Polymer aerogel for window glazings
An energy efficient window includes a plate of glass having a first side and a second side opposite the first side. A polymer aerogel thermal barrier having a first side and a second side is further provided. One of the first side and the second side of the polymer aerogel thermal barrier is located on one of the first side and the second side of the plate glass.
1. A method of forming an energy efficient window pane, the method comprising:
providing a plate of glass having a first side and a second side;
forming a polymer aerogel thermal barrier having a first side and a second side, the forming comprising
stable free radical polymerization (SFRP) using stable nitroxide radicals; and
associating at least one of the first side and the second side of the polymer aerogel thermal barrier with at least one of the first side and the second side of the plate of glass.
2. The method according to claim 1 wherein the aerogel comprises a polymer backbone comprising OH groups; and wherein the aerogel is further rendered hydrophobic by treatment with chloro trimethyl silane and higher hydrocarbon substituted chloro silane analogues.
3. The method of claim 1 , wherein the polymer aerogel includes pores having an average pore size in the range of from about 2 nm to about 50 nm.
4. The method of claim 1 , wherein the polymer aerogel includes pores having an average pore size in the range of from about 3 nm to about 20 nm.
5. The method of claim 1 , wherein the polymer aerogel includes pores having an average pore size in the range of from about 5 nm to about 8 nm.
6. A method for forming a polymer aerogel comprising:
stable free radical polymerization (SFRP) using stable nitroxide radicals.
7. The method of claim 6 , wherein the aerogel comprises a polymer backbone comprising OH groups; and wherein the aerogel is further rendered hydrophobic by treatment with chloro trimethyl silane and higher hydrocarbon substituted chloro silane analogues.
8. The method of claim 6 , wherein the polymer aerogel includes pores having an average pore size in the range of from about 3 nm to about 20 nm.
9. The method of claim 6 , wherein the polymer aerogel includes pores having an average pore size in the range of from about 5 nm to about 8 nm.