Pascal and Francis Bibliographic Databases

Help

Search results

Your search

kw.\*:("Cellulose microfibril")

Publication Year[py]

A-Z Z-A Frequency ↓ Frequency ↑
Export in CSV

Discipline (document) [di]

A-Z Z-A Frequency ↓ Frequency ↑
Export in CSV

Author Country

A-Z Z-A Frequency ↓ Frequency ↑
Export in CSV

Results 1 to 22 of 22

  • Page / 1
Export

Selection :

  • and

Fine structure of cell wall surfaces in the giant-cellular xanthophycean alga Vaucheria terrestrisMINE, Ichiro; OKUDA, Kazuo.Planta. 2007, Vol 225, Num 5, pp 1135-1146, issn 0032-0935, 12 p.Article

Cell wall extensibility during branch formation in the xanthophycean alga Vaucheria terrestrisMINE, Ichiro; TAKEZAKI, Naiko; SEKIDA, Satoko et al.Planta. 2007, Vol 226, Num 4, pp 971-979, issn 0032-0935, 9 p.Article

Direct investigation of the structural properties of tension wood cellulose microfibrils using microbeam X-ray fibre diffractionMÜLLER, Martin; BURGHAMMER, Manfred; SUGIYAMA, Junji et al.Holzforschung. 2006, Vol 60, Num 5, pp 474-479, issn 0018-3830, 6 p.Conference Paper

Microfibril orientation across the secondary cell wall of radiata pine tracheidsDONALDSON, Lloyd; PING XU.Trees (Berlin. Print). 2005, Vol 19, Num 6, pp 644-653, issn 0931-1890, 10 p.Article

Technique for the measurement of dimensional changes of natural microfibril materials under variable humidity environmentsJUNG MYOUNG LEE; HEITMANN, John A; PAWLAK, Joel J et al.Materials science & engineering. A, Structural materials : properties, microstructure and processing. 2007, Vol 445-446, pp 632-640, issn 0921-5093, 9 p.Article

Cobtorin target analysis reveals that pectin functions in the deposition of cellulose microfibrils in parallel with cortical microtubulesYONEDA, Arata; ITO, Takuya; HIGAKI, Takumi et al.Plant journal. 2010, Vol 64, Num 4, pp 657-667, issn 0960-7412, 11 p.Article

IAA stimulates pollen tube growth and mediates the modification of its wall composition and structure in Torenia fournieriWU, Juan-Zi; YI LIN; ZHANG, Xue-Lian et al.Journal of experimental botany. 2008, Vol 59, Num 9, pp 2529-2543, issn 0022-0957, 15 p.Article

Microfibrillated cellulose - Its barrier properties and applications in cellulosic materials: A reviewLAVOINE, Nathalie; DESLOGES, Isabelle; DUFRESNE, Alain et al.Carbohydrate polymers. 2012, Vol 90, Num 2, pp 735-764, issn 0144-8617, 30 p.Article

Accessibility of cellulose: Structural changes and their reversibility in aqueous mediaPONNI, Raili; KONTTURI, Eero; VUORINEN, Tapani et al.Carbohydrate polymers. 2013, Vol 93, Num 2, pp 424-429, issn 0144-8617, 6 p.Article

Changes in accessibility of cellulose during kraft pulping of wood in deuterium oxidePÖNNI, Raili; GALVIS, Leonardo; VUORINEN, Tapani et al.Carbohydrate polymers. 2014, Vol 101, pp 792-797, issn 0144-8617, 6 p.Article

Ultrastructure of the innermost surface of differentiating normal and compression wood tracheids as revealed by field emission scanning electron microscopyJONG SIK KIM; AWANO, Tatsuya; YOSHINAGA, Arata et al.Planta. 2012, Vol 235, Num 6, pp 1209-1219, issn 0032-0935, 11 p.Article

Cell-wall structure and anisotropy in procuste, a cellulose synthase mutant of Arabidopsis thalianaMACKINNON, Iain M; STURCOVA, Adriana; SUGIMOTO-SHIRASU, Keiko et al.Planta. 2006, Vol 224, Num 2, pp 438-448, issn 0032-0935, 11 p.Article

Solid-state 13C-NMR spectroscopy shows that the xyloglucans in the primary cell walls of mung bean (Vigna radiata L.) occur in different domains : A new model for xyloglucan-cellulose interactions in the cell wallBOOTTEN, Tracey J; HARRIS, Philip J; MELTON, Laurence D et al.Journal of experimental botany. 2004, Vol 55, Num 397, pp 571-583, issn 0022-0957, 13 p.Article

Brittle Culm 12, a dual-targeting kinesin-4 protein, controls cell-cycle progression and wall properties in riceMU ZHANG; BAOCAI ZHANG; QIAN QIAN et al.Plant journal. 2010, Vol 63, Num 2, pp 312-328, issn 0960-7412, 17 p.Article

TEMPO-oxidized cellulose nanofibrils prepared from various plant holocelluloses : Renewable Nanoreinforcements, Polymers and CompositesKURAMAE, Ryota; SAITO, Tsuguyuki; ISOGAI, Akira et al.Reactive & functional polymers. 2014, Vol 85, pp 126-133, issn 1381-5148, 8 p.Article

High-strength nanocomposite based on fibrillated chemi-thermomechanical pulpABE, Kentaro; NAKATSUBO, Fumiaki; YANO, Hiroyuki et al.Composites science and technology. 2009, Vol 69, Num 14, pp 2434-2437, issn 0266-3538, 4 p.Article

On the role of stress anisotropy in the growth of stemsBASKIN, Tobias I; JENSEN, Oliver E.Journal of experimental botany. 2013, Vol 64, Num 15, pp 4697-4707, issn 0022-0957, 11 p.Article

Impact of bleaching on subcritical water- and Formosolv-pretreated tulip tree to enhance enzyme accessibilityAYE AYE MYINT; DAE SUNG KIM; HUN WOOK LEE et al.Bioresource technology. 2013, Vol 145, pp 128-132, issn 0960-8524, 5 p.Conference Paper

Surface silylation of cellulose microfibrils: preparation and rheological propertiesGOUSSE, C; CHANZY, H; CERRADA, M. L et al.Polymer (Guildford). 2004, Vol 45, Num 5, pp 1569-1575, issn 0032-3861, 7 p.Article

Surface-initiated atom transfer radical polymerization of butyl acrylate on cellulose microfibrilsMIAOMIAO XIAO; SHUZHAO LI; CHANKLIN, Wilailak et al.Carbohydrate polymers. 2011, Vol 83, Num 2, pp 512-519, issn 0144-8617, 8 p.Article

Preparation and properties of self-reinforced cellulose composite films from Agave microfibrils using an ionic liquidOBI REDDY, K; JINMING ZHANG; JUN ZHANG et al.Carbohydrate polymers. 2014, Vol 114, pp 537-545, issn 0144-8617, 9 p.Article

Extraction and characterization of cellulose microfibrils from agricultural residue ― Cocos nucifera LUMA MAHESWARI, C; OBI REDDY, K; MUZENDA, E et al.Biomass & bioenergy. 2012, Vol 46, pp 555-563, issn 0961-9534, 9 p.Article

  • Page / 1