Organic-inorganic hybrid perovskite solar cells are attracting considerable attention owing to their advantages such as large absorption coefficient,direct bandgap and high carrier mobility.
Solution-processed white organic light-emitting devices (WOLEDs) have attracted much attention owing to their potential applications for low-cost large-area display and lighting panels,and devices bas
We study the effects of annealing temperature on graphene oxide (GO) memory devices [e.g.,nonvolatile write-once-read-many-time memory cells based on GO] by analyzing the atomic force microscopy image
A blended bimolecular exciplex formation was demonstrated between two individual donor and acceptor molecules,which are Tris (4-carbazoyl-9-ylphenyl) amine (TCTA) and 2,4,6-Tris (3- (pyridin-3-yl) bip
Fluorescent OLEDs based on pure TADF emitters have been reported with external quantum efficiencies (EQE) approaching the best results of phosphorescent OLEDs.
Exploring suitable electrode materials with sufficiently low work function,ambient stability and low-cost is of great technological importance to the development of n-channel OTFTs.
Organic solar cells (OSCs) hold great promise as low-cost and large-area devices and renewable energy sources.But the devices power conversion efficiency (PCE) is limited by the restricted absorption
The possibility of the ZnS:Ag,Al film as highly efficiency electron transfer layer (ETL) has been analyzed and the Bohr radius of impurity atoms has been calculated by using quantum theory.
The electrical properties of highly oriented phthalocyanine copper (CuPc) thin film field-effect transistors (FETs) fabricated by weak epitaxial growth (WEG) on para-sexiphenyl (p-6P) are strongly dep
Atomically thin molybdenum disulfide (MoS2) with a~1.8 eV direct band gap is a promising twodimensional (2D) materials that goes beyond graphene for the next generation of nanoelectronics devices.