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Functionalized cellulose nanocrystals as biobased nucleation agents in poly( l-lactide) (PLLA) – Crystallization and mechanical property effects
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Functionalized cellulose nanocrystals as biobased nucleation agents in poly( l-lactide) (PLLA) – Crystallization and mechanical property effects

Pei, Aihua ; Zhou, Qi ; Berglund, Lars A.

Composites science and technology, 2010-05, Vol.70 (5), p.815-821 [Peer Reviewed Journal]

Kidlington: Elsevier Ltd

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2
High-porosity aerogels of high specific surface area prepared from nanofibrillated cellulose (NFC)
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High-porosity aerogels of high specific surface area prepared from nanofibrillated cellulose (NFC)

Sehaqui, Houssine ; Zhou, Qi ; Berglund, Lars A.

Composites science and technology, 2011-09, Vol.71 (13), p.1593-1599 [Peer Reviewed Journal]

Kidlington: Elsevier Ltd

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3
Cellulose nanofibrils as reinforcing agents for PLA-based nanocomposites: An in situ approach
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Cellulose nanofibrils as reinforcing agents for PLA-based nanocomposites: An in situ approach

Gazzotti, Stefano ; Rampazzo, Riccardo ; Hakkarainen, Minna ; Bussini, Daniele ; Ortenzi, Marco Aldo ; Farina, Hermes ; Lesma, Giordano ; Silvani, Alessandra

Composites science and technology, 2019-02, Vol.171, p.94-102 [Peer Reviewed Journal]

Barking: Elsevier Ltd

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4
Wood cellulose biocomposites with fibrous structures at micro- and nanoscale
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Wood cellulose biocomposites with fibrous structures at micro- and nanoscale

Sehaqui, Houssine ; Allais, Maël ; Zhou, Qi ; Berglund, Lars A.

Composites science and technology, 2011-02, Vol.71 (3), p.382-387 [Peer Reviewed Journal]

Kidlington: Elsevier Ltd

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5
Large-scale manufacturing of ultra-strong, strain-responsive poly(lactic acid)-based nanocomposites reinforced with cellulose nanocrystals
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Large-scale manufacturing of ultra-strong, strain-responsive poly(lactic acid)-based nanocomposites reinforced with cellulose nanocrystals

Geng, Shiyu ; Wloch, Daniela ; Herrera, Natalia ; Oksman, Kristiina

Composites science and technology, 2020-07, Vol.194, p.108144, Article 108144 [Peer Reviewed Journal]

Barking: Elsevier Ltd

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6
Direct measurements of interfacial shear strength of multi-walled carbon nanotube/PEEK composite using a nano-pullout method
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Direct measurements of interfacial shear strength of multi-walled carbon nanotube/PEEK composite using a nano-pullout method

Tsuda, Terumasa ; Ogasawara, Toshio ; Deng, Fei ; Takeda, Nobuo

Composites science and technology, 2011-07, Vol.71 (10), p.1295-1300 [Peer Reviewed Journal]

Kidlington: Elsevier Ltd

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7
Highly strong and conductive carbon nanotube/cellulose composite paper
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Highly strong and conductive carbon nanotube/cellulose composite paper

Imai, Masanori ; Akiyama, Kousuke ; Tanaka, Tomo ; Sano, Eiichi

Composites science and technology, 2010-09, Vol.70 (10), p.1564-1570 [Peer Reviewed Journal]

Kidlington: Elsevier Ltd

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8
Dispersion and distribution of carbon nanotubes in ternary rubber blends
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Dispersion and distribution of carbon nanotubes in ternary rubber blends

Le, H.H. ; Sriharish, M.N. ; Henning, S. ; Klehm, J. ; Menzel, M. ; Frank, W. ; Wießner, S. ; Das, A. ; Stöckelhuber, K.-W. ; Heinrich, G. ; Radusch, H.-J.

Composites science and technology, 2014-01, Vol.90, p.180-186 [Peer Reviewed Journal]

Kidlington: Elsevier Ltd

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9
Preparation, crystallization and hydrolytic degradation of biodegradable poly( l-lactide)/polyhedral oligomeric silsesquioxanes nanocomposite
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Preparation, crystallization and hydrolytic degradation of biodegradable poly( l-lactide)/polyhedral oligomeric silsesquioxanes nanocomposite

Qiu, Zhaobin ; Pan, Hong

Composites science and technology, 2010-07, Vol.70 (7), p.1089-1094 [Peer Reviewed Journal]

Kidlington: Elsevier Ltd

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10
Polymer‐Based Nano‐Composites for Thermal Insulation
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Polymer‐Based Nano‐Composites for Thermal Insulation

Fraleoni‐Morgera, Alessandro ; Chhikara, Manisha

Advanced engineering materials, 2019-07, Vol.21 (7), p.n/a [Peer Reviewed Journal]

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