Efficient Blue Electroluminescence Using Quantum-Confined Two-Dimensional Perovskites


Autoria(s): Kumar, Sudhir; Jagielski, Jakub; Yakunin, Sergii; Rice, Peter; Chiu, Yu-Cheng; Wang, Mingchao; Nedelcu, Georgian; Kim, Yeongin; Lin, Shangchao; Santos, Elton J. G.; Kovalenko, Maksym V.; Shih, Chih-Jen
Data(s)

29/09/2016

Resumo

Solution-processed hybrid organic–inorganic lead halide perovskites are emerging as one of the most promising candidates for low-cost light-emitting diodes (LEDs). However, due to a small exciton binding energy, it is not yet possible to achieve an efficient electroluminescence within the blue wavelength region at room temperature, as is necessary for full-spectrum light sources. Here, we demonstrate efficient blue LEDs based on the colloidal, quantum-confined 2D perovskites, with precisely controlled stacking down to one-unit-cell thickness (n = 1). A variety of low-k organic host compounds are used to disperse the 2D perovskites, effectively creating a matrix of the dielectric quantum wells, which significantly boosts the exciton binding energy by the dielectric confinement effect. Through the Förster resonance energy transfer, the excitons down-convert and recombine radiatively in the 2D perovskites. We report room-temperature pure green (n = 7–10), sky blue (n = 5), pure blue (n = 3), and deep blue (n = 1) electroluminescence, with record-high external quantum efficiencies in the green-to-blue wavelength region.

Identificador

http://pure.qub.ac.uk/portal/en/publications/efficient-blue-electroluminescence-using-quantumconfined-twodimensional-perovskites(c8bf1345-aadd-465c-93bd-d6dd2aed8793).html

http://dx.doi.org/10.1021/acsnano.6b05775

Idioma(s)

eng

Direitos

info:eu-repo/semantics/closedAccess

Fonte

Kumar , S , Jagielski , J , Yakunin , S , Rice , P , Chiu , Y-C , Wang , M , Nedelcu , G , Kim , Y , Lin , S , Santos , E J G , Kovalenko , M V & Shih , C-J 2016 , ' Efficient Blue Electroluminescence Using Quantum-Confined Two-Dimensional Perovskites ' ACS Nano . DOI: 10.1021/acsnano.6b05775

Tipo

article