Conductor for a solar cell
View Patent ↗The paste composition of the instant invention consists of silver powder, glass frit, Bi 2 O 3 , metal additives and an organic medium. The present invention is further directed to an electrode formed from the paste composition and a semiconductor device and, in particular, a soar cell comprising such an electrode. The paste compositions provide a solderable electrode, particularly useful for forming solar cell back side buss bars on an aluminum layer that covers the entire back side surface of the solar cell.
1. A paste composition consisting of:
(a) 40-80 wt % silver powder;
(b) 3-20 wt % glass frit selected from the group consisting of (i) a first frit consisting of 85-97 wt % V 2 O 5 and 3-15 wt % B 2 O 3 , (ii) a second frit consisting of 75-85 wt % V 2 O 5 , 13-23 wt % P 2 O 5 and 0.1-2 wt % TiO 2 , (iii) a third glass frit consisting of 85-97 wt % V 2 O 5 , 2-14 wt % B 2 O 3 , 0.1-4 wt % P 2 O 5 and 0.01-1 wt % TiO 2 and (iv) mixtures thereof, wherein the oxide wt % are based on the total weight of each glass frit, respectively:
(c) 0.1-3 wt % Bi 2 O 3 ;
(d) 0-3 wt % metal selected from the group consisting of Cu, Zn, Ti, Mn, Fe, Co, Ni, Mo, Zr and mixtures thereof; and
(e) 10-30 wt % organic medium;
wherein the silver powder, the glass frit, the Bi 2 O 3 and the metal are dispersed in the organic medium and wherein the wt % of the silver powder, the glass frit, the Bi 2 O 3 , the metal and the organic medium are based on the total weight of the paste composition.
2. The paste composition of claim 1 , wherein said glass frit contains 85-97 wt % V 2 O 5 , based on the total weight of said glass frit.
3. The paste composition of claim 1 , wherein said paste composition consists of 0.1-3 wt % of a metal selected from the group consisting of Cu, Zn and mixtures thereof, based on the total weight of the paste composition.
4. The paste composition of claim 1 , said glass frit consisting of a mixture of said first glass frit and said third glass frit.
5. A solar cell comprising:
(i) an aluminum back side electrode covering the entire surface of the back side of the solar cell; and
(ii) a tabbing bus bar electrode formed by firing a paste composition, said paste composition consisting of:
(a) 40-80 wt % silver powder;
(b) 3-20 wt % glass frit selected from the group consisting of (i) a first frit consisting of 85-97 wt % V 2 O 5 and 3-15 wt % B 2 O 3 , (ii) a second frit consisting of 75-85 wt % V 2 O 5 , 13-23 wt % P 2 O 5 and 0.1-2 wt % TiO 2 , (iii) a third glass frit consisting of 85-97 wt % V 2 O 5 , 2-14 wt % B 2 O 3 0.1-4 wt % P 2 O 5 and 0.01-1 wt % TiO 2 and (iv) mixtures thereof, wherein the oxide wt % are based on the total weight of each glass frit, respectively:
(c) 0.1-3 wt % Bi 2 O 3 ;
(d) 0-3 wt % metal selected from the group consisting of Cu, Zn, Ti, Mn, Fe, Co, Ni, Mo, Zr and mixtures thereof; and
(e) 10-30 wt % organic medium;
wherein the silver powder, the glass frit, the Bi 2 O 3 and the metal are dispersed in the organic medium, wherein the wt % of the silver powder, the glass frit, the Bi 2 O 3 , the metal and the organic medium are based on the total weight of the paste composition and wherein the paste composition is deposited onto portions of the aluminum back side electrode.
6. The solar cell of claim 5 , wherein said glass frit contains 85-97 wt % V 2 O 5 , based on the total weight of said glass frit.
7. The solar cell of claim 5 , wherein said paste composition consists of 0.1-3 wt % of a metal selected from the group consisting of Cu, Zn and mixtures thereof, based on the total weight of the paste composition.
8. The paste composition of claim 1 , said glass frit consisting of said first glass frit.
9. The solar cell of claim 5 , said glass frit consisting of said first glass frit.