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Quantum dots with a III-V core and an alloyed II-VI external shell
Free accessEuropean Patent Office | 2024| -
QUANTUM DOTS WITH A III-V CORE AND AN ALLOYED II-VI EXTERNAL SHELL
Free accessEuropean Patent Office | 2023| -
QUANTUM DOTS WITH A III-V CORE AND AN ALLOYED II-VI EXTERNAL SHELL
Free accessEuropean Patent Office | 2022| -
A METHOD TO PREPARE SURFACE STABILIZED QUANTUM DOTS AND SURFACE STABILIZED QUANTUM DOTS RESULTING FROM SUCH METHOD
Free accessEuropean Patent Office | 2022| -
A method to prepare surface stabilized quantum dots and surface stabilized quantum dots resulting from such method
Free accessEuropean Patent Office | 2022| -
Quantum dots with a III-V core and an alloyed II-VI external shell
Free accessEuropean Patent Office | 2022| -
A METHOD TO PREPARE SURFACE STABILIZED QUANTUM DOTS AND SURFACE STABILIZED QUANTUM DOTS RESULTING FROM SUCH METHOD
Free accessEuropean Patent Office | 2022| -
QUANTUM DOTS WITH A III-V CORE AND AN ALLOYED II-VI EXTERNAL SHELL
Free accessEuropean Patent Office | 2021| -
A METHOD TO PREPARE SURFACE STABILIZED QUANTUM DOTS AND SURFACE STABILIZED QUANTUM DOTS RESULTING FROM SUCH METHOD
Free accessEuropean Patent Office | 2021| -
A METHOD TO PREPARE SURFACE STABILIZED QUANTUM DOTS AND SURFACE STABILIZED QUANTUM DOTS RESULTING FROM SUCH METHOD
Free accessEuropean Patent Office | 2021| -
A METHOD TO PREPARE SURFACE STABILIZED QUANTUM DOTS AND SURFACE STABILIZED QUANTUM DOTS RESULTING FROM SUCH METHOD
Free accessEuropean Patent Office | 2021| -
QUANTUM DOTS WITH A III-V CORE AND AN ALLOYED II-VI EXTERNAL SHELL
Free accessEuropean Patent Office | 2019| -
Strain in InP/ZnSe, S core/shell quantum dots from lattice mismatch and shell thickness—Material stiffness influence
American Institute of Physics | 2019| -
Hyperfine Interactions and Slow Spin Dynamics in Quasi-isotropic InP-based Core/Shell Colloidal Nanocrystals
American Chemical Society | 2019|
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