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Molecular Mass of Polymers & Biodegradable Polymers | Chemistry for JEE Main & Advanced PDF Download

BIODEGRADABLE POLYMERS

By far the largest use of synthetic polymers is as plastic. A major portion of it is used as throwaway containers and packing materials. Since plastics do not disintergrate by themselves, they are not biodegradable over a period of time. Non-biodegradability is due the carbon-carbon bonds of addition polymers which are inert to enzyme catalysed reaction. These polymers create pollution problem.

Biodegradable polymers are the polymers that can be broken into small segments by enzyme catalysed reactions using enzymes produced by microorganisms. In biodegradable polymers, bonds that can be broken by the enzymes are inserted into the polymers. Therefore, when they are buried as waste, enzymes present in the ground can degrade the polymer.

One method involves inserting hydrolysable ester group into the polymer. For example, when acetal (I) is added during the polymerzation of alkene, ester group is inserted into the polymeric chains.

Molecular Mass of Polymers & Biodegradable Polymers | Chemistry for JEE Main & Advanced

Aliphatic polyesters are important class of biodegradable polymers. Some examples are described below:

(1) Poly - Hydroxybutyrate-CO-b-Hydroxyvalerate (PHBV)-

It is a copolymer of 3-hydroxybutanoic acid and 3 hydroxypentanoic acid, in which the monomer units are connected by ester linkages.

CH3-CH(OH)-CH2-COOH CH3-CH2-CH(OH)-CH2 -COOH →  Molecular Mass of Polymers & Biodegradable Polymers | Chemistry for JEE Main & Advanced  where R = CH3,C2 H5

The properties of PHBV vary according to the ratio of both the acids. 3-Hydroxybutanoic acid provides stiffness and 3-hydroxypentanoic acid imparts flexibility to the co-polymer. It is used in special packaging of orthopaedic devices and even in controlled drug release. When a drug is put in a capsule of PHBV, it is released only after the polymer is degraded. PHBV also undergoes bacterial degradation in the environment.

(2) POLY (GLYCOLIC ACID) AND POLY (LACTIC ACID)-

They constitute commercially successful biodegradable polymers such as sutures. Dextron was the first bioabsorbable suture made for biodegradable polyesters for post - operative stitches.

MOLECULAR MASS OF POLYMER:

Normally, a polymer contains chains of varying lengths and therefore, its molecular mass is always expressed as an average. In contrast, natural polymers such as protein contains chain of identical length and hence, have definite molecular mass.

The molecular mass of a polymer is expressed as:

(a) Number average molecular mass (Mn):

Molecular Mass of Polymers & Biodegradable Polymers | Chemistry for JEE Main & Advanced

Where Ni is the number of molecules of molecular mass Mi

(b) Weight average molecular mass (Mw):

Molecular Mass of Polymers & Biodegradable Polymers | Chemistry for JEE Main & Advanced

Methods such as light scattering and ultracentrifuge depend on the mass of individual molecules and yield weight average molecular masses. It is determined by employing methods which depend upon the number of molecules present in the polymer sample viz. colligative properties like osmotic pressure.

The ratio of the weight and number average molecular masses (Mw/Mn) is called Poly Dispersity Index (PDI). Some natural polymers, which are generally monodisperesed, the PDI is unity (i.e. Mw=Mn).

In synthetic polymers, which are always polydispersed, PDI > 1 because Mw is always higher than Mn.

COMMON POLYMERS

Molecular Mass of Polymers & Biodegradable Polymers | Chemistry for JEE Main & Advanced

Molecular Mass of Polymers & Biodegradable Polymers | Chemistry for JEE Main & Advanced

Molecular Mass of Polymers & Biodegradable Polymers | Chemistry for JEE Main & Advanced

Molecular Mass of Polymers & Biodegradable Polymers | Chemistry for JEE Main & Advanced

Molecular Mass of Polymers & Biodegradable Polymers | Chemistry for JEE Main & Advanced

Molecular Mass of Polymers & Biodegradable Polymers | Chemistry for JEE Main & Advanced

Molecular Mass of Polymers & Biodegradable Polymers | Chemistry for JEE Main & Advanced

Molecular Mass of Polymers & Biodegradable Polymers | Chemistry for JEE Main & Advanced

Molecular Mass of Polymers & Biodegradable Polymers | Chemistry for JEE Main & Advanced

Molecular Mass of Polymers & Biodegradable Polymers | Chemistry for JEE Main & Advanced

Molecular Mass of Polymers & Biodegradable Polymers | Chemistry for JEE Main & Advanced

Molecular Mass of Polymers & Biodegradable Polymers | Chemistry for JEE Main & Advanced

Molecular Mass of Polymers & Biodegradable Polymers | Chemistry for JEE Main & Advanced

Molecular Mass of Polymers & Biodegradable Polymers | Chemistry for JEE Main & Advanced

Molecular Mass of Polymers & Biodegradable Polymers | Chemistry for JEE Main & Advanced

Molecular Mass of Polymers & Biodegradable Polymers | Chemistry for JEE Main & Advanced

Molecular Mass of Polymers & Biodegradable Polymers | Chemistry for JEE Main & Advanced

Molecular Mass of Polymers & Biodegradable Polymers | Chemistry for JEE Main & Advanced

Molecular Mass of Polymers & Biodegradable Polymers | Chemistry for JEE Main & Advanced

Molecular Mass of Polymers & Biodegradable Polymers | Chemistry for JEE Main & Advanced        

The document Molecular Mass of Polymers & Biodegradable Polymers | Chemistry for JEE Main & Advanced is a part of the JEE Course Chemistry for JEE Main & Advanced.
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FAQs on Molecular Mass of Polymers & Biodegradable Polymers - Chemistry for JEE Main & Advanced

1. What is the molecular mass of polymers?
Ans. The molecular mass of a polymer refers to the average mass of all the polymer chains in a sample. It is determined by adding up the masses of each individual monomer unit in the polymer chain. The molecular mass is important as it influences the physical and chemical properties of the polymer, such as its melting point, solubility, and mechanical strength.
2. How is the molecular mass of a polymer calculated?
Ans. The molecular mass of a polymer can be calculated by summing up the masses of all the monomer units in the polymer chain. Each monomer unit has a specific molecular weight, which is usually provided by the manufacturer or can be determined using analytical techniques such as mass spectrometry. By multiplying the molecular weight of each monomer unit by the number of times it appears in the polymer chain, the total molecular mass can be obtained.
3. What are biodegradable polymers?
Ans. Biodegradable polymers are a type of polymer that can be broken down into simpler compounds by natural processes, such as microbial degradation, enzymatic reactions, or exposure to certain environmental conditions. These polymers can be derived from renewable resources, such as plants or microorganisms, and offer an environmentally friendly alternative to traditional non-biodegradable polymers.
4. How do biodegradable polymers contribute to sustainability?
Ans. Biodegradable polymers play a crucial role in promoting sustainability as they can help reduce pollution and waste accumulation. By degrading into harmless compounds, they prevent the accumulation of persistent plastic waste in the environment. Additionally, biodegradable polymers can be produced from renewable resources, reducing the dependence on fossil fuels and minimizing the carbon footprint associated with their production.
5. What are the applications of biodegradable polymers?
Ans. Biodegradable polymers have a wide range of applications in various industries. They are commonly used in packaging materials, such as biodegradable bags and films, to reduce plastic waste. Biodegradable polymers are also used in the medical field for drug delivery systems, tissue engineering scaffolds, and sutures. Moreover, they find applications in agricultural products, such as biodegradable mulch films, which help improve soil health and reduce plastic contamination.
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