Transition of Morphology between Nanosheet and Nanosphere of Ternary Comb Copolymers with Hydrophobic Carbazole Ring Induced by Changes in Surface Pressure

Authors

  • Atsuhiro Fujimori

  • Yohei Kenko

  • Yohei Kenko

organized molecular films, ternary comb copolymer, fluorocarbon, hydrocarbon, n-vinyl carbazole

Abstract

Transition behavior from monolayer on the water surface to single particle layer of ternary comb copolymer containing carbazole ring have investigated by surface pressure-area isotherm, atomic force microscopy, X-ray diffraction. This polymer monolayer is able to form the "polymer nanosheet" with amorphous layers and strong interaction between main-chains fabricated by a Langmuir-Blodgett (LB) technique. Further, single particle layer is able to form the multi-particle layered organization of "polymer nanosphere" by LB method. This ternary comb copolymer synthesized by radical copolymerization with hydrogenated and fluorinated long-chain vinyl compounds. Poly(N-vinylcarbazole) homopolymer formed single particle layer on the water surface after spreading, immediately. Spontaneous "particulation" behavior is accelerated by incorporation of carbazole units in ternary copolymer films. Monolayer of these copolymers on the water surface formed below 10 mN m-1, and this monolayer transited to single particle layer above 15 mN m-1.

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How to Cite

Transition of Morphology between Nanosheet and Nanosphere of Ternary Comb Copolymers with Hydrophobic Carbazole Ring Induced by Changes in Surface Pressure. (2014). Global Journal of Science Frontier Research, 14(B1), 1-5. https://journalofscience.org/index.php/GJSFR/article/view/1073

References

Jr Gaines (1966) Insoluble Monolayers at Liquid Gas Interfaces.

H Kuhn, D Möbius, H Bucher (1972) Spectroscopy of Monolayer Assemblies. 1, 577-702.

Abraham Ulman (1991) LANGMUIR-BLODGETT FILMS. 101-236.

A Keller (1957) Unknown Title. 2, 1171.

Dorota Neugebauer, Matthieu Theis, Tadeusz Pakula, Gerhard Wegner, Krzysztof Matyjaszewski (2006) Densely Heterografted Brush Macromolecules with Crystallizable Grafts. Synthesis and Bulk Properties. 39(2), 584-593.

A Vand (1951) Unknown Title. 4, 465.

G Baskar, S Ramya, A Mandal (2002) Laudation for Ron Ottewill. 280(10), 877-878.

J Pearson, M Stolka (1981) Poly(N-vinyl carbazole). 6.

Kaushik Choudhury, Marek Samoc, Amitava Patra, Paras Prasad (2004) Charge Carrier Transport in Poly(N-vinylcarbazole):CdS Quantum Dot Hybrid Nanocomposite. 108(5), 1556-1562.

M Laguna, Javier Gallego, Francisco Mendicuti, Enrique Saiz, M Tarazona (2006) Solution Properties of Poly(N-vinylcarbazole) and Its Copolymers with Methyl Methacrylate. 35(20), 7782-7790.

C Maertens, P Dubois, R Jerome, P Blanche, P Lemaire (2000) Unknown Title. 38(1), 205.

R Masuya, N Ninomiya, A Fujimori, H Nakahara, T Masuko (2006) Unknown Title. 44, 416.

A Fujimori, H Hoshizawa, S Kobayashi, N Sato, K Kanai, Y Ouchi (2010) Unknown Title. 114.

Turner Alfrey, Charles Price (1947) Relative reactivities in vinyl copolymerization. 2(1), 101-106.

Atsuhiro Fujimori, Yohei Kaneko, Takahiro Kikkawa, Satoshi Chiba, Yuji Shibasaki (2014) Fabrication and structure of "polymer nanosphere multilayered organization". 418, 338-349.

Y Kaneko, A Fujimori (2012) Unknown Title. 41, 1183.

Y Kaneko, A Fujimori (2012) Unknown Title. 37, 291.

multi-particle layered organization of same materials.

Transition of Morphology between Nanosheet and Nanosphere of Ternary Comb Copolymers with Hydrophobic Carbazole Ring Induced by Changes in Surface Pressure

Published

2014-03-07

How to Cite

Transition of Morphology between Nanosheet and Nanosphere of Ternary Comb Copolymers with Hydrophobic Carbazole Ring Induced by Changes in Surface Pressure. (2014). Global Journal of Science Frontier Research, 14(B1), 1-5. https://journalofscience.org/index.php/GJSFR/article/view/1073