Photovoltaic devices including nitrogen-containing metal contact
US-2015380601-A1 · Dec 31, 2015 · US
US2020185548A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2020185548-A1 |
| Application number | US-201716323762-A |
| Country | US |
| Kind code | A1 |
| Filing date | Jul 12, 2017 |
| Priority date | Aug 23, 2016 |
| Publication date | Jun 11, 2020 |
| Grant date | — |
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Provided is a conductive paste for forming bus bar electrodes having high adhesive strength with respect to a passivation film in a crystalline silicon solar cell without having a detrimental effect on the passivation film so as to affect solar cell properties. The conductive paste is a conductive paste formed on a passivation film of a solar cell, containing: (A) silver particles, (B) an organic vehicle, and (C) glass fit containing TeO 2 at 1.0 mol % to 20 mol % and Bi 2 O 3 at 10 mol % to 30 mol %.
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1 . A conductive paste for forming an electrode on a passivation film of a solar cell, the conductive paste comprising: (A) silver particles, (B) an organic vehicle, and (C) a glass frit comprising TeO 2 at 1.0 mol % to 20 mol % and Bi 2 O 3 at 10 mol % to 30 mol %. 2 . The conductive paste according to claim 1 , wherein the specific surface area of the silver particles (A) is 0.4 m 2 /g to 1.5 m 2 /g. 3 . The conductive paste according to claim 1 , wherein the organic vehicle (B) comprises at least one of ethyl cellulose, rosin ester, butyral, acrylic and organic solvent. 4 . The conductive paste according to claim 1 , wherein the glass frit (C) further comprises SiO 2 at 5 mol % to 30 mol %. 5 . The conductive paste according to claim 1 , wherein the glass frit (C) further comprises ZnO at 10 mol % to 30 mol %. 6 . The conductive paste according to claim 1 , wherein the glass frit (C) further comprises Al 2 O 3 at 1 mol % to 10 mol %. 7 . The conductive paste according to claim 1 , wherein the glass frit (C) further comprises TiO 2 at 1 mol % to 20 mol %. 8 . The conductive paste according to claim 1 , comprising at least one additive selected from titanium resinate, titanium oxide, cobalt oxide, cerium oxide, silicon nitride, copper-manganese-tin, aluminosilicate and aluminum silicate. 9 . The conductive paste according to claim 1 , wherein the conductive paste is a conductive paste for forming back side TAB electrodes. 10 . A solar cell in which electrodes are formed using the conductive paste according to claim 1 . 11 . The solar cell according to claim 10 , wherein the specific surface area of the silver particles (A) in the conductive paste is 0.4 m 2 /g to 1.5 m 2 /g. 12 . The solar cell according to claim 10 , wherein the organic vehicle (B) in the conductive paste comprises at least one of ethyl cellulose, rosin ester, butyral, acrylic and organic solvent. 13 . The solar cell according to claim 10 , wherein the glass frit (C) in the conductive paste further comprises SiO 2 at 5 mol % to 30 mol %. 14 . The solar cell according to claim 10 , wherein the glass frit (C) in the conductive paste further comprises ZnO at 10 mol % to 30 mol %. 15 . The solar cell according to claim 10 , wherein the glass frit (C) in the conductive paste further comprises Al 2 O 3 at 1 mol % to 10 mol %. 16 . The solar cell according to claim 10 , wherein the glass frit (C) in the conductive paste further comprises TiO 2 at 1 mol % to 20 mol %. 17 . The solar cell according to claim 10 , wherein the conductive paste comprises at least one additive selected from titanium resinate, titanium oxide, cobalt oxide, cerium oxide, silicon nitride, copper-manganese-tin, aluminosilicate and aluminum silicate. 18 . The solar cell according to claim 10 , wherein the electrodes are back side TAB electrodes of the solar cell.
Tape-automated bond [TAB] connectors · CPC title
using a liquid · CPC title
for photovoltaic cells · CPC title
Material structures, e.g. crystalline structures, film structures or crystal plane orientations · CPC title
for photovoltaic cells · CPC title
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