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LOW PHONON ENERGY NANOPARTICLES BASED ON ALKALI LEAD HALIDES AND METHODS OF SYNTHESIS AND USECM Patents

Índice de la ficha

Updated at
24/07/2026
Numero publicacion
US.2025122424.A1
Fecha publicacion
17/04/2025
Numero solicitud
US202418908917
Fecha presentacion
08/10/2024

En detalle

Resumen

Phonon engineered, lanthanide doped upconverting nanoparticles with very low phonon energies and tunable methods of synthesis that adjust OA:OM ratio and reaction temperature are provided. Low phonon energy KPb2X5 (X=Cl, Br) upconverting nanoparticles, both doped and undoped, exhibit dramatically suppressed multiphonon relaxation, enhancing upconversion emission from higher lanthanide excited states and enabling room temperature observation of avalanche like upconversion by Nd3+ ions. Intrinsic optical bistability (IOB) of the materials can provide bit level functionality to all optical computing. The IOB of Nd3+ doped nanocrystals, which are either bright or dark at the same excitation power based on power history, illustrate the functionality. High contrast switching and IOB are enabled via the photon avalanche process, which sustains population inversion between the ground and the first excited 4fN states of Nd3+ ions. The IOB of these nanocrystals can be controlled by temporal pump modulation and can store information.

Etiquetas

Inventores
Zhang ZhuoleiSkripka ArtiomSchuck P JamesCohen BruceChan Emory
Solicitantes
Univ CaliforniaUniv ColumbiaUniversidad Autónoma de MadridThe Regents of the University of CaliforniaThe Trustees of Columbia University In the City of New York
Clasificacion ipc
C01F 17/ 36 A IC01G 21/ 00 A IC09K 11/ 77 A I
Publicaciones
US.2025122424.A1
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