Invention Grant
- Patent Title: Quantitative intramolecular fission in oligoacenes, materials, and methods of use thereof
-
Application No.: US15536964Application Date: 2015-12-17
-
Publication No.: US10752730B2Publication Date: 2020-08-25
- Inventor: Luis Miguel Campos , Matthew Y. Sfeir , Samuel Nathan Sanders , Elango Kumarasamy , Andrew Brian Pun , Michael Louis Steigerwald
- Applicant: THE TRUSTEES OF COLUMBIA UNIVERSITY IN THE CITY OF NEW YORK , BROOKHAVEN SCIENCE ASSOCIATES, LLC
- Applicant Address: US NY New York US NY Upton
- Assignee: The Trustees of Columbia University in the City of New York,Bookhaven Science Associates, LLC
- Current Assignee: The Trustees of Columbia University in the City of New York,Bookhaven Science Associates, LLC
- Current Assignee Address: US NY New York US NY Upton
- Agency: Hunton Andrews Kurth LLP
- International Application: PCT/US2015/066529 WO 20151217
- International Announcement: WO2016/100754 WO 20160623
- Main IPC: C08G61/10
- IPC: C08G61/10 ; H01L51/00 ; C07C50/24 ; C07F7/08

Abstract:
The present invention provides soluble, stable singlet fission (SF) compounds, compositions, materials, methods of their use, and methods for their preparation that provide efficient intramolecular singlet fission (iSF) and multiple excitons. The SF compound may be a dimer, an oligomer, or a polymer of polyoligoacenes, where for example, the compound achieves a triplet yield reaching about 200% per absorbed photon. In this system, SF does not depend on intermolecular inter-actions. Instead, SF is an intrinsic property of the molecule and therefore occurs independent of intermolecular interactions. Singlet fission has the potential to significantly improve the photocurrent in single junction solar cells and thus raise the Shockley-Queisser power conversion efficiency limit from about 33% to about 46% or greater. Quantitative SF yield at room temperature has only been observed in crystalline solids or aggregates of higher acenes.
Public/Granted literature
- US20180258217A1 QUANTITATIVE INTRAMOLECULAR FISSION IN OLIGOACENES, MATERIALS, AND METHODS OF USE THEREOF Public/Granted day:2018-09-13
Information query