Electrically conductive paper
The present invention relates to an electrically conductive paper structure and a method for its production, as well as the use of the electrically conductive paper structure, for example as a heating element.
1. An electrically conductive paper structure comprising a paper structure having electrodes formed from an electrically conducting ink, wherein the ink is substantially absorbed into the paper structure so that there is no substantial increase in the thickness of the paper structure, wherein the increase in the thickness of the paper structure due to the presence of the ink is less than 50 μm, a substantial part of the ink being located within the paper structure is greater than 50% of the ink, and the electrodes are embedded within the paper structure to a depth of 10 μm to 80 μm.
2. The electrically conductive paper structure of claim 1 , wherein the paper structure has an air permeability of between about 50 and 300 l/m 2 /s.
3. The electrically conductive paper structure of claim 1 , wherein the electrically conducting ink is solvent-free.
4. The electrically conductive paper structure of claim 1 , wherein the electrodes are between 1 and 50 mm wide, and/or are embedded within the paper structure to a depth of 10 μm to 60 μm.
5. The electrically conductive paper structure of claim 1 , wherein any increase in the thickness of the paper structure due to the presence of the electrically conducting ink is less than 15 μm.
6. A method of using electrically conductive paper structure, comprising selecting the electrically conductive paper structure according to claim 1 as a heating element, and passing electricity through the paper structure using the electrodes in order to generate heat.
7. A method of forming electrodes on an electrically conductive paper structure comprising selecting electrically conductive paper and printing electrically conductive ink onto the electrically conductive paper, wherein the ink is substantially absorbed into the electrically conductive paper structure so that there is no substantial increase in the thickness of the paper structure, wherein the increase in the thickness of the paper structure due to the presence of the ink is less than 50 μm, a substantial part of the ink being located within the paper structure is greater than 50% of the ink, and the electrodes are embedded within the paper structure to a depth of 10 μm to 80 μm.
8. The method of claim 7 , wherein the ink is applied to the paper structure using one of the following printing techniques: screen printing; pad printing; flexo printing; gravure printing; 3D printing; and offset printing.
9. The method of claim 7 , wherein the electrically conducting ink has a viscosity between 1 and 100 Pa·s.
10. The method of claim 7 , wherein the electrically conducting ink has a viscosity between 5 to 60 Pa·s.