amidine monomer: synthesis and characterization

, &
Pages 363-367 | Received 25 Oct 2016, Accepted 03 Dec 2016, Published online: 26 Dec 2016

References

  • Darabi A, Jessop PG, Cunningham MF. CO2-responsive polymeric materials: synthesis, self-assembly, and functional applications. Chem Soc Rev. 2016;45:4391–4436.10.1039/C5CS00873E
  • Yan Q, Zhao Y. Block copolymer self-assembly controlled by the “green” gas stimulus of carbon dioxide. Chem Commun. 2014;50:11631–11641.10.1039/C4CC03412K
  • Lin S, Theato P. CO2-responsive polymers. Macromol Rapid Commun. 2013;34:1118–1133.10.1002/marc.201300288
  • Liu H, Lin S, Feng Y, et al. CO2-responsive polymer materials. Polym Chem. 2017. doi:10.1039/C6PY01101B.
  • Liu YX, Jessop PG, Cunningham M, et al. Switchable surfactants. Science. 2006;313:958–960.10.1126/science.1128142
  • Yan Q, Zhao Y. CO2-stimulated diversiform deformations of polymer assemblies. J Am Chem Soc. 2013;135:16300–16303.10.1021/ja408655n
  • Che N, Yang S, Kang H, et al. Synthesis and properties of CO2-switchable Dex-g-PAHMA copolymers. Polym Chem. 2014;5:7109–7120.10.1039/C4PY00987H
  • Guo ZR, Feng YJ, Wang Y, et al. A novel smart polymer responsive to CO2. Chem Commun. 2011;47:9348–9350.10.1039/c1cc12388b
  • Guo ZR, Feng YJ, He S, et al. CO2-responsive “smart” single-walled carbon nanotubes. Adv Mater. 2013;25:584–590.10.1002/adma.201202991
  • Quek JY, Roth PJ, Evans RA, et al. Reversible additio-fragmentation chain transfer synthesis of amidine-based, CO2-responsive homo and AB diblock (Co) polymers comprised of histamine and their gas-triggered self-assembly in water. J Polym Sci Part A Polym Chem. 2013;51:394–404.10.1002/pola.26397
  • Yan Q, Zhou R, Fu C, et al. CO2-responsive polymeric vesicles that breathe. Angew Chem Int Ed. 2011;50:4923–4927.10.1002/anie.v50.21
  • Yan Q, Wang J, Yin Y, et al. Breathing polymersomes: CO2-tuning membrane permeability for size-selective release, separation, and reaction. Angew Chem Int Ed. 2013;52:5070–5073.10.1002/anie.201300397
  • Zhang Q, Yu G, Wang W-J, et al. Preparation of N2/CO2 triggered reversibly coagulatable and redispersible latexes by emulsion polymerization of styrene with a reactive switchable surfactant. Langmuir. 2012;28:5940–5946.10.1021/la300051w
  • Ma Y, Yung L-YL. Detection of dissolved CO2 based on the aggregation of gold nanoparticles. Anal. Chem. 2014;86:2429–2435.10.1021/ac403256s
  • Han D, Tong X, Boissière O, et al. General strategy for making CO2-switchable polymers. ACS Macro Lett. 2011;1:57–61.
  • Zhang JM, Han DH, Zhang HJ, et al. In situ recyclable gold nanoparticles using CO2-switchable polymers for catalytic reduction of 4-nitrophenol. Chem Commun. 2012;48:11510–11512.10.1039/c2cc35784d
  • Kumar S, Tong X, Dory YL, et al. A CO2-switchable polymer brush for reversible capture and release of proteins. Chem Commun. 2013;49:90–92.10.1039/C2CC36284H
  • Han D, Boissiere O, Kumar S, et al. Two-way CO2-switchable triblock copolymer hydrogels. Macromolecules. 2012;45:7440–7445.10.1021/ma3015189
  • Convertine AJ, Benoit DSW, Duvall CL, et al. Development of a novel endosomolytic diblock copolymer for siRNA delivery. J. Control Release. 2009;133:221–229.10.1016/j.jconrel.2008.10.004
  • Xu XW, Smith AE, Kirkland SE, et al. Aqueous RAFT synthesis of pH-responsive triblock copolymer mPEO-PAPMA-PDPAEMA and formation of shell cross-linked Micelles. Macromolecules. 2008;41:8429–8435.10.1021/ma801725w
  • Jessop PG, Heldebrant DJ, Li X, et al. Green chemistry: reversible nonpolar-to-polar solvent. Nature. 2005;436:1102-1102.10.1038/4361102a
  • Allen MH Jr, Hemp ST, Smith AE, et al. Controlled radical polymerization of 4-vinylimidazole. Macromolecules. 2012;45:3669–3676.10.1021/ma300543h