144
Views
22
CrossRef citations to date
0
Altmetric
Original Articles

Characterization of a novel self-association of an alternating copolymer into nanotubes in solution

, &
Pages 173-178 | Received 01 Apr 2004, Accepted 01 Oct 2004, Published online: 06 Aug 2006

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (3)

Kevin M. Conley, M. A. Whitehead & Theo G. M. van de Ven. (2019) Linear growth of self-assembled alternating oligopeptide nanotubes with self-locking building blocks. Molecular Simulation 45:7, pages 549-555.
Read now
Xia Li, Myron R Szewczuk & Cecile Malardier-Jugroot. (2016) Folic acid-conjugated amphiphilic alternating copolymer as a new active tumor targeting drug delivery platform. Drug Design, Development and Therapy 10, pages 4101-4110.
Read now
Anita S.W. Chan, Michael Groves & Cecile Malardier-Jugroot. (2011) Self-assembly of alternating copolymers and the role of hydrophobic interactions: characterisation by molecular modelling. Molecular Simulation 37:8, pages 701-709.
Read now

Articles from other publishers (19)

Shanlong Li, Rui Cui, Chunyang Yu & Yongfeng Zhou. (2022) Coarse-Grained Model of Thiol–Epoxy-Based Alternating Copolymers in Explicit Solvents. The Journal of Physical Chemistry B 126:8, pages 1830-1841.
Crossref
Kai Tu, Cheng Liu, Enjie He, Jiannan Cheng, Lifen Zhang & Zhenping Cheng. (2021) Reduction-Induced Crystallization-Driven Self-Assembly of Main-Chain-Type Alternating Copolymers: Transformation from 1D Lines to 2D Platelets. ACS Macro Letters 10:5, pages 564-569.
Crossref
Alexandria DeCarlo, Cecile Malardier-Jugroot & Myron R. Szewczuk. (2021) Folic Acid-Functionalized Nanomedicine: Folic Acid Conjugated Copolymer and Folate Receptor Interactions Disrupt Receptor Functionality Resulting in Dual Therapeutic Anti-Cancer Potential in Breast and Prostate Cancer. Bioconjugate Chemistry 32:3, pages 512-522.
Crossref
Qingsong Xu, Shanlong Li, Chunyang Yu & Yongfeng Zhou. (2019) Self‐assembly of Amphiphilic Alternating Copolymers. Chemistry – A European Journal 25:17, pages 4255-4264.
Crossref
Shanlong Li, Chuyang Yu & Yongfeng Zhou. (2018) Phase diagrams, mechanisms and unique characteristics of alternating-structured polymer self-assembly via simulations. Science China Chemistry 62:2, pages 226-237.
Crossref
Amir Sheikhi, Søren Leth MejlsøeNa Li, Enzo BomalTheo G. M. van de VenAshok Kakkar. (2018) Biomimetic dendrimers for mineralization: rare fibrous amorphous calcium carbonate (ACC) and branch-and-bud ACC–vaterite polymorphs. Materials Chemistry Frontiers 2:11, pages 2081-2090.
Crossref
Jing Huang & S. Richard Turner. (2017) Recent advances in alternating copolymers: The synthesis, modification, and applications of precision polymers. Polymer 116, pages 572-586.
Crossref
Eun Jung An & Kwang-Suk Jang. (2016) Diverse morphologies of self-aggregates from dodecyl chain grafted poly(2-hydroxyethyl aspartamide) in aqueous solution. Macromolecular Research 24:10, pages 887-891.
Crossref
Chih-Chia Huang & Tzu-Ming Liu. (2015) Controlled Au–Polymer Nanostructures for Multiphoton Imaging, Prodrug Delivery, and Chemo–Photothermal Therapy Platforms. ACS Applied Materials & Interfaces 7:45, pages 25259-25269.
Crossref
Jianxin Chen, Chunyang Yu, Zengqian Shi, Songrui Yu, Zhongyuan Lu, Wengfeng Jiang, Meng Zhang, Wei He, Yongfeng Zhou & Deyue Yan. (2015) Ultrathin Alternating Copolymer Nanotubes with Readily Tunable Surface Functionalities. Angewandte Chemie International Edition 54:12, pages 3621-3625.
Crossref
Jianxin Chen, Chunyang Yu, Zengqian Shi, Songrui Yu, Zhongyuan Lu, Wengfeng Jiang, Meng Zhang, Wei He, Yongfeng Zhou & Deyue Yan. (2015) Ultrathin Alternating Copolymer Nanotubes with Readily Tunable Surface Functionalities. Angewandte Chemie 127:12, pages 3692-3696.
Crossref
Xia Li & Cecile Malardier-Jugroot. (2013) Confinement Effect in the Synthesis of Polypyrrole within Polymeric Templates in Aqueous Environments. Macromolecules 46:6, pages 2258-2266.
Crossref
Gilles R. Bourret & R. Bruce Lennox. (2010) Potential Controlled Electrochemical Conversion of AgCN and Cu(OH) 2 Nanofibers into Metal Nanoparticles, Nanoprisms, Nanofibers, and Porous Networks . ACS Applied Materials & Interfaces 2:12, pages 3745-3758.
Crossref
Chung-Tin Lai & Jin-Long Hong. (2009) Role of Concentration on the Formulation of Zinc Oxide Nanorods from Poly(styrene- alt -maleic acid) Template . The Journal of Physical Chemistry C 113:43, pages 18578-18583.
Crossref
Thomas D. Lazzara, Michael A. Whitehead & Theo G.M. van de Ven. (2009) Linear nano-templates of styrene and maleic anhydride alternating copolymers. European Polymer Journal 45:7, pages 1883-1890.
Crossref
Thomas D. Lazzara, Gilles R. Bourret, R. Bruce Lennox & Theo G. M. van de Ven. (2009) Polymer Templated Synthesis of AgCN and Ag Nanowires. Chemistry of Materials 21:10, pages 2020-2026.
Crossref
Thomas D. Lazzara, Theo G. M. van de Ven & M. A. (Tony) Whitehead. (2008) Nanotube Self-Assembly of a Styrene and Maleimide Alternating Copolymer. Macromolecules 41:18, pages 6747-6751.
Crossref
Thomas D. Lazzara, Michael A. Whitehead & Theo G. M. van de Ven. (2008) Effect of Chirality on π-Stacking in Styrene and Maleimide Alternating Copolymers. The Journal of Physical Chemistry B 112:16, pages 4892-4899.
Crossref
C. Malardier-Jugroot, T. G. M. van de Ven & M. A. Whitehead. (2005) Linear Conformation of Poly(styrene- a lt -maleic anhydride) Capable of Self-Assembly:  A Result of Chain Stiffening by Internal Hydrogen Bonds . The Journal of Physical Chemistry B 109:15, pages 7022-7032.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.