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2D II–VI semiconductor nanoplatelets: From material synthesis to optoelectronic integration
The field of colloidal synthesis of semiconductors emerged 40 years ago and has reached a
certain level of maturity thanks to the use of nanocrystals as phosphors in commercial …
certain level of maturity thanks to the use of nanocrystals as phosphors in commercial …
Anisotropic heavy-metal-free semiconductor nanocrystals: synthesis, properties, and applications
Heavy-metal (Cd, Hg, and Pb)-containing semiconductor nanocrystals (NCs) have been
explored widely due to their unique optical and electrical properties. However, the toxicity …
explored widely due to their unique optical and electrical properties. However, the toxicity …
Dipole–dipole-interaction-assisted self-assembly of quantum dots for highly efficient light-emitting diodes
The external quantum efficiency of state-of-the-art quantum dot light-emitting diodes is
limited by the low photon out-coupling efficiency. Light-emitting diodes using oriented …
limited by the low photon out-coupling efficiency. Light-emitting diodes using oriented …
Quantum dots for display applications
This article offers a materials‐chemistry perspective for colloidal quantum dots (QDs) in the
field of display, including QD‐enhanced liquid‐crystal‐display (QD‐LCD) and QD‐based …
field of display, including QD‐enhanced liquid‐crystal‐display (QD‐LCD) and QD‐based …
New frontiers for the materials genome initiative
Abstract The Materials Genome Initiative (MGI) advanced a new paradigm for materials
discovery and design, namely that the pace of new materials deployment could be …
discovery and design, namely that the pace of new materials deployment could be …
Self-assembly of anisotropic nanoparticles into functional superstructures
Self-assembly of colloidal nanoparticles (NPs) into superstructures offers a flexible and
promising pathway to manipulate the nanometer-sized particles and thus make full use of …
promising pathway to manipulate the nanometer-sized particles and thus make full use of …
Colloidal halide perovskite nanoplatelets: an exciting new class of semiconductor nanomaterials
Metal halide perovskites are a family of semiconductor materials with exciting properties
such as long charge carrier diffusion lengths, ease of synthesis and composition tunability …
such as long charge carrier diffusion lengths, ease of synthesis and composition tunability …
Colloidal quantum nanostructures: emerging materials for display applications
Colloidal semiconductor nanocrystals (SCNCs) or, more broadly, colloidal quantum
nanostructures constitute outstanding model systems for investigating size and …
nanostructures constitute outstanding model systems for investigating size and …
Direct linearly polarized electroluminescence from perovskite nanoplatelet superlattices
Polarized light is critical for a wide range of applications, but is usually generated by filtering
unpolarized light, which leads to substantial energy losses and requires additional optics …
unpolarized light, which leads to substantial energy losses and requires additional optics …
Strain-graded quantum dots with spectrally pure, stable and polarized emission
Structural deformation modifies the bandgap, exciton fine structure and phonon energy of
semiconductors, providing an additional knob to control their optical properties. The impact …
semiconductors, providing an additional knob to control their optical properties. The impact …