DIRECT-STRUCTURABLE FORMULATIONS BASED ON METAL OXIDE PRECURSORS FOR PRODUCING OXIDIC LAYERS
The invention relates to direct-structurable coating compositions comprising a metal oxide precursor, a photoacid generator, and a solvent. The present invention also relates to the use of such a coating composition to produce directly structured metal oxide layers, a method for producing metal oxide layers using such a coating composition, a metal oxide-containing layer produced according to such a method, and the use of such a metal oxide-containing layer to produce electronic components, in particular to produce transistors, diodes, sensors or solar cells.
1 . A coating composition comprising:
a) a metal oxide precursor,
b) a photoacid generator and
c) a solvent.
2 . The coating composition according to claim 1 , wherein the metal oxide precursor comprises a metal atom selected from the group consisting of In, Zn, Ga, Y, Sn, Ge, Sc, Ti, Zr, Al, W, Mo, Ni, Cr, Fe, Hf and Cu.
3 . The coating composition according to claim 1 , wherein the metal oxide precursor comprises a ligand selected from the group consisting of oxo radicals, hydroxyl radicals, alkoxy radicals, carboxyl radicals, β-diketonate radicals, halide radicals, nitrate radicals and secondary and primary amine radicals.
4 . The coating composition according to claim 1 , wherein the photoacid generator releases one or more acid molecules under the action of electromagnetic radiation.
5 . The coating composition according to claim 3 , wherein the a photoacid generator, with respect to the acid molecules that can be released under the action of electromagnetic radiation, is present in the composition in at least an equimolar ratio relative to the metal oxide precursor.
6 . The coating composition according to claim 1 , wherein the solvent is selected from the group consisting of β-diketones, ether alcohols, alcohols, ethers and esters.
7 . A directly structured metal oxide layer comprising the coating composition according to claim 1 .
8 . A method for producing metal oxide layers, wherein the method comprises the following steps:
(I) coating a substrate with the coating composition according to claim 1 ;
(II) exposing the coating thus applied;
(III) developing the coating.
9 . The method according to claim 8 , wherein the coating of the substrate in step (I) is effected by means of a coating method selected from the group consisting of printing methods, spraying methods, rotary coating methods, dipping methods and methods selected from meniscus coating, slit coating, slot-die coating and curtain coating.
10 . The method according to claim 8 , wherein the photoacid generator in the coating composition releases acid molecules in the course of the exposure in step (II) that alter the solubility of the coating.
11 . The method according to claim 8 , wherein the exposure in step (II) is effected by means of irradiation with UV, IR or VIS radiation.
12 . The method according to claim 8 , wherein the development is effected by treatment with at least one solvent selected from the group consisting of aqueous bases, aqueous acids, water, alcohols, ketones, esters and mixtures of the above.
13 . The method according to claim 8 , wherein the method further comprises a step (IV) of thermal conversion of the developed coating.
14 . A metal oxide-containing layer produced by a method according to claim 8 .
15 . An electronic component comprising the metal oxide-containing layer according to claim 14 .
16 . The coating composition according to claim 2 , wherein the metal oxide precursor comprises a ligand selected from the group consisting of oxo radicals, hydroxyl radicals, alkoxy radicals, carboxyl radicals, β-diketonate radicals, halide radicals, nitrate radicals and secondary and primary amine radicals.
17 . The coating composition according to claim 2 , wherein the photoacid generator releases one or more acid molecules under the action of electromagnetic radiation.
18 . The coating composition according to claim 3 , wherein the photoacid generator releases one or more acid molecules under the action of electromagnetic radiation.
19 . The coating composition according to claim 16 , wherein the a photoacid generator, with respect to the acid molecules that can be released under the action of electromagnetic radiation, is present in the composition in at least an equimolar ratio relative to the metal oxide precursor.
20 . The coating composition according to claim 2 , wherein the solvent is selected from the group consisting of β-diketones, ether alcohols, alcohols, ethers and esters.