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Large exciton binding energy, high photoluminescence quantum yield and  improved photostability of organo-metal halide hybrid perovskite quantum  dots grown on a mesoporous titanium dioxide template - ScienceDirect
Large exciton binding energy, high photoluminescence quantum yield and improved photostability of organo-metal halide hybrid perovskite quantum dots grown on a mesoporous titanium dioxide template - ScienceDirect

The exciton binding energy for 58 isolated monolayer semiconductors (34...  | Download Scientific Diagram
The exciton binding energy for 58 isolated monolayer semiconductors (34... | Download Scientific Diagram

Unusually large exciton binding energy in multilayered 2H-MoTe2 |  Scientific Reports
Unusually large exciton binding energy in multilayered 2H-MoTe2 | Scientific Reports

Exciton binding energy and effective mass of CsPbCl3: a magneto-optical  study
Exciton binding energy and effective mass of CsPbCl3: a magneto-optical study

PDF) Unusually Large Exciton Binding Energy In Multilayered 2H-MoTe2 |  Ji-Hee Kim - Academia.edu
PDF) Unusually Large Exciton Binding Energy In Multilayered 2H-MoTe2 | Ji-Hee Kim - Academia.edu

Exciton Binding Energy - an overview | ScienceDirect Topics
Exciton Binding Energy - an overview | ScienceDirect Topics

Exciton Binding Energies of Nonfullerene Small Molecule Acceptors:  Implication for Exciton Dissociation Driving Forces in Organic Solar Cells  | The Journal of Physical Chemistry C
Exciton Binding Energies of Nonfullerene Small Molecule Acceptors: Implication for Exciton Dissociation Driving Forces in Organic Solar Cells | The Journal of Physical Chemistry C

Exciton: An Introduction | Ossila
Exciton: An Introduction | Ossila

Francis Villatoro on X: ""The phase diagram spanned by νₑₓ and νₑₓ and  observe a mixed correlated insulator along the path of νₜₒₜ = νₑₓ + νₑ = 1.  Owing to the
Francis Villatoro on X: ""The phase diagram spanned by νₑₓ and νₑₓ and observe a mixed correlated insulator along the path of νₜₒₜ = νₑₓ + νₑ = 1. Owing to the

a) Exciton-binding energies E b of the 2D layered perovskite (PEA) 2... |  Download Scientific Diagram
a) Exciton-binding energies E b of the 2D layered perovskite (PEA) 2... | Download Scientific Diagram

Low Exciton Binding Energies and Localized Exciton–Polaron States in 2D Tin  Halide Perovskites - Hansen - 2022 - Advanced Optical Materials - Wiley  Online Library
Low Exciton Binding Energies and Localized Exciton–Polaron States in 2D Tin Halide Perovskites - Hansen - 2022 - Advanced Optical Materials - Wiley Online Library

Gate-tunable bandgap renormalization and exciton binding energy of... |  Download Scientific Diagram
Gate-tunable bandgap renormalization and exciton binding energy of... | Download Scientific Diagram

BSc/MSc project: Modeling excitons in halide perovskite semiconductors |  Shuxia Tao
BSc/MSc project: Modeling excitons in halide perovskite semiconductors | Shuxia Tao

Exciton Binding Energy and Nonhydrogenic Rydberg Series in Monolayer WS
Exciton Binding Energy and Nonhydrogenic Rydberg Series in Monolayer WS

Exciton: An Introduction | Ossila
Exciton: An Introduction | Ossila

Excitons in Two-Dimensional Materials | IntechOpen
Excitons in Two-Dimensional Materials | IntechOpen

Realizing the Lowest Bandgap and Exciton Binding Energy in a  Two-Dimensional Lead Halide System | Journal of the American Chemical  Society
Realizing the Lowest Bandgap and Exciton Binding Energy in a Two-Dimensional Lead Halide System | Journal of the American Chemical Society

Large exciton binding energy, high photoluminescence quantum yield and  improved photostability of organo-metal halide hybrid perovskite quantum  dots grown on a mesoporous titanium dioxide template - ScienceDirect
Large exciton binding energy, high photoluminescence quantum yield and improved photostability of organo-metal halide hybrid perovskite quantum dots grown on a mesoporous titanium dioxide template - ScienceDirect

Energetics of exciton binding and dissociation in polythiophenes: a tight  binding approach - Physical Chemistry Chemical Physics (RSC Publishing)  DOI:10.1039/C9CP01116A
Energetics of exciton binding and dissociation in polythiophenes: a tight binding approach - Physical Chemistry Chemical Physics (RSC Publishing) DOI:10.1039/C9CP01116A

Abnormal scaling of excitons in phosphorene quantum dots - Physical  Chemistry Chemical Physics (RSC Publishing) DOI:10.1039/C9CP06146K
Abnormal scaling of excitons in phosphorene quantum dots - Physical Chemistry Chemical Physics (RSC Publishing) DOI:10.1039/C9CP06146K

Liangfeng Sun
Liangfeng Sun

Nanomaterials | Free Full-Text | The Key Role of Non-Local Screening in the  Environment-Insensitive Exciton Fine Structures of Transition-Metal  Dichalcogenide Monolayers
Nanomaterials | Free Full-Text | The Key Role of Non-Local Screening in the Environment-Insensitive Exciton Fine Structures of Transition-Metal Dichalcogenide Monolayers

Experimental Observation of Strong Exciton Effects in Graphene Nanoribbons  | Nano Letters
Experimental Observation of Strong Exciton Effects in Graphene Nanoribbons | Nano Letters

Crystals | Free Full-Text | Many-Body Calculations of Excitons in  Two-Dimensional GaN
Crystals | Free Full-Text | Many-Body Calculations of Excitons in Two-Dimensional GaN

Excitons in atomically thin 2D semiconductors and their applications
Excitons in atomically thin 2D semiconductors and their applications

Exciton Binding Energy in CdSe Nanoplatelets Measured by One- and  Two-Photon Absorption | Nano Letters
Exciton Binding Energy in CdSe Nanoplatelets Measured by One- and Two-Photon Absorption | Nano Letters

Large exciton binding energy, high photoluminescence quantum yield and  improved photostability of organo-metal halide hybrid perovskite quantum  dots grown on a mesoporous titanium dioxide template - ScienceDirect
Large exciton binding energy, high photoluminescence quantum yield and improved photostability of organo-metal halide hybrid perovskite quantum dots grown on a mesoporous titanium dioxide template - ScienceDirect

Excitonic effects in photovoltaic materials with large exciton binding  energies | Semantic Scholar
Excitonic effects in photovoltaic materials with large exciton binding energies | Semantic Scholar