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Publication
Featured researches published by Alexandre Titov.
ACS Applied Materials & Interfaces | 2013
Huaibin Shen; Sheng Wang; Hongzhe Wang; Jinzhong Niu; Lei Qian; Yixing Yang; Alexandre Titov; Jake Hyvonen; Ying Zheng; Lin Song Li
High-quality blue-green emitting ZnxCd(1-x)S(1-y)Se(y)/ZnS core/shell quantum dots (QDs) have been synthesized by a phosphine-free method. The quantum yields of as-synthesized ZnxCd(1-x)S(1-y)Se(y)/ZnS core/shell QDs can reach 50-75% with emissions between 450 and 550 nm. The emissions of such core/shell QDs are not susceptible to ligand loss through the photostability test. Blue-green light-emitting diodes (LEDs) based on the low-cadmium ZnxCd(1-x)S(1-y)Se(y)/ZnS core/shell QDs have been successfully demonstrated. Composite films of poly[9,9-dioctylfluorene-co-N-[4-(3-methylpropyl)]-diphenylamine] (TFB) and ZnO nanoparticle layers were chosen as the hole-transporting and the electron-transporting layers, respectively. Highly bright blue-green QD-based light-emitting devices (QD-LEDs) showing maximum luminance up to 10000 cd/m(2), in particular, the blue QD-LEDs show an unprecedentedly high brightness over 4700 cd/m(2) and peak external quantum efficiency (EQE) of 0.8%, which is the highest value ever reported. These results signify a remarkable progress in QD-LEDs and offer a practicable platform for the realization of QD-based blue-green display and lighting.
ACS Applied Materials & Interfaces | 2013
Huaibin Shen; Qinli Lin; Hongzhe Wang; Lei Qian; Yixing Yang; Alexandre Titov; Jake Hyvonen; Ying Zheng; Lin Song Li
In this paper, we use a simple device architecture based on solution-processed ZnO nanoparticles (NPs) as the electron injection/transport layer and bilayer structure of poly(ethylenedioxythiophene):polystyrene sulfonate (PEDOT:PSS)/poly[9,9-dioctylfluorene-co-N-[4-(3-methylpropyl)]-diphenylamine] (TFB) as the hole injection/transport layer to assess the effect of shell thickness on the properties of quantum-dot-based light emitting diodes (QD-LEDs), comprising CdSe/CdS/ZnS core-shell QDs as the emitting layer. QDs with varying shell thickness were assessed to determine the best option of shell thickness, and the best improvement in device performance was observed when the shell thickness was 2.1 nm. Thereafter, different emissions of QDs, but with optimized same shell thickness (∼2.1 nm), were selected as emitters to be fabricated into same structured QD-LEDs. Highly bright orange-red and green QD-LEDs with peak luminances up to ∼30 000 and ∼52 000 cd m(-2), and power efficiencies of 16 and 19.7 lm W(-1), respectively, were demonstrated successfully. These results may demonstrate a striking basic prototype for the commercialization of QD-based displays and solid-state lightings.
Nature Photonics | 2015
Yixing Yang; Ying Zheng; Weiran Cao; Alexandre Titov; Jake Hyvonen; Jesse R. Manders; Jiangeng Xue; Paul H. Holloway; Lei Qian
Advanced Functional Materials | 2014
Huaibin Shen; Xianwei Bai; Aqiang Wang; Hongzhe Wang; Lei Qian; Yixing Yang; Alexandre Titov; Jake Hyvonen; Ying Zheng; Lin Song Li
Journal of The Society for Information Display | 2015
Jesse R. Manders; Lei Qian; Alexandre Titov; Jake Hyvonen; Jean Tokarz-Scott; Krishna P. Acharya; Yixing Yang; Weiran Cao; Ying Zheng; Jiangeng Xue; Paul H. Holloway
Nanoscale | 2017
Krishna P. Acharya; Alexandre Titov; Jake Hyvonen; Chenggong Wang; Jean Tokarz; Paul H. Holloway
Nanotechnology | 2013
Huaibin Shen; Ying Zheng; Hongzhe Wang; Weiwei Xu; Lei Qian; Yixing Yang; Alexandre Titov; Jake Hyvonen; Lin Song Li
SID Symposium Digest of Technical Papers | 2015
Jesse R. Manders; Lei Qian; Alexandre Titov; Jake Hyvonen; Jean Tokarz-Scott; Jiangeng Xue; Paul H. Holloway
Archive | 2014
Yixing Yang; Alexandre Titov; Jake Hyvonen; Ying Zheng; Lei Qian; Paul H. Holloway
SID Symposium Digest of Technical Papers | 2013
Ying Zheng; Lei Qian; Yixing Yang; Alexandre Titov; Jake Hyvonen; Weiran Cao; Jiangeng Xue; Paul H. Holloway