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Nature, ISSN 0028-0836, 07/2010, Volume 466, Issue 7303, pp. 243 - 247
Journal Article
Textile research journal, ISSN 1746-7748, 2011, Volume 81, Issue 10, pp. 1014 - 1026
The present paper reports the effect of plasma treatments on the surface properties of textile fibers. In the present investigations mainly air plasma and... 
water repellent | plasma process | cotton | electron microscopy | dyeing | FIBERS | ADHESION | DYEING PROPERTIES | MATERIALS SCIENCE, TEXTILES | LOW-TEMPERATURE PLASMA | WOOL | Textile fabrics | Cotton textiles | Usage | Composition | Cotton fabrics | Textile fibers | Properties | Methods | Fibers | Studies | Plasma | Microscopy | Mechanical properties | Cotton dyeing | Impact analysis | Dyes | Surface properties | Fabrics | Air plasma | Contact angle | Hydrophobicity | Cotton
Journal Article
Journal of applied polymer science, ISSN 0021-8995, 2016, Volume 133, Issue 45, pp. np - n/a
ABSTRACT The present research focuses on developing nonedible starch‐based resin to replace the currently used edible starches (corn, potato, etc.), protein... 
composites | biodegradable | crosslinking | mechanical properties | thermosets | RESIN | POLYMER SCIENCE | RHEOLOGICAL PROPERTIES | ACID | BEHAVIOR | STRENGTH | MECHANICAL-PROPERTIES | FIBER | CORN | GREEN COMPOSITES | Thermal properties | Crosslinked polymers | Cellulose | Edible | Seeds | Crosslinking | Starches | Thermosetting resins | Resins | Polymers
Journal Article
Materials today (Kidlington, England), ISSN 1369-7021, 2003, Volume 6, Issue 4, pp. 22 - 29
The development and importance of inexpensive biodegradable polymeric resins were discussed. Since many of the fibers and resins are made using nondegradable,... 
Journal Article
Polymer composites, ISSN 0272-8397, 2019, Volume 40, Issue 1, pp. 99 - 108
“Green” composites were fabricated using modified sisal fibers and agro‐waste derived resins from nonedible protein and starch in a simple and cost‐effective... 
KARANJA | THERMOSET RESIN | POLYMER SCIENCE | ACID | OIL | THERMAL-PROPERTIES | SOY PROTEIN ISOLATE | SEED | STARCH | MATERIALS SCIENCE, COMPOSITES | MECHANICAL-PROPERTIES | CELLULOSE | Proteins | Mercerization | Polymer matrix composites | Heat treatment | Modulus of elasticity | Sisal | Polymers | Resins | Tensile properties | Fibers
Journal Article
Polymer Reviews, ISSN 1558-3724, 10/2014, Volume 54, Issue 4, pp. 598 - 626
Bacterial cellulose (BC) is a unique nanofibrous biomaterial which can have applications in many engineering fields. BC possesses excellent mechanical... 
BC applications | biocompatibility | bacterial cellulose | nanocomposites | fabrication methods | mechanical properties | POLYMER SCIENCE | AEROGELS | NANOFIBERS | SURFACE MODIFICATION | SUGAR-CANE MOLASSES | OPTICALLY TRANSPARENT COMPOSITES | CARBON SOURCE | MICROBIAL CELLULOSE | BIOSYNTHESIS | FERMENTATION | ACETOBACTER-XYLINUM
Journal Article
Polymer Composites, ISSN 0272-8397, 05/2013, Volume 34, Issue 5, pp. 799 - 809
... hollow tubular structures are mined from natural deposits [ 6 , 7 ]. While the ideal unit formula for halloysite is Al 2 Si 2 O 5 (OH) 4 · n H 2 O [ n = 0... 
PHYSICAL-PROPERTIES | POLYMER SCIENCE | FILMS | THERMAL-PROPERTIES | CRYSTALLIZATION BEHAVIOR | CARBON-FIBER | PLASMA TREATMENT | MATERIALS SCIENCE, COMPOSITES | POLY(VINYL ALCOHOL) | EPOXY-RESIN | MECHANICAL-PROPERTIES | COMPOSITE | Biodegradation | Phosphates | Phosphoric acid | Crosslinked polymers | Plastics | Nanotubes
Journal Article
Journal of Applied Polymer Science, ISSN 0021-8995, 04/2017, Volume 134, Issue 13, pp. np - n/a
ABSTRACT Fully bio‐based soy protein isolate (SPI) resins were toughened using natural rubber (NR) and epoxidized natural rubber (ENR). Resin compositions... 
thermal properties | biopolymers and renewable polymers | proteins | mechanical properties | thermosets | POLYMERS | L-LACTIDE | POLYMER SCIENCE | ACID | CROSS-LINKING | PLASTICS | EPOXY-RESIN | MECHANICAL-PROPERTIES | BLENDS | TOUGHNESS | GREEN COMPOSITES | Proteins | Thermal properties | Analysis | Toughening | Crosslinking | Natural rubber | Thermosetting resins | Resins | Polymers | Tensile properties
Journal Article
Composites Science and Technology, ISSN 0266-3538, 07/2018, Volume 162, pp. 110 - 116
Advanced green composites have been fabricated by using modified liquid crystalline cellulose (M-LCC) fibers and micro-fibrillated cellulose (MFC) modified... 
Mechanical properties | Polymers | Liquid crystalline cellulose | Strength | Fibers | PHOSPHORIC-ACID | MATERIALS SCIENCE, COMPOSITES | Corn | Mechanical engineering | Cellulose | Aerospace engineering
Journal Article
Journal of Materials Science, ISSN 0022-2461, 8/1999, Volume 34, Issue 15, pp. 3709 - 3719
Journal Article
Composites Science and Technology, ISSN 0266-3538, 07/2017, Volume 146, pp. 183 - 190
Maximum potential of any fibers as reinforcing agent in composite materials can be obtained through their preferential alignment. In this study, a facile... 
Mechanical properties | Nano composites | Polymer-matrix composites (PMCs) | Strength | Aligned bacterial cellulose | RESIN | MATERIALS SCIENCE, COMPOSITES | COMPOSITES | Dimethylpolysiloxane | Analysis | Cellulose
Journal Article