Two Are Better Than One

Parvej Alam;Nelson L.C. Leung;Junkai Liu;Tsz Shing Cheung;Xuepeng Zhang;Zikai He;Ryan T.K. Kwok;Jacky W.Y. Lam;Herman H.Y. Sung;Ian D. Williams;Christopher C.S. Chan;Kam Sing Wong;谦 彭;本忠 唐

Hong Kong University of Science and Technology;Harbin Institute of Technology;China Association for Science and Technology

发表时间:2020-6-1

期 刊:Advanced Materials

语 言:English

U R L: http://www.scopus.com/inward/record.url?scp=85084147547&partnerID=8YFLogxK

摘要

Because of their innate ability to store and then release energy, long-persistent luminescence (LPL) materials have garnered strong research interest in a wide range of multidisciplinary fields, such as biomedical sciences, theranostics, and photonic devices. Although many inorganic LPL systems with afterglow durations of up to hours and days have been reported, organic systems have had difficulties reaching similar timescales. In this work, a design principle based on the successes of inorganic systems to produce an organic LPL (OLPL) system through the use of a strong organic electron trap is proposed. The resulting system generates detectable afterglow for up to 7 h, significantly longer than any other reported OLPL system. The design strategy demonstrates an easy methodology to develop organic long-persistent phosphors, opening the door to new OLPL materials.

关键词

charge recombination
charge separation
charge transfer
organic long-persistent luminescence
phosphonium salts

相关科学

工程
机械工程
材料力学
材料科学

文献指纹

化合物

Luminescence

Electron traps

Photonic devices

Phosphors

工程与材料科学

Luminescence

Electron traps

Photonic devices

Phosphors

期刊度量

Scopus度量

年份 CiteScore SJR SNIP
1996
1997
1998
1999 2.791 2.175
2000 3.176 2.104
2001 3.469 2.382
2002 4.168 2.558
2003 4.499 2.731
2004 5.161 2.811
2005 5.826 3.092
2006 6.151 2.873
2007 5.466 2.636
2008 5.655 2.678
2009 5.455 2.698
2010 6.223 2.881
2011 18 6.994 3.333
2012 22 8.558 3.91
2013 25.1 7.564 3.688
2014 26.4 7.747 3.817
2015 30.6 8.625 3.65
2016 30.1 9.184 3.454
2017 32.5 10.579 3.638
2018 34.1 10.108 3.722
2019 41.3 10.571 3.997
2020 43.2

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