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Pranee Phinyocheep

Showing results (1-10 of 16) with videos related to

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Polymers|February 10, 2024
Compatibilization of Cellulose Nanocrystal-Reinforced Natural Rubber Nanocomposite by Modified Natural RubberPunyarat Jantachum, Pranee Phinyocheep
Applied Spectroscopy|February 14, 2009
Spectroscopic investigation of polystyrene surface grafting on natural rubberSupinya Prakanrat, Pranee Phinyocheep, Philippe Daniel
Polymers|January 23, 2024
Sustainable Materials with Improved Biodegradability and Toughness from Blends of Poly(Lactic Acid), Pineapple Stem Starch and Modified Natural RubberWasan Tessanan, Pranee Phinyocheep, Taweechai Amornsakchai
ACS Omega|June 21, 2021
Development of Photosensitive Natural Rubber as a Mechanical Modifier for Ultraviolet-Curable Resin Applied in Digital Light Processing-Based Three-Dimensional Printing TechnologyWasan Tessanan, Philippe Daniel, Pranee Phinyocheep
Polymers|October 28, 2023
Mechanical Properties' Strengthening of Photosensitive 3D Resin in Lithography Technology Using Acrylated Natural RubberWasan Tessanan, Philippe Daniel, Pranee Phinyocheep
Polymers|September 28, 2023
Development of Biodegradable Thermosetting Plastic Using Dialdehyde Pineapple Stem StarchWasan Tessanan, Pranee Phinyocheep, Taweechai Amornsakchai
Carbohydrate Polymers|April 23, 2014
Green natural rubber-g-modified starch for controlling urea releaseSa-Ad Riyajan, Yodsathorn Sasithornsonti, Pranee Phinyocheep
International Journal of Pharmaceutics|November 16, 2004
Influence of selected surfactants on the tackiness of acrylic polymer filmsSathaporn Nimkulrat, Krisda Suchiva, Pranee Phinyocheep, et al.
International Journal of Biological Macromolecules|July 9, 2025
Tailoring mechanical performance and biodegradability of poly(lactic acid) using renewable additivesWasan Tessanan, Rawinun Sutthikitivorakul, Thanawan Klaykruayat, et al.
ACS Omega|October 9, 2023
Achieving High-Performance Green Composites from Pineapple Leaf Fiber-Poly(butylene succinate) through Both Fiber Alignment and Matrix Orientation across the ThicknessSorn Duangsuwan, Taweechai Amornsakchai, Pranee Phinyocheep, et al.
Pageof 2

Showing results (1-10 of 16) with videos related to

Sort By:
Pageof 2
Polymers|February 10, 2024
Compatibilization of Cellulose Nanocrystal-Reinforced Natural Rubber Nanocomposite by Modified Natural RubberPunyarat Jantachum, Pranee Phinyocheep
Applied Spectroscopy|February 14, 2009
Spectroscopic investigation of polystyrene surface grafting on natural rubberSupinya Prakanrat, Pranee Phinyocheep, Philippe Daniel
Polymers|January 23, 2024
Sustainable Materials with Improved Biodegradability and Toughness from Blends of Poly(Lactic Acid), Pineapple Stem Starch and Modified Natural RubberWasan Tessanan, Pranee Phinyocheep, Taweechai Amornsakchai
ACS Omega|June 21, 2021
Development of Photosensitive Natural Rubber as a Mechanical Modifier for Ultraviolet-Curable Resin Applied in Digital Light Processing-Based Three-Dimensional Printing TechnologyWasan Tessanan, Philippe Daniel, Pranee Phinyocheep
Polymers|October 28, 2023
Mechanical Properties' Strengthening of Photosensitive 3D Resin in Lithography Technology Using Acrylated Natural RubberWasan Tessanan, Philippe Daniel, Pranee Phinyocheep
Polymers|September 28, 2023
Development of Biodegradable Thermosetting Plastic Using Dialdehyde Pineapple Stem StarchWasan Tessanan, Pranee Phinyocheep, Taweechai Amornsakchai
Carbohydrate Polymers|April 23, 2014
Green natural rubber-g-modified starch for controlling urea releaseSa-Ad Riyajan, Yodsathorn Sasithornsonti, Pranee Phinyocheep
International Journal of Pharmaceutics|November 16, 2004
Influence of selected surfactants on the tackiness of acrylic polymer filmsSathaporn Nimkulrat, Krisda Suchiva, Pranee Phinyocheep, et al.
International Journal of Biological Macromolecules|July 9, 2025
Tailoring mechanical performance and biodegradability of poly(lactic acid) using renewable additivesWasan Tessanan, Rawinun Sutthikitivorakul, Thanawan Klaykruayat, et al.
ACS Omega|October 9, 2023
Achieving High-Performance Green Composites from Pineapple Leaf Fiber-Poly(butylene succinate) through Both Fiber Alignment and Matrix Orientation across the ThicknessSorn Duangsuwan, Taweechai Amornsakchai, Pranee Phinyocheep, et al.
Pageof 2