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B. Zhou, Jun Gao, Zhibing Hu (2007)
Robust polymer gel opals – An easy approach by inter-sphere cross-linking gel nanoparticle assembly in acetonePolymer, 48
P. Calvert (2009)
Hydrogels for Soft MachinesAdvanced Materials, 21
K. Matsubara, M. Watanabe, Y. Takeoka (2007)
A thermally adjustable multicolor photochromic hydrogel.Angewandte Chemie, 46 10
Fang Liu, M. Urban (2010)
Recent advances and challenges in designing stimuli-responsive polymersProgress in Polymer Science, 35
Zhuang Liu, J. Robinson, Xiaoming Sun, H. Dai (2008)
PEGylated nanographene oxide for delivery of water-insoluble cancer drugs.Journal of the American Chemical Society, 130 33
J. Oh, R. Drumright, D. Siegwart, K. Matyjaszewski (2008)
The development of microgels/nanogels for drug delivery applicationsProgress in Polymer Science, 33
S. Stankovich, D. Dikin, G. Dommett, K. Kohlhaas, E. Zimney, E. Stach, R. Piner, S. Nguyen, R. Ruoff (2006)
Graphene-based composite materialsNature, 442
P. Gupta, K. Vermani, S. Garg (2002)
Hydrogels: from controlled release to pH-responsive drug delivery.Drug discovery today, 7 10
H. Bai, Chun Li, Xiaolin Wang, G. Shi (2010)
A pH-sensitive graphene oxide composite hydrogel.Chemical communications, 46 14
Xiaoling Li, Xinran Wang, Li Zhang, Sangwon Lee, H. Dai (2008)
Chemically Derived, Ultrasmooth Graphene Nanoribbon SemiconductorsScience, 319
M. Stoller, Sungjin Park, Yanwu Zhu, J. An, R. Ruoff (2008)
Graphene-based ultracapacitors.Nano letters, 8 10
D. Schmaljohann (2006)
Thermo- and pH-responsive polymers in drug delivery.Advanced drug delivery reviews, 58 15
K. Kudin, B. Ozbas, H. Schniepp, R. Prud’homme, I. Aksay, R. Car (2008)
Raman spectra of graphite oxide and functionalized graphene sheets.Nano letters, 8 1
Sheng-Zhen Zu, Bao-Hang Han (2009)
Aqueous Dispersion of Graphene Sheets Stabilized by Pluronic Copolymers: Formation of Supramolecular HydrogelJournal of Physical Chemistry C, 113
Lay-Theng Lee, B. Cabane (1997)
Effects of surfactants on thermally collapsed Poly(N-isopropylacrylamide) macromoleculesMacromolecules, 30
K. Novoselov, A. Geim, S. Morozov, D. Jiang, M. Katsnelson, I. Grigorieva, S. Dubonos, A. Firsov (2005)
Two-dimensional gas of massless Dirac fermions in grapheneNature, 438
K. Novoselov, A.K. Geim, S. Morozov, D. Jiang, Y. Zhang, S. Dubonos, I. Grigorieva, A. Firsov (2004)
Electric Field Effect in Atomically Thin Carbon FilmsScience, 306
Zhibing Hu (2004)
Nanostructured polymer gelsMacromolecular Symposia, 207
Jinbin Liu, Yulin Li, Yueming Li, Jinghong Li, Z. Deng (2010)
Noncovalent DNA decorations of graphene oxide and reduced graphene oxide toward water-soluble metal–carbon hybrid nanostructures via self-assemblyJournal of Materials Chemistry, 20
C. Paquet, E. Kumacheva (2008)
Nanostructured polymers for photonicsMaterials Today, 11
Franklin Kim, Laura Cote, Jiaxing Huang (2010)
Graphene Oxide: Surface Activity and Two‐Dimensional AssemblyAdvanced Materials, 22
K. Lee, D. Mooney (2001)
Hydrogels for tissue engineering.Chemical reviews, 101 7
Chi Wu, Shuiqin Zhou (1996)
Effects of Surfactants on the Phase Transition of Poly(N-isopropylacrylamide) in WaterJournal of Polymer Science Part B, 34
V. Alzari, A. Mariani, O. Monticelli, L. Valentini, Daniele Nuvoli, M. Piccinini, Sergio Scognamillo, S. Bon, J. Illescas (2010)
Stimuli-responsive polymer hydrogels containing partially exfoliated graphiteJournal of Polymer Science Part A, 48
Yuxi Xu, Qiongyu Wu, Yiqing Sun, H. Bai, G. Shi (2010)
Three-dimensional self-assembly of graphene oxide and DNA into multifunctional hydrogels.ACS nano, 4 12
Xiaoying Yang, Xiaoyan Zhang, Zunfeng Liu, Yanfeng Ma, Yi Huang, Yongsheng Chen (2008)
High-Efficiency Loading and Controlled Release of Doxorubicin Hydrochloride on Graphene OxideJournal of Physical Chemistry C, 112
J. Holtz, S. Asher (1997)
Polymerized colloidal crystal hydrogel films as intelligent chemical sensing materialsNature, 389
V. Sridhar, I. Oh (2010)
A coagulation technique for purification of graphene sheets with graphene-reinforced PVA hydrogel as byproduct.Journal of colloid and interface science, 348 2
Y. Osada, H. Okuzaki, Hirofumi Hori (1992)
A polymer gel with electrically driven motilityNature, 355
K. Raemdonck, J. Demeester, S. Smedt (2009)
Advanced nanogel engineering for drug deliverySoft Matter, 5
Zhibing Hu, Xihua Lu, Jun Gao, C. Wang (2000)
Polymer Gel Nanoparticle NetworksAdvanced Materials, 12
Y. Osada, J. Gong (1993)
Stimuli-responsive polymer gels and their application to chemomechanical systemsProgress in Polymer Science, 18
Justin Debord, L. Lyon (2000)
Thermoresponsive Photonic CrystalsJournal of Physical Chemistry B, 104
Shuiqin Zhou, B. Chu (1998)
Synthesis and Volume Phase Transition of Poly(methacrylic acid-co-N-isopropylacrylamide) Microgel Particles in WaterJournal of Physical Chemistry B, 102
A facile one-step strategy for graphene oxide interpenetrating PNIPAM hydrogel networks is developed by covalently bonding GO sheets and PNIPAM-co-AA microgels directly in water, which exhibit dual thermal and pH response with good reversibility.
Journal of Materials Chemistry – Royal Society of Chemistry
Published: Mar 8, 2011
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