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Spotlight on luminescence thermometry: basics, challenges, and cutting‐edge applications
Luminescence (nano) thermometry is a remote sensing technique that relies on the
temperature dependency of the luminescence features (eg, bandshape, peak energy or …
temperature dependency of the luminescence features (eg, bandshape, peak energy or …
3D nanoprinting of semiconductor quantum dots by photoexcitation-induced chemical bonding
Three-dimensional (3D) laser nanoprinting allows maskless manufacturing of diverse
nanostructures with nanoscale resolution. However, 3D manufacturing of inorganic …
nanostructures with nanoscale resolution. However, 3D manufacturing of inorganic …
Quantum dot solar cells: small beginnings have large impacts
Featured Application Solution-processed optoelectronic nanomaterials for use in lighting,
energy-harvesting, and sensing. Abstract From a niche field over 30 years ago, quantum …
energy-harvesting, and sensing. Abstract From a niche field over 30 years ago, quantum …
Revisiting the valence and conduction band size dependence of PbS quantum dot thin films
We use a high signal-to-noise X-ray photoelectron spectrum of bulk PbS, GW calculations,
and a model assuming parabolic bands to unravel the various X-ray and ultraviolet …
and a model assuming parabolic bands to unravel the various X-ray and ultraviolet …
Open-circuit voltage deficit, radiative sub-bandgap states, and prospects in quantum dot solar cells
Quantum dot photovoltaics (QDPV) offer the potential for low-cost solar cells. To develop
strategies for continued improvement in QDPVs, a better understanding of the factors that …
strategies for continued improvement in QDPVs, a better understanding of the factors that …
Ligand-mediated exciton dissociation and interparticle energy transfer on CsPbBr3 perovskite quantum dots for efficient CO2-to-CO photoreduction
Perovskite quantum dots (PQDs) hold immense potential as photocatalysts for CO 2
reduction due to their remarkable quantum properties, which facilitates the generation of …
reduction due to their remarkable quantum properties, which facilitates the generation of …
Radiative efficiency limit with band tailing exceeds 30% for quantum dot solar cells
Thin films of colloidal quantum dots (QDs) are promising solar photovoltaic (PV) absorbers
in spite of their disordered nature. Disordered PV materials face a power conversion …
in spite of their disordered nature. Disordered PV materials face a power conversion …
High‐efficiency photovoltaic devices using trap‐controlled quantum‐dot ink prepared via phase‐transfer exchange
Colloidal‐quantum‐dot (CQD) photovoltaic devices are promising candidates for low‐cost
power sources owing to their low‐temperature solution processability and bandgap …
power sources owing to their low‐temperature solution processability and bandgap …
Efficient PbS quantum dot solar cells employing a conventional structure
New-generation solar cells based on colloidal lead chalcogenide (PbX) quantum dots
(CQDs) are promising low-cost solution-processed photovoltaics. However, current state-of …
(CQDs) are promising low-cost solution-processed photovoltaics. However, current state-of …
Charge carrier hop** dynamics in homogeneously broadened PbS quantum dot solids
Energetic disorder in quantum dot solids adversely impacts charge carrier transport in
quantum dot solar cells and electronic devices. Here, we use ultrafast transient absorption …
quantum dot solar cells and electronic devices. Here, we use ultrafast transient absorption …