Air-stable ink for scalable, high-throughput layer deposition
Abstract
A method for producing and depositing air-stable, easily decomposable, vulcanized ink on any of a wide range of substrates is disclosed. The ink enables high-volume production of optoelectronic and/or electronic devices using scalable production methods, such as roll-to-roll transfer, fast rolling processes, and the like.
- Inventors:
- Issue Date:
- Research Org.:
- The Board of Trustees of the Leland Stanford Junior University, Palo Alto, CA, USA
- Sponsoring Org.:
- USDOE
- OSTI Identifier:
- 1119689
- Patent Number(s):
- 8647897
- Application Number:
- 13/426,307
- Assignee:
- The Board of Trustees of the Leland Stanford Junior University (Palo Alto, CA)
- Patent Classifications (CPCs):
-
H - ELECTRICITY H01 - BASIC ELECTRIC ELEMENTS H01L - SEMICONDUCTOR DEVICES
H - ELECTRICITY H05 - ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR H05K - PRINTED CIRCUITS
- DOE Contract Number:
- FG36-08GO18005
- Resource Type:
- Patent
- Country of Publication:
- United States
- Language:
- English
- Subject:
- 36 MATERIALS SCIENCE
Citation Formats
Weil, Benjamin D, Connor, Stephen T, and Cui, Yi. Air-stable ink for scalable, high-throughput layer deposition. United States: N. p., 2014.
Web.
Weil, Benjamin D, Connor, Stephen T, & Cui, Yi. Air-stable ink for scalable, high-throughput layer deposition. United States.
Weil, Benjamin D, Connor, Stephen T, and Cui, Yi. Tue .
"Air-stable ink for scalable, high-throughput layer deposition". United States. https://www.osti.gov/servlets/purl/1119689.
@article{osti_1119689,
title = {Air-stable ink for scalable, high-throughput layer deposition},
author = {Weil, Benjamin D and Connor, Stephen T and Cui, Yi},
abstractNote = {A method for producing and depositing air-stable, easily decomposable, vulcanized ink on any of a wide range of substrates is disclosed. The ink enables high-volume production of optoelectronic and/or electronic devices using scalable production methods, such as roll-to-roll transfer, fast rolling processes, and the like.},
doi = {},
journal = {},
number = ,
volume = ,
place = {United States},
year = {2014},
month = {2}
}
Works referenced in this record:
Isocyanurate compound and method for producing the same
patent, July 2002
- Takeyama, Toshiaki; Hidaka, Motohiko; Akimoto, Kazuhiko
- US Patent Document 6,414,146
Solution-based fabrication of photovoltaic cell
patent, February 2010
- Yu, Dong; Fidanza, Jacqueline; Roscheisen, Martin R.
- US Patent Document 7,663,057
Method for fabricating copper/indium/gallium/selenium solar cell by wet process under non-vacuum condition
patent, September 2011
- Chuang, Chuan-Lung
- US Patent Document 8,026,124
Chalcogenide solar cells
patent, November 2011
- Van Duren, Jeroen; Bollman, Brent; Roscheisen, Martin R.
- US Patent Document 8,048,477
Photo-erasable ink for full color printing
patent, November 2012
- Chretien, Michelle N.; Iftime, Gabriel; Norsten, Tyler B.
- US Patent Document 8,303,699
Atypical Kesterite Compositions
patent-application, November 2011
- Johnson, Lynda Kaye; Rosenfeld, H. David; Radu, Daniela Rodica
- US Patent Application; 12/784799; 20110287573
Copper Zinc Tin Nanoparticles
patent-application, March 2012
- Radu, Daniela Rodica; Casper, Jonathan V.; Johnson, Lynda Kaye
- US Patent Application 13/320156; 20120055554
CuInS 2 Solar Cells by Air-Stable Ink Rolling
journal, May 2010
- Weil, Benjamin D.; Connor, Stephen T.; Cui, Yi
- Journal of the American Chemical Society, Vol. 132, Issue 19