Photocontrolled photochromic electroluminescent and electroconductive polymers for photonics
View Patent ↗The invention relates to photochromic monomers based on benzothiophenes and a method for preparing them, and to photochromic polymers-polyazomethines that are reversibly photocontrollable due to the introduction of photochromic fragments from the class of dihetarylethenes into their structure. The invention provides photochromic photocontrollable polymers for the creation of new information technologies.
1. A method for preparing a photochromic monomer with a general formula,
the method comprising:
acylation of benzothiophene with a dichloranhydride of glutaric acid in methylene chloride in the presence of aluminum chloride;
reductive cyclization of the obtained diketones under the action of TiCl 4 , Zn in THF in the presence of pyridine; and
formylation of the reaction products with dichloromethyl ether in nitrobenzene in the presence of aluminum chloride, wherein R represents a hydrogen atom or a methyl group.
2. A photochromic polyazomethine, comprising:
a photochromic monomer with a general formula,
wherein the photochromic polyazomethine has a molecular weight ranging from about 25,000 to about 50,000; and
wherein the photochromic polyazomethine has a general structural formula:
wherein Alk is CH 3 —C 10 H 21 , y═C══N or —N══C—, n=about 50 to about 100, and
3. A method for preparing the photochromic polyazomethine of claim 2 , comprising:
polycondensation a solution of a photochromic monomer of claim 1 with aromatic diamines or dialdehydes at a temperature of from about 20° C. to about 200° C.
4. A photochromic frame polyazomethine, comprising:
a photochromic monomer with a general formula,
wherein the photochromic frame polyazomethine has a molecular weight of about 30,000 to about 50,000, and
wherein the photochromic frame polyazomethine has a general structural formula:
wherein Alk is CH 3 —C 10 H 21 , y is —C══N— or —N══C—, n is about 50 to about 100, and
5. A method for preparing the frame photochromic polyazomethine of claim 4 , comprising:
polycondensation a solution of the photochromic monomer of claim 1 with frame aromatic diamines or dialdehydes at a temperature of from about 20° C. to about 200° C.
6. A photonic device, comprising: the photochromic polyazomethine of claim 2 .
7. A photonic device, comprising: the photochromic frame polyazomethine of claim 4 .