Colloidal quantum dots (CQDs) are nanoscale building blocks for bottom-up fabrication of semiconducting solids with tailorable properties beyond the possibilities of bulk materials. Achieving ordered, macroscopic crystal-like assemblies has been in the focus of researchers for years, since it would allow exploitation of the quantum-confinement-based electronic properties with tunable dimensionality. Lead-chalcogenide CQDs show especially strong tendencies to self-organize into 2D superlattices with micrometer-scale order, making the array fabrication fairly simple. However, most studies concentrate on the fundamentals of the assembly process, and none have investigated the electronic properties and their dependence on the nanoscale structur...
Self-assembled nanocrystal solids show promise as a versatile platform for novel optoelectronic mate...
Self-assembled nanocrystal solids show promise as a versatile platform for novel optoelectronic mate...
Self-assembled nanocrystal solids show promise as a versatile platform for novel optoelectronic mate...
Colloidal quantum dots (CQDs) are nanoscale building blocks for bottom-up fabrication of semiconduct...
Colloidal quantum dots (CQDs) are nanoscale building blocks for bottom-up fabrication of semiconduct...
Colloidal quantum dots (CQDs) are nanoscale building blocks for bottom-up fabrication of semiconduct...
Colloidal quantum dots (CQDs) are nanoscale building blocks for bottom-up fabrication of semiconduct...
Colloidal quantum dots (CQDs) are nanoscale building blocks for bottom-up fabrication of semiconduct...
Colloidal quantum dots (CQDs) are nanoscale building blocks for bottom-up fabrication of semiconduct...
3D superlattices made of colloidal quantum dots are a promising candidate for the next generation of...
3D superlattices made of colloidal quantum dots are a promising candidate for the next generation of...
3D superlattices made of colloidal quantum dots are a promising candidate for the next generation of...
3D superlattices made of colloidal quantum dots are a promising candidate for the next generation of...
Colloidal quantum dot (QD) solids have long been considered a promising nanomaterial, combining the ...
Self-assembled nanocrystal solids show promise as a versatile platform for novel optoelectronic mate...
Self-assembled nanocrystal solids show promise as a versatile platform for novel optoelectronic mate...
Self-assembled nanocrystal solids show promise as a versatile platform for novel optoelectronic mate...
Self-assembled nanocrystal solids show promise as a versatile platform for novel optoelectronic mate...
Colloidal quantum dots (CQDs) are nanoscale building blocks for bottom-up fabrication of semiconduct...
Colloidal quantum dots (CQDs) are nanoscale building blocks for bottom-up fabrication of semiconduct...
Colloidal quantum dots (CQDs) are nanoscale building blocks for bottom-up fabrication of semiconduct...
Colloidal quantum dots (CQDs) are nanoscale building blocks for bottom-up fabrication of semiconduct...
Colloidal quantum dots (CQDs) are nanoscale building blocks for bottom-up fabrication of semiconduct...
Colloidal quantum dots (CQDs) are nanoscale building blocks for bottom-up fabrication of semiconduct...
3D superlattices made of colloidal quantum dots are a promising candidate for the next generation of...
3D superlattices made of colloidal quantum dots are a promising candidate for the next generation of...
3D superlattices made of colloidal quantum dots are a promising candidate for the next generation of...
3D superlattices made of colloidal quantum dots are a promising candidate for the next generation of...
Colloidal quantum dot (QD) solids have long been considered a promising nanomaterial, combining the ...
Self-assembled nanocrystal solids show promise as a versatile platform for novel optoelectronic mate...
Self-assembled nanocrystal solids show promise as a versatile platform for novel optoelectronic mate...
Self-assembled nanocrystal solids show promise as a versatile platform for novel optoelectronic mate...
Self-assembled nanocrystal solids show promise as a versatile platform for novel optoelectronic mate...