Aggregation-induced emission: together we shine, united we soar!

J Mei, NLC Leung, RTK Kwok, JWY Lam… - Chemical …, 2015 - ACS Publications
Light is of essential importance to the universe and humankind. Light has been, and
continues to be, one of the most fundamental and indispensable elements to life and society …

Recent progress in high‐efficiency blue‐light‐emitting materials for organic light‐emitting diodes

Y Im, SY Byun, JH Kim, DR Lee, CS Oh… - Advanced Functional …, 2017 - Wiley Online Library
Organic light‐emitting diodes (OLEDs) are increasingly used in displays replacing traditional
flat panel displays; eg, liquid crystal displays. Especially, the paradigm shifts in displays from …

Aggregation‐induced emission: the whole is more brilliant than the parts

J Mei, Y Hong, JWY Lam, A Qin, Y Tang… - Advanced …, 2014 - Wiley Online Library
“United we stand, divided we fall.”–Aesop. Aggregation‐induced emission (AIE) refers to a
photophysical phenomenon shown by a group of luminogenic materials that are non …

Blue fluorescent emitters: design tactics and applications in organic light-emitting diodes

M Zhu, C Yang - Chemical Society Reviews, 2013 - pubs.rsc.org
Organic light-emitting diodes (OLEDs) are competitive candidates for the next generation flat-
panel displays and solid state lighting sources. Efficient blue-emitting materials have been …

Pyrene-based materials for organic electronics

TM Figueira-Duarte, K Mullen - Chemical reviews, 2011 - ACS Publications
Pyrene is the fruit fly of photochemists. Its unique properties have inspired researchers from
many scientific areas, making pyrene the chromophore of choice in fundamental and …

Bisanthracene‐based donor–acceptor‐type light‐emitting dopants: highly efficient deep‐blue emission in organic light‐emitting devices

JY Hu, YJ Pu, F Satoh, S Kawata… - Advanced Functional …, 2014 - Wiley Online Library
Deep‐blue fluorescent compounds are particularly important in organic light‐emitting
devices (OLEDs). A donor–accepotor (DA)‐type blue‐emitting compound, 1‐(10‐(4 …

Thermally activated delayed fluorescence from azasiline based intramolecular charge-transfer emitter (DTPDDA) and a highly efficient blue light emitting diode

JW Sun, JY Baek, KH Kim, CK Moon, JH Lee… - Chemistry of …, 2015 - ACS Publications
For electroluminescence with delayed fluorescence, the azasiline unit has been introduced
for the first time as a donor in a thermally activated delayed fluorescence (TADF) material …

The development of anthracene derivatives for organic light-emitting diodes

J Huang, JH Su, H Tian - Journal of Materials Chemistry, 2012 - pubs.rsc.org
Organic light-emitting diodes (OLEDs) have been a hot technology for the great promise
applications in full-colour displays and white solid-state lighting. For years, the anthracene …

Similar or totally different: the control of conjugation degree through minor structural modifications, and deep‐blue aggregation‐induced emission luminogens for non …

J Huang, N Sun, Y Dong, R Tang, P Lu… - Advanced Functional …, 2013 - Wiley Online Library
Abstract Four 4, 4′‐bis (1, 2, 2‐triphenylvinyl) biphenyl (BTPE) derivatives, 4, 4′‐bis (1, 2,
2‐triphenylvinyl) biphenyl, 2, 3′‐bis (1, 2, 2‐triphenylvinyl) biphenyl, 2, 4′‐bis (1, 2, 2 …

Carbazole/sulfone hybrid D-π-A-structured bipolar fluorophores for high-efficiency blue-violet electroluminescence

J Ye, Z Chen, MK Fung, C Zheng, X Ou… - Chemistry of …, 2013 - ACS Publications
Based on a D-π-A structural strategy incorporating carbazole as a mild electron-donor and
sulfone as an electron-acceptor with a π-conjugation-breaking feature, two novel blue-violet …