Solution-processable Hole-transporting Material Containing Fluorenyl Core and Triple-carbazolyl Terminals: Synthesis and Application to Enhancement of Electroluminescence
Overview
Chemistry
Authors
Affiliations
A novel solution-processable, efficient hole-transporting material 2,4,7-tri[2-(9-hexylcarbazole)ethenyl]-9,9-dihexylfluorene (FC), composed of a fluorenyl core and triple-carbazolyl terminals, is successfully synthesized and well characterized. The FC is a thermally stable, amorphous material because of its aromatic and asymmetric structure. The highest occupied molecular orbital (HOMO) level of FC is -5.21 eV, as determined by cyclic voltammetry, implying its applicability as a hole-transporting layer (HTL) to promote hole injection. Furthermore, the FC could be deposited by a spin-coating process to obtain a homogeneous HTL film, more convenient and cost-effective than conventional NPB which must be deposited by vacuum vapor deposition. When fabricated as multi-layer OLED [ITO/PEDOT:PSS/HTL(25 nm)/Alq3(50 nm)/LiF(0.5 nm)/Al(100 nm)], the maximum brightness (21,400 cd m(-2)) and current efficiency (3.20 cd A(-1)) based on the FC are superior to those using conventional NPB as the hole-transporting layer. In addition, a homogeneous FC film is readily prepared by simple wet processes (spin-coating). Our results indicate that the FC is a promising optoelectronic material which is readily processed by wet methods such as spin-coating.
Dabuliene A, Shi Z, Leitonas K, Lung C, Volyniuk D, Kaur K ACS Appl Mater Interfaces. 2024; 16(23):30239-30254.
PMID: 38808540 PMC: 11181279. DOI: 10.1021/acsami.4c04105.
Park J, Kwak S, Park H, Hwang D Nanomaterials (Basel). 2023; 13(13).
PMID: 37446451 PMC: 10343803. DOI: 10.3390/nano13131934.
Joseph V, Justin Thomas K, Sahoo S, Singh M, Dubey D, Jou J ACS Omega. 2019; 3(12):16477-16488.
PMID: 31458283 PMC: 6644140. DOI: 10.1021/acsomega.8b02198.