CHARACTERIZATION OF STARCH-BASED BIOPLASTICS (AMYLOSE/AMYLOPECTIN) AS AN ALTERNATIVE TO NON-RENEWABLE MATERIALS THROUGH MD AND MQ SIMULATIONS. ...

Petroleum-derived materials are used in various industries due to their flexibility, durability, toughness and high mechanical tensile strength. However, their lack of biodegradability creates a major environmental disposal problem. The growing interest in investigating sustainable alternatives, suc...

Full description

Bibliographic Details
Main Authors: Lara, Maria J, Combariza, Aldo F, Fuentes, Angel M
Format: Still Image
Language:unknown
Published: Zenodo 2023
Subjects:
Online Access:https://dx.doi.org/10.5281/zenodo.10034696
https://zenodo.org/doi/10.5281/zenodo.10034696
id ftdatacite:10.5281/zenodo.10034696
record_format openpolar
spelling ftdatacite:10.5281/zenodo.10034696 2023-12-03T10:28:38+01:00 CHARACTERIZATION OF STARCH-BASED BIOPLASTICS (AMYLOSE/AMYLOPECTIN) AS AN ALTERNATIVE TO NON-RENEWABLE MATERIALS THROUGH MD AND MQ SIMULATIONS. ... Lara, Maria J Combariza, Aldo F Fuentes, Angel M 2023 https://dx.doi.org/10.5281/zenodo.10034696 https://zenodo.org/doi/10.5281/zenodo.10034696 unknown Zenodo https://dx.doi.org/10.5281/zenodo.10034695 Creative Commons Attribution 4.0 International https://creativecommons.org/licenses/by/4.0/legalcode cc-by-4.0 Poster Text article-journal ScholarlyArticle 2023 ftdatacite https://doi.org/10.5281/zenodo.1003469610.5281/zenodo.10034695 2023-11-03T11:05:32Z Petroleum-derived materials are used in various industries due to their flexibility, durability, toughness and high mechanical tensile strength. However, their lack of biodegradability creates a major environmental disposal problem. The growing interest in investigating sustainable alternatives, such as biopolymers, which have proven to be a viable substitute for petroleum-based materials. These are attractive because of their biodegradability, versatility and compatibility with other materials. Starch-based biopolymers are composed of two polymers: amylose and amylopectin. We propose to investigate mechanical properties such as Young's modulus, tensile strength and flexibility. Using Quantum Mechanics (QM) and Molecular Dynamics (MD). MC calculations were performed on the monomer (glucose) using Density Functional Theory (DFT) with ORCA software, with the B3LYP/M06-2X functional up to the cc_PVDZ basis set. Calculations are being performed for geometrical optimization and vibrational frequency, comparing ... Still Image Orca DataCite Metadata Store (German National Library of Science and Technology)
institution Open Polar
collection DataCite Metadata Store (German National Library of Science and Technology)
op_collection_id ftdatacite
language unknown
description Petroleum-derived materials are used in various industries due to their flexibility, durability, toughness and high mechanical tensile strength. However, their lack of biodegradability creates a major environmental disposal problem. The growing interest in investigating sustainable alternatives, such as biopolymers, which have proven to be a viable substitute for petroleum-based materials. These are attractive because of their biodegradability, versatility and compatibility with other materials. Starch-based biopolymers are composed of two polymers: amylose and amylopectin. We propose to investigate mechanical properties such as Young's modulus, tensile strength and flexibility. Using Quantum Mechanics (QM) and Molecular Dynamics (MD). MC calculations were performed on the monomer (glucose) using Density Functional Theory (DFT) with ORCA software, with the B3LYP/M06-2X functional up to the cc_PVDZ basis set. Calculations are being performed for geometrical optimization and vibrational frequency, comparing ...
format Still Image
author Lara, Maria J
Combariza, Aldo F
Fuentes, Angel M
spellingShingle Lara, Maria J
Combariza, Aldo F
Fuentes, Angel M
CHARACTERIZATION OF STARCH-BASED BIOPLASTICS (AMYLOSE/AMYLOPECTIN) AS AN ALTERNATIVE TO NON-RENEWABLE MATERIALS THROUGH MD AND MQ SIMULATIONS. ...
author_facet Lara, Maria J
Combariza, Aldo F
Fuentes, Angel M
author_sort Lara, Maria J
title CHARACTERIZATION OF STARCH-BASED BIOPLASTICS (AMYLOSE/AMYLOPECTIN) AS AN ALTERNATIVE TO NON-RENEWABLE MATERIALS THROUGH MD AND MQ SIMULATIONS. ...
title_short CHARACTERIZATION OF STARCH-BASED BIOPLASTICS (AMYLOSE/AMYLOPECTIN) AS AN ALTERNATIVE TO NON-RENEWABLE MATERIALS THROUGH MD AND MQ SIMULATIONS. ...
title_full CHARACTERIZATION OF STARCH-BASED BIOPLASTICS (AMYLOSE/AMYLOPECTIN) AS AN ALTERNATIVE TO NON-RENEWABLE MATERIALS THROUGH MD AND MQ SIMULATIONS. ...
title_fullStr CHARACTERIZATION OF STARCH-BASED BIOPLASTICS (AMYLOSE/AMYLOPECTIN) AS AN ALTERNATIVE TO NON-RENEWABLE MATERIALS THROUGH MD AND MQ SIMULATIONS. ...
title_full_unstemmed CHARACTERIZATION OF STARCH-BASED BIOPLASTICS (AMYLOSE/AMYLOPECTIN) AS AN ALTERNATIVE TO NON-RENEWABLE MATERIALS THROUGH MD AND MQ SIMULATIONS. ...
title_sort characterization of starch-based bioplastics (amylose/amylopectin) as an alternative to non-renewable materials through md and mq simulations. ...
publisher Zenodo
publishDate 2023
url https://dx.doi.org/10.5281/zenodo.10034696
https://zenodo.org/doi/10.5281/zenodo.10034696
genre Orca
genre_facet Orca
op_relation https://dx.doi.org/10.5281/zenodo.10034695
op_rights Creative Commons Attribution 4.0 International
https://creativecommons.org/licenses/by/4.0/legalcode
cc-by-4.0
op_doi https://doi.org/10.5281/zenodo.1003469610.5281/zenodo.10034695
_version_ 1784253423719284736