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Toward Sustainable PLA-Based Multilayer Complexes with Improved Barrier  Properties | ACS Sustainable Chemistry & Engineering
Toward Sustainable PLA-Based Multilayer Complexes with Improved Barrier Properties | ACS Sustainable Chemistry & Engineering

Oxygen and water vapour barrier properties of neat and formulated PLA... |  Download Table
Oxygen and water vapour barrier properties of neat and formulated PLA... | Download Table

Journal of Bioremediation & Biodegradation - Mechanical, Color and Barrier,  Properties of Biodegradable Nanocomposites Polylactic Acid/Nanoclay
Journal of Bioremediation & Biodegradation - Mechanical, Color and Barrier, Properties of Biodegradable Nanocomposites Polylactic Acid/Nanoclay

Strong, ductile and biodegradable polylactic acid/lignin-containing  cellulose nanofibril composites with improved thermal and barrier properties  - ScienceDirect
Strong, ductile and biodegradable polylactic acid/lignin-containing cellulose nanofibril composites with improved thermal and barrier properties - ScienceDirect

Improvement of the Gas Barrier Properties of PLA/OMMT Films by Regulating  the Interlayer Spacing of OMMT and the Crystallinity of PLA | ACS Omega
Improvement of the Gas Barrier Properties of PLA/OMMT Films by Regulating the Interlayer Spacing of OMMT and the Crystallinity of PLA | ACS Omega

Oxygen barrier performance and Water Vapor Transmission (WVT) values of...  | Download Table
Oxygen barrier performance and Water Vapor Transmission (WVT) values of... | Download Table

Barrier properties of PLA, PLA/C, and PLA/SGC Films | Download Table
Barrier properties of PLA, PLA/C, and PLA/SGC Films | Download Table

Polylactic Acid Biocomposites Reinforced with Nanocellulose Fibrils with  High Lignin Content for Improved Mechanical, Thermal, and Barrier Properties  | ACS Sustainable Chemistry & Engineering
Polylactic Acid Biocomposites Reinforced with Nanocellulose Fibrils with High Lignin Content for Improved Mechanical, Thermal, and Barrier Properties | ACS Sustainable Chemistry & Engineering

Table 2 from Characterization of PLA-limonene blends for food packaging  applications | Semantic Scholar
Table 2 from Characterization of PLA-limonene blends for food packaging applications | Semantic Scholar

Polymers | Free Full-Text | Tailoring the Barrier Properties of PLA: A  State-of-the-Art Review for Food Packaging Applications
Polymers | Free Full-Text | Tailoring the Barrier Properties of PLA: A State-of-the-Art Review for Food Packaging Applications

How to build a total-barrier film structure - Issuu
How to build a total-barrier film structure - Issuu

Table 2 from Nanoamphiphilic Chitosan Dispersed Poly(lactic acid)  Bionanocomposite Films with Improved Thermal, Mechanical, and Gas Barrier  Properties. | Semantic Scholar
Table 2 from Nanoamphiphilic Chitosan Dispersed Poly(lactic acid) Bionanocomposite Films with Improved Thermal, Mechanical, and Gas Barrier Properties. | Semantic Scholar

PLA/MMT and PLA/Halloysite Bio-Nanocomposite Films: Mechanical, Barrier,  and Transparency | Scientific.Net
PLA/MMT and PLA/Halloysite Bio-Nanocomposite Films: Mechanical, Barrier, and Transparency | Scientific.Net

Physical and mechanical properties of PLA, and their functions in  widespread applications — A comprehensive review
Physical and mechanical properties of PLA, and their functions in widespread applications — A comprehensive review

New barrier plastic packaging materials advancing rapidly
New barrier plastic packaging materials advancing rapidly

Water Barrier Properties of PLA-based Cellulose Composites | 10 | Poly
Water Barrier Properties of PLA-based Cellulose Composites | 10 | Poly

The fabrication of flexible and oxygen barrier cellulose nanofiber/polylactic  acid nanocomposites using cosolvent system - Jung - 2020 - Journal of  Applied Polymer Science - Wiley Online Library
The fabrication of flexible and oxygen barrier cellulose nanofiber/polylactic acid nanocomposites using cosolvent system - Jung - 2020 - Journal of Applied Polymer Science - Wiley Online Library

Biopolymer Blends of Poly(lactic acid) and Poly(hydroxybutyrate) and Their  Functionalization with Glycerol Triacetate and Chitin Nanocrystals for Food  Packaging Applications | ACS Applied Polymer Materials
Biopolymer Blends of Poly(lactic acid) and Poly(hydroxybutyrate) and Their Functionalization with Glycerol Triacetate and Chitin Nanocrystals for Food Packaging Applications | ACS Applied Polymer Materials

Barrier properties of PLA, PLA/C, and PLA/SGC Films | Download Table
Barrier properties of PLA, PLA/C, and PLA/SGC Films | Download Table

Polymers | Free Full-Text | Effects of Modified Thermoplastic Starch on  Crystallization Kinetics and Barrier Properties of PLA
Polymers | Free Full-Text | Effects of Modified Thermoplastic Starch on Crystallization Kinetics and Barrier Properties of PLA

Water vapor barrier properties of bare PLA/MMT films. | Download Table
Water vapor barrier properties of bare PLA/MMT films. | Download Table

Improved water barrier properties of polylactic acid films with an  amorphous hydrogenated carbon (a-C:H) coating - ScienceDirect
Improved water barrier properties of polylactic acid films with an amorphous hydrogenated carbon (a-C:H) coating - ScienceDirect

MultiBrief: Compostable high-barrier packaging material highlights  processing advances
MultiBrief: Compostable high-barrier packaging material highlights processing advances

Overview of the barrier properties of packaging materials and... | Download  Scientific Diagram
Overview of the barrier properties of packaging materials and... | Download Scientific Diagram

PDF) PLA Zn O nanocomposite films Water vapor barrier properties and  specific end use characteristics | Gözde Sahin - Academia.edu
PDF) PLA Zn O nanocomposite films Water vapor barrier properties and specific end use characteristics | Gözde Sahin - Academia.edu

PDF] Structure and Barrier Properties of Multinanolayered Biodegradable PLA/PBSA  Films: Confinement Effect via Forced Assembly Coextrusion. | Semantic  Scholar
PDF] Structure and Barrier Properties of Multinanolayered Biodegradable PLA/PBSA Films: Confinement Effect via Forced Assembly Coextrusion. | Semantic Scholar