Effect of sugar palm nanofibrillated cellulose concentrations on morphological, mechanical and physical properties of biodegradable films based on agro-waste sugar palm (Arenga pinnata (Wurmb.) Merr) starch

Author:

Ilyas R.A.,Sapuan S.M.,Ibrahim Rushdan,Abral Hairul,Ishak M.R.,Zainudin E.S.,Atikah M.S.N.,Mohd Nurazzi N.,Atiqah A.,Ansari M.N.M.,Syafri Edi,Asrofi Mochamad,Sari Nasmi Herlina,Jumaidin R.

Funder

Universiti Tenaga Nasional

Universiti Putra Malaysia

Publisher

Elsevier BV

Subject

Metals and Alloys,Surfaces, Coatings and Films,Biomaterials,Ceramics and Composites

Reference64 articles.

1. Effect of sago starch and plasticizer content on the properties of thermoplastic films: mechanical testing and cyclic soaking-drying;Halimatul;Polimery,2019

2. Water absorption and water solubility properties of sago starch biopolymer composite films filled with sugar palm particles;Halimatul;Polimery,2019

3. Sugar palm starch-based composites for packaging applications;Sanyang,2018

4. Development of sugar palm–based products: a community project;Sapuan,2018

5. Characterization of sugar palm nanocellulose and its potential for reinforcement with a starch-based composite;Ilyas,2018

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