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Focus Papers

Magnetic alignment and patterning of cellulose fibers

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Article: 024212 | Received 26 Nov 2007, Accepted 25 Dec 2007, Published online: 20 May 2008

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Shigeru Horii, Atsushi Ishihara, Takayuki Fukushima, Tetsuo Uchikoshi, Hiraku Ogino, Tohru S Suzuki, Yoshio Sakka, Jun-ichi Shimoyama & Kohji Kishio. (2009) Magnetic orientation and magnetic anisotropy in paramagnetic layered oxides containing rare-earth ions. Science and Technology of Advanced Materials 10:1.
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Yuka Takeuchi, Atom Hamasaki, Hideki Kawaguchi & Mizushi Matsuda. (2023) Light scattering properties of cellulose microcrystals from multiple angles under a magnetic field. International Journal of Applied Electromagnetics and Mechanics 71, pages S321-S327.
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Guillermo Reyes, Rubina Ajdary, Esko Kankuri, Joice J. Kaschuk, Harri Kosonen & Orlando J. Rojas. (2023) Cellulose gelation in NaOH(aq) by CO2 absorption: Effects of holding time and concentration on biomaterial development. Carbohydrate Polymers 302, pages 120355.
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Cédric De Schryver, Dries Vanoost, Bart Buffel, Davy Pissoort & Frederik Desplentere. (2022) Magnetic manipulation of discontinuous ferromagnetic fibers in viscous fluids: Dynamics of single fiber alignment. Polymer Composites 43:12, pages 8947-8955.
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Dan Qu, Orlando J. Rojas, Bing Wei & Eyal Zussman. (2022) Responsive Chiral Photonic Cellulose Nanocrystal Materials. Advanced Optical Materials 10:22.
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Yuka Takeuchi, Hideki Kawaguchi, Mizushi Matsuda & Atom Hamasaki. (2021) Development of a quadrupole magnet for a mechanical-part-free rotational magnetic field. Applied Physics Express 14:5, pages 057002.
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Kai Li, Caitlyn M. Clarkson, Lu Wang, Yu Liu, Meghan Lamm, Zhenqian Pang, Yubing Zhou, Ji Qian, Mehdi Tajvidi, Douglas J. Gardner, Halil Tekinalp, Liangbing Hu, Teng Li, Arthur J. Ragauskas, Jeffrey P Youngblood & Soydan Ozcan. (2021) Alignment of Cellulose Nanofibers: Harnessing Nanoscale Properties to Macroscale Benefits. ACS Nano 15:3, pages 3646-3673.
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Vo Minh Quan, Bin Li & Prakit Sukyai. (2020) Bacterial cellulose modification using static magnetic field. Cellulose 27:10, pages 5581-5596.
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Ivan Lopez, Hammad Younes, Saif Almheiri, Amal Al Ghaferi & Rashid Abu Al-Rub. (2020) Highly electrically conductive carbon nanostructured mats fabricated out of aligned CNTs-based flakes. Diamond and Related Materials 106, pages 107849.
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Yuka Takeuchi, Yuri Mizukawa, Mizushi Matsuda, Masakazu Iwasaka & Atom Hamasaki. (2019) Improving detection sensitivity using magnetic orientation and polarization in microcrystals with optical anisotropy. Japanese Journal of Applied Physics 58:9, pages 090902.
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Bruno Frka-Petesic, Gen Kamita, Giulia Guidetti & Silvia Vignolini. (2019) Angular optical response of cellulose nanocrystal films explained by the distortion of the arrested suspension upon drying. Physical Review Materials 3:4.
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A. I. Stankiewicz. 2018. Intensification of Biobased Processes. Intensification of Biobased Processes 488 506 .
Richard M. Parker, Giulia Guidetti, Cyan A. Williams, Tianheng Zhao, Aurimas Narkevicius, Silvia Vignolini & Bruno Frka‐Petesic. (2017) The Self‐Assembly of Cellulose Nanocrystals: Hierarchical Design of Visual Appearance. Advanced Materials 30:19.
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Jaehwan Kim, Hyun Chan Kim, Lindong Zhai, Jinmo Kang, Sunanda Roy & Le Van Hai. (2018) Alignment of cellulose nanofibers by high-DC magnetic field. Alignment of cellulose nanofibers by high-DC magnetic field.
Noor Smal & Dennis W.P.M. Löwik. 2018. Self-assembling Biomaterials. Self-assembling Biomaterials 321 340 .
Bruno Frka‐Petesic, Giulia Guidetti, Gen Kamita & Silvia Vignolini. (2017) Controlling the Photonic Properties of Cholesteric Cellulose Nanocrystal Films with Magnets. Advanced Materials 29:32.
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Hyun Chan KimJinmo KangJung Ho ParkAsma AktherJaehwan Kim. Feasibility study of cellulose nanofiber alignment by high DC magnetic field. Feasibility study of cellulose nanofiber alignment by high DC magnetic field.
Bruno Frka-Petesic, Junji Sugiyama, Satoshi Kimura, Henri Chanzy & Georg Maret. (2015) Negative Diamagnetic Anisotropy and Birefringence of Cellulose Nanocrystals. Macromolecules 48:24, pages 8844-8857.
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Dah Hee Kim & Young Seok Song. (2015) Rheological behavior of cellulose nanowhisker suspension under magnetic field. Carbohydrate Polymers 126, pages 240-247.
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Yoshiyuki Nishio, Junichi Sato & Kazuki Sugimura. 2016. Cellulose Chemistry and Properties: Fibers, Nanocelluloses and Advanced Materials. Cellulose Chemistry and Properties: Fibers, Nanocelluloses and Advanced Materials 241 286 .
Y. Miyashita, M. Iwasaka & T. Kimura. (2014) Microcrystal-like cellulose fibrils as the diamagnetic director for microfluidic systems. Journal of Applied Physics 115:17.
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Mahdi Mashkour, Tsunehisa Kimura, Fumiko Kimura, Mehrdad Mashkour & Mehdi Tajvidi. (2013) Tunable Self-Assembly of Cellulose Nanowhiskers and Polyvinyl Alcohol Chains Induced by Surface Tension Torque. Biomacromolecules 15:1, pages 60-65.
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Mahdi Mashkour, Tsunehisa Kimura, Fumiko Kimura, Mozhdeh Mashkour & Mehdi Tajvidi. (2014) One-dimensional core?shell cellulose-akaganeite hybrid nanocrystals: synthesis, characterization, and magnetic field induced self-assembly. RSC Adv. 4:94, pages 52542-52549.
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Guangjie Song, Fumiko Kimura, Tsunehisa Kimura & Guangzhe Piao. (2013) Orientational Distribution of Cellulose Nanocrystals in a Cellulose Whisker As Studied by Diamagnetic Anisotropy. Macromolecules 46:22, pages 8957-8963.
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Shinichiro CHIKU, Kentaro Abe, Fumiaki Nakatsubo & Hiroyuki Yano. (2012) Surface Modification of the Cellulose Nanofiber Extracted from Wood Powder. Transactions of the Materials Research Society of Japan 37:2, pages 189-192.
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Sutheerat Changsarn, James D. Mendez, Kadhiravan Shanmuganathan, E. Johan Foster, Christoph Weder & Pitt Supaphol. (2011) Biologically Inspired Hierarchical Design of Nanocomposites Based on Poly(ethylene oxide) and Cellulose Nanofibers. Macromolecular Rapid Communications 32:17, pages 1367-1372.
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Konstantin Iakoubovskii. (2009) Techniques of aligning carbon nanotubes. Open Physics 7:4.
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