PHOTOINDUCED CHARGE-TRANSFER MATERIALS FOR NONLINEAR OPTICAL APPLICATIONS

Patent №

US 7,125,578

Granted

2006-10-24

Filed 1999

Owner

REGENTS OF THE UNIVERSITY OF CALIFORNIA, THE

+1 more

AI components

1

hardware

Assignment

Recorded

Dataset

AIPD

2023_r1 edition

Application

09298297

A method using polyelectrolyte self-assembly for preparing multi-layered organic molecular materials having individual layers which exhibit ultrafast electron and/or energy transfer in a controlled direction occurring over the entire structure. Using a high molecular weight, water-soluble, anionic form of poly-phenylene vinylene, self-assembled films can be formed which show high photoluminescence quantum efficiency (QE). The highest emission QE is achieved using poly(propylene-imine) (PPI) dendrimers as cationic binders. Self-quenching of the luminescence is observed as the solid polymer film thickness is increased and can be reversed by inserting additional spacer layers of transparent polyelectrolytes between each active conjugated layer, such that the QE grows with thickness. A red shift of the luminescence is also observed as additional PPV layers are added. This effect persists as self-quenching is eliminated. Charge transfer superlattices can be formed by additionally incorporating C60 acceptor layers.

AI hardwareG02F 1/3618B82Y 20/00

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AI hardware0.62
Machine learning0.00
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Ownership

REGENTS OF THE UNIVERSITY OF CALIFORNIA, THE

assignment · 127430267

LOS ALAMOS NATIONAL SECURITY, LLC

assignment · 179050093

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