The ultimate frontier in nanomaterials engineering is to realize their composition control with atomic scale precision to enable fabrication of nanoparticles with desirable size, shape and surface properties. Such control becomes even more useful when growing hybrid nanocrystals designed to integrate multiple functionalities. Here we report achieving such degree of control in a family of rare-earth-doped nanomaterials. We experimentally verify the co-existence and different roles of oleate anions (OA⁻) and molecules (OAH) in the crystal formation. We identify that the control over the ratio of OA⁻ to OAH can be used to directionally inhibit, promote or etch the crystallographic facets of the nanoparticles. This control enables selective gra...
Inorganic nanocrystals with well defined shapes are important for understanding basic size-dependent...
Morphological control of nanocrystals has become increasingly important, as many of their physical ...
Controlling the morphology of organolead halide perovskite crystals is crucial to a fundamental unde...
Thesis by publication.Includes bibliographical references.1. Introduction -- 2. Emission stability a...
The recognition of the strongly dimensionality-dependent physical-chemical properties of inorganic m...
Hybrid nanocrystals combining different properties together are important multifunctional materials ...
YesMetal nanocrystals offer new concepts for the design of nanodevices with a range of potential app...
Rare earth compounds form a large family of functional materials with diverse applications in electr...
Hybrid nanocrystals combining different properties together are important multifunctional materials ...
Controlled synthesis of noble metal nanocrystals has received enormous attention due to the ability ...
This article highlights different synthetic strategies for the preparation of colloidal heterostruct...
Rare-earth nanocrystals (RE NCs) bring the distinct optical, magnetic, and catalytic properties of b...
Rare-earth nanocrystals (RE NCs) bring the distinct optical, magnetic, and catalytic properties of b...
Rare-earth nanocrystals (RE NCs) bring the distinct optical, magnetic, and catalytic properties of b...
Rare-earth nanocrystals (RE NCs) bring the distinct optical, magnetic, and catalytic properties of b...
Inorganic nanocrystals with well defined shapes are important for understanding basic size-dependent...
Morphological control of nanocrystals has become increasingly important, as many of their physical ...
Controlling the morphology of organolead halide perovskite crystals is crucial to a fundamental unde...
Thesis by publication.Includes bibliographical references.1. Introduction -- 2. Emission stability a...
The recognition of the strongly dimensionality-dependent physical-chemical properties of inorganic m...
Hybrid nanocrystals combining different properties together are important multifunctional materials ...
YesMetal nanocrystals offer new concepts for the design of nanodevices with a range of potential app...
Rare earth compounds form a large family of functional materials with diverse applications in electr...
Hybrid nanocrystals combining different properties together are important multifunctional materials ...
Controlled synthesis of noble metal nanocrystals has received enormous attention due to the ability ...
This article highlights different synthetic strategies for the preparation of colloidal heterostruct...
Rare-earth nanocrystals (RE NCs) bring the distinct optical, magnetic, and catalytic properties of b...
Rare-earth nanocrystals (RE NCs) bring the distinct optical, magnetic, and catalytic properties of b...
Rare-earth nanocrystals (RE NCs) bring the distinct optical, magnetic, and catalytic properties of b...
Rare-earth nanocrystals (RE NCs) bring the distinct optical, magnetic, and catalytic properties of b...
Inorganic nanocrystals with well defined shapes are important for understanding basic size-dependent...
Morphological control of nanocrystals has become increasingly important, as many of their physical ...
Controlling the morphology of organolead halide perovskite crystals is crucial to a fundamental unde...