How does molecular weight effect glass transition temperature?
Answer
625.2k+ views
Hint: We know that glass transition temperature is the range of temperature in which there is change of polymer from glassy state (rigid) to a rubbery state which is more pliable. Chemically glass transition temperature is represented by the symbol of ${T_g}$ and it is a property of amorphous solid.
Complete step by step answer:
Let’s discuss the Flory-Fox equation that gives the relation of molecular weight of a polymer to its glass transition temperature. The mathematical representation of the equation is,
${T_g} = {T_{g,\alpha }} - \dfrac{K}
{{{M_n}}}$
Here, ${T_{g,\alpha }}$ is the maximum value of ${T_g}$ that can be achieved at theoretical infinite molecular mass, ${M_n}$ is molecular mass of the polymer, K is a parameter that is related to the free volume of the polymer.
Let’s discuss the free volume in detail. It is the measure of a room a polymer chain has in which to move in relation to the other polymer chains around it. A polymer composed of long chains has lower free volume compared to the polymer of short chains.
So, a polymer of low molecular mass gives less value of ${T_g}$ and higher molecular mass results in the approach of ${T_g}$ to ${T_{g,\alpha }}$.
So, we can conclude that ${T_g}$ increases with increase of molecular mass of polymer and asymptotically reaches a maximum value.
Note: It is to be noted that, below ${T_g}$ polymers are hard and brittle like glass because of lack of mobility, above ${T_g}$ polymers are soft and flexible like rubber due to some mobility and above ${T_g}$ mechanical and physical properties of polymers change.
Complete step by step answer:
Let’s discuss the Flory-Fox equation that gives the relation of molecular weight of a polymer to its glass transition temperature. The mathematical representation of the equation is,
${T_g} = {T_{g,\alpha }} - \dfrac{K}
{{{M_n}}}$
Here, ${T_{g,\alpha }}$ is the maximum value of ${T_g}$ that can be achieved at theoretical infinite molecular mass, ${M_n}$ is molecular mass of the polymer, K is a parameter that is related to the free volume of the polymer.
Let’s discuss the free volume in detail. It is the measure of a room a polymer chain has in which to move in relation to the other polymer chains around it. A polymer composed of long chains has lower free volume compared to the polymer of short chains.
So, a polymer of low molecular mass gives less value of ${T_g}$ and higher molecular mass results in the approach of ${T_g}$ to ${T_{g,\alpha }}$.
So, we can conclude that ${T_g}$ increases with increase of molecular mass of polymer and asymptotically reaches a maximum value.
Note: It is to be noted that, below ${T_g}$ polymers are hard and brittle like glass because of lack of mobility, above ${T_g}$ polymers are soft and flexible like rubber due to some mobility and above ${T_g}$ mechanical and physical properties of polymers change.
Recently Updated Pages
Write structures of the following compounds i 2 Chloro3methylpentane class 11 chemistry CBSE

What is BLO What is the full form of BLO class 8 social science CBSE

Explain the Treaty of Vienna of 1815 class 10 social science CBSE

A Paragraph on Pollution in about 100-150 Words

XIX+XXX A 49 B 51 C 55 D 44 class 5 maths CBSE

If x a + bt + ct2 where x is in meters and t is in class 11 physics CBSE

Trending doubts
One Metric ton is equal to kg A 10000 B 1000 C 100 class 11 physics CBSE

Find the value of the expression given below sin 30circ class 11 maths CBSE

What do you mean by retardation What is its SI uni class 11 physics CBSE

Draw a diagram of nephron and explain its structur class 11 biology CBSE

10 examples of friction in our daily life

Difference between physical and chemical change class 11 chemistry CBSE

