4.7 Article

Mixed-linkage (1,3;1,4)-β-D-glucans as rehydration media for improved redispersion of dried cellulose nanofibrils

相关参考文献

注意:仅列出部分参考文献,下载原文获取全部文献信息。
Review Chemistry, Multidisciplinary

Nanocellulose: Recent Fundamental Advances and Emerging Biological and Biomimicking Applications

Katja Heise et al.

Summary: Nanocelluloses have attracted significant attention in the pursuit of sustainable advanced functional materials. Despite facing challenges in mastering their interactions and tailorability, recent progress in water interactions and advanced hybrid gels has opened up new directions for potential applications like nanocomposites, gels, and composite fibers.

ADVANCED MATERIALS (2021)

Article Chemistry, Multidisciplinary

Redispersion Strategies for Dried Cellulose Nanofibrils

Malin Nordenstrom et al.

Summary: The potential for large-scale applications of cellulose nanofibrils is constrained by the challenge of maintaining their nanoscale dimensions after drying. However, the study demonstrates that redispersion of dried CNFs can be achieved effectively through strategies such as increasing charge density or utilizing fractionated lignin as a redispersing agent. Additionally, drying CNFs in the form of nanopapers facilitates easier redispersion without the need for a redispersing agent, maintaining excellent mechanical properties similar to those of never-dried CNFs.

ACS SUSTAINABLE CHEMISTRY & ENGINEERING (2021)

Review Materials Science, Paper & Wood

Drying and redispersion of plant cellulose nanofibers for industrial applications: a review

P. Posada et al.

CELLULOSE (2020)

Article Chemistry, Physical

Aggregation and microstructure of cereal β-glucan and its association with other biomolecules

Claudia Zielke et al.

COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS (2019)

Review Chemistry, Multidisciplinary

Advanced Materials through Assembly of Nanocelluloses

Eero Kontturi et al.

ADVANCED MATERIALS (2018)

Article Chemistry, Applied

Characterization of cereal beta-glucan extracts: Conformation and structural aspects

Claudia Zielke et al.

FOOD HYDROCOLLOIDS (2018)

Article Materials Science, Paper & Wood

Highly redispersible sugar beet nanofibers as reinforcement in bionanocomposites

Maiju Hietala et al.

CELLULOSE (2017)

Article Materials Science, Composites

Re-dispersible carrot nanofibers with high mechanical properties and reinforcing capacity for use in composite materials

Gilberto Siqueira et al.

COMPOSITES SCIENCE AND TECHNOLOGY (2016)

Article Polymer Science

Fast and Robust Nanocellulose Width Estimation Using Turbidimetry

Michiko Shimizu et al.

MACROMOLECULAR RAPID COMMUNICATIONS (2016)

Article Materials Science, Textiles

Prevention of Aggregation of Pectin-Containing Cellulose Nanofibers Prepared from Mandarin Peel

Shou Hiasa et al.

JOURNAL OF FIBER SCIENCE AND TECHNOLOGY (2016)

Article Biochemistry & Molecular Biology

Interactions of Arabinoxylan and (1,3)(1,4)-β-Glucan with Cellulose Networks

Deirdre Mikkelsen et al.

BIOMACROMOLECULES (2015)

Article Biochemistry & Molecular Biology

High-Performance and Moisture-Stable Cellulose-Starch Nanocomposites Based on Bioinspired Core-Shell Nanofibers

Kasinee Prakobna et al.

BIOMACROMOLECULES (2015)

Article Chemistry, Applied

Core-shell cellulose nanofibers for biocomposites - Nanostructural effects in hydrated state

Kasinee Prakobna et al.

CARBOHYDRATE POLYMERS (2015)

Article Engineering, Environmental

Life Cycle Assessment of Cellulose Nanofibrils Production by Mechanical Treatment and Two Different Pretreatment Processes

Rickard Arvidsson et al.

ENVIRONMENTAL SCIENCE & TECHNOLOGY (2015)

Article Materials Science, Paper & Wood

Water redispersible cellulose nanofibrils adsorbed with carboxymethyl cellulose

Nuria Butchosa et al.

CELLULOSE (2014)

Article Chemistry, Applied

Hydration and mechanical properties of arabinoxylans and β-D-glucans films

Ruifeng Ying et al.

CARBOHYDRATE POLYMERS (2013)

Review Plant Sciences

Plant micro- and nanomechanics: experimental techniques for plant cell-wall analysis

Ingo Burgert et al.

JOURNAL OF EXPERIMENTAL BOTANY (2013)

Article Plant Sciences

Structure of Cellulose Microfibrils in Primary Cell Walls from Collenchyma

Lynne H. Thomas et al.

PLANT PHYSIOLOGY (2013)

Article Biochemistry & Molecular Biology

Fast Preparation Procedure for Large, Flat Cellulose and Cellulose/Inorganic Nanopaper Structures

Houssine Sehaqui et al.

BIOMACROMOLECULES (2010)

Article Materials Science, Paper & Wood

Preparation and characterization of water-redispersible nanofibrillated cellulose in powder form

Ch. Eyholzer et al.

CELLULOSE (2010)

Review Biochemistry & Molecular Biology

Heterogeneity in the chemistry, structure and function of plant cell walls

Rachel A. Burton et al.

NATURE CHEMICAL BIOLOGY (2010)

Article Biochemistry & Molecular Biology

Cellulose nanopaper structures of high toughness

Marielle Henriksson et al.

BIOMACROMOLECULES (2008)

Article Biochemistry & Molecular Biology

Homogeneous suspensions of individualized microfibrils from TEMPO-catalyzed oxidation of native cellulose

Tsuguyuki Saito et al.

BIOMACROMOLECULES (2006)

Article Spectroscopy

Vibrational spectroscopic characterization of wild growing mushrooms and toadstools

V Mohacek-Grosev et al.

SPECTROCHIMICA ACTA PART A-MOLECULAR AND BIOMOLECULAR SPECTROSCOPY (2001)