Javascript must be enabled to continue!
Biopolymers: Anindispensableentity for mankind
View through CrossRef
Polymers have become essential part of life. One can’t think of life without polymers, reason being their innumerable physical and engineering characteristics. Most prominent quality of polymers is their low cost and durability.However, seize to strength ratio of polymers is large as compared to metals. Heat capacity of polymers is also less. Structural strength of polymers is also poor which make them unsuitable for heavy structures. Above all polymer are non biodegradables they may persist in environment for centuries. Due to this disability many countries have imposed restrictions on their use. Low price, long life and readiness to adopt any shape has made polymers invulnerable. Non bio degradability of synthetic polymers shifted the quilt towards the invention of biopolymers. Scientists found the solution in biopolymers. They can be biosynthesized by living organisms or chemically synthesized from biological matter. The biopolymers are natural polymers formed by living organisms. Biopolymers are monomeric units which are bound covalently to form large molecules. Unlike polymers the biopolymers are biodegradable which decompose in bio-products with time after the expiry of intended purpose. Mainly there are three classes of biodegradable polymers namely polysaccharides, polypeptides and poly nucleotides Biopolymers mostly find applications in manufacturing, packaging, biomedical engineering and food industry. Difference between natural and synthetic polymers is discussed. Advantages of biopolymers over polymers are compared. Present study enlists brief overview of biopolymers. Keywords: Polymers, Biopolymers, Biodegradable Abbreviations: PVC, PVDF, Tg, DNA, RNA
International Journal of Multidisciplinary Research Configuration
Title: Biopolymers: Anindispensableentity for mankind
Description:
Polymers have become essential part of life.
One can’t think of life without polymers, reason being their innumerable physical and engineering characteristics.
Most prominent quality of polymers is their low cost and durability.
However, seize to strength ratio of polymers is large as compared to metals.
Heat capacity of polymers is also less.
Structural strength of polymers is also poor which make them unsuitable for heavy structures.
Above all polymer are non biodegradables they may persist in environment for centuries.
Due to this disability many countries have imposed restrictions on their use.
Low price, long life and readiness to adopt any shape has made polymers invulnerable.
Non bio degradability of synthetic polymers shifted the quilt towards the invention of biopolymers.
Scientists found the solution in biopolymers.
They can be biosynthesized by living organisms or chemically synthesized from biological matter.
The biopolymers are natural polymers formed by living organisms.
Biopolymers are monomeric units which are bound covalently to form large molecules.
Unlike polymers the biopolymers are biodegradable which decompose in bio-products with time after the expiry of intended purpose.
Mainly there are three classes of biodegradable polymers namely polysaccharides, polypeptides and poly nucleotides Biopolymers mostly find applications in manufacturing, packaging, biomedical engineering and food industry.
Difference between natural and synthetic polymers is discussed.
Advantages of biopolymers over polymers are compared.
Present study enlists brief overview of biopolymers.
Keywords: Polymers, Biopolymers, Biodegradable Abbreviations: PVC, PVDF, Tg, DNA, RNA.
Related Results
Biological Sources, Chemistry, and Extraction of Biopolymers
Biological Sources, Chemistry, and Extraction of Biopolymers
To foster a green environment, considerable efforts have been made to
replace synthetic polymers with biodegradable materials, such as biopolymers,
particularly for the development...
An Overview of Synthetic Biopolymers in Drug Delivery
An Overview of Synthetic Biopolymers in Drug Delivery
This chapter discusses synthetic biopolymers and their application in drug delivery.
Numerous delivery techniques, taking advantage of the functional properties of synthetic
polyme...
Various Synthetic Pathways and Properties of Biopolymers
Various Synthetic Pathways and Properties of Biopolymers
Biopolymers are naturally occurring macromolecules, such as proteins,
nucleic acids, and polysaccharides, which are produced by living organisms. Over time,
interest developed in b...
Biopolymers: A comprehensive review
Biopolymers: A comprehensive review
Biopolymers are compounds prepared by using various living organisms, including plants. These are composed of repeated units of the same or similar structure (monomers) linked toge...
Recent progress in the conversion of agricultural waste into functional materials
Recent progress in the conversion of agricultural waste into functional materials
AbstractAgricultural waste is enriched with a variety of environmentally friendly materials that can potentially boost economic growth, reduce the spread of contagious diseases, an...
Ionic complexes of biodegradable polyelectrolytes
Ionic complexes of biodegradable polyelectrolytes
Biopolymers are polymers produced by living organisms. A more broad classification would embrace also those polymers synthesized from renewable sources which are able to display bi...
Conformational change from antiparallel β‐sheet to α‐helix in a series of depsipeptide, ‐(Leu‐Leu‐Lac)n‐: Syntheses, spectroscopic studies, and crystal structures of Boc‐Leu‐Lac‐OEt and Boc‐(Leu‐Leu‐Lac)n‐OEt (n = 1, 2)
Conformational change from antiparallel β‐sheet to α‐helix in a series of depsipeptide, ‐(Leu‐Leu‐Lac)n‐: Syntheses, spectroscopic studies, and crystal structures of Boc‐Leu‐Lac‐OEt and Boc‐(Leu‐Leu‐Lac)n‐OEt (n = 1, 2)
AbstractThe depsipeptides Boc‐Leu‐Lac‐OEt (1) and Boc‐(Leu‐Leu‐Lac)n‐OEt (n = 1, 2) (2 and 3, respectively) (Boc = tert‐butyloxycarbonyl, Lac = L‐lactic acid residue) has been synt...
The Blue Economy's Biopolymers: Using Marine Biomass to Develop Sustainable Polymers—Overview
The Blue Economy's Biopolymers: Using Marine Biomass to Develop Sustainable Polymers—Overview
ABSTRACT
To solve the global plastic pollution challenge through sustainable polymer innovation, this review article explores the transformational potential of bi...

