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Wei Huang
UnverifiedResearcher · CN
Publications
10
Citations
18320
max across sources
Profile views
4
bot-filtered
Verification
L0
Overview
AI-generatedWei Huang (RTX-00000058) based in CN is a researcher on ResearchTrics. Lists research interests: conducting polymers and applications, luminescence and fluorescent materials, organic electronics and photovoltaics, organic light-emitting diodes research, perovskite materials and applications. Has 10 publications recorded, including "Rational molecular passivation for high-performance perovskite light-emitting diodes" (2019), "All-inorganic perovskite nanocrystal scintillators" (2018), "Perovskite light-emitting diodes based on spontaneously formed submicrometre-scale structures" (2018).
An AI overview generated from this profile’s verified records — an interpretation, not a verified statement.
Research interests
- conducting polymers and applications
- luminescence and fluorescent materials
- organic electronics and photovoltaics
- organic light-emitting diodes research
- perovskite materials and applications
Publications (40)
- Rational molecular passivation for high-performance perovskite light-emitting diodes1241 cites
Nature Photonics · 2019 · DOI
- Rational molecular passivation for high-performance perovskite light-emitting diodes1241 cites
Nature Photonics · 2019 · DOI
- Rational molecular passivation for high-performance perovskite light-emitting diodes1241 cites
Nature Photonics · 2019 · DOI
- Rational molecular passivation for high-performance perovskite light-emitting diodes1241 cites
Nature Photonics · 2019 · DOI
- All-inorganic perovskite nanocrystal scintillators2049 cites
Nature · 2018 · DOI
- All-inorganic perovskite nanocrystal scintillators2049 cites
Nature · 2018 · DOI
- All-inorganic perovskite nanocrystal scintillators2049 cites
Nature · 2018 · DOI
- All-inorganic perovskite nanocrystal scintillators2049 cites
Nature · 2018 · DOI
- Perovskite light-emitting diodes based on spontaneously formed submicrometre-scale structures1991 cites
Nature · 2018 · DOI
- Perovskite light-emitting diodes based on spontaneously formed submicrometre-scale structures1991 cites
Nature · 2018 · DOI
- Perovskite light-emitting diodes based on spontaneously formed submicrometre-scale structures1991 cites
Nature · 2018 · DOI
- Perovskite light-emitting diodes based on spontaneously formed submicrometre-scale structures1991 cites
Nature · 2018 · DOI
- Latest advances in supercapacitors: from new electrode materials to novel device designs2020 cites
Chemical Society Reviews · 2017 · DOI
- Latest advances in supercapacitors: from new electrode materials to novel device designs2020 cites
Chemical Society Reviews · 2017 · DOI
- Latest advances in supercapacitors: from new electrode materials to novel device designs2020 cites
Chemical Society Reviews · 2017 · DOI
- Latest advances in supercapacitors: from new electrode materials to novel device designs2020 cites
Chemical Society Reviews · 2017 · DOI
- Perovskite light-emitting diodes based on solution-processed self-organized multiple quantum wells1851 cites
Nature Photonics · 2016 · DOI
- Perovskite light-emitting diodes based on solution-processed self-organized multiple quantum wells1851 cites
Nature Photonics · 2016 · DOI
- Perovskite light-emitting diodes based on solution-processed self-organized multiple quantum wells1851 cites
Nature Photonics · 2016 · DOI
- Perovskite light-emitting diodes based on solution-processed self-organized multiple quantum wells1851 cites
Nature Photonics · 2016 · DOI
- Stabilizing triplet excited states for ultralong organic phosphorescence1970 cites
Nature Materials · 2015 · DOI
- Stabilizing triplet excited states for ultralong organic phosphorescence1970 cites
Nature Materials · 2015 · DOI
- Stabilizing triplet excited states for ultralong organic phosphorescence1970 cites
Nature Materials · 2015 · DOI
- Stabilizing triplet excited states for ultralong organic phosphorescence1970 cites
Nature Materials · 2015 · DOI
- Heteroatom-doped graphene materials: syntheses, properties and applications1894 cites
Chemical Society Reviews · 2014 · DOI
- Heteroatom-doped graphene materials: syntheses, properties and applications1894 cites
Chemical Society Reviews · 2014 · DOI
- Heteroatom-doped graphene materials: syntheses, properties and applications1894 cites
Chemical Society Reviews · 2014 · DOI
- Heteroatom-doped graphene materials: syntheses, properties and applications1894 cites
Chemical Society Reviews · 2014 · DOI
- Thermally Activated Delayed Fluorescence Materials Towards the Breakthrough of Organoelectronics2013 cites
Advanced Materials · 2014 · DOI
- Thermally Activated Delayed Fluorescence Materials Towards the Breakthrough of Organoelectronics2013 cites
Advanced Materials · 2014 · DOI
- Thermally Activated Delayed Fluorescence Materials Towards the Breakthrough of Organoelectronics2013 cites
Advanced Materials · 2014 · DOI
- Thermally Activated Delayed Fluorescence Materials Towards the Breakthrough of Organoelectronics2013 cites
Advanced Materials · 2014 · DOI
- 3D Graphene–Cobalt Oxide Electrode for High-Performance Supercapacitor and Enzymeless Glucose Detection1593 cites
ACS Nano · 2012 · DOI
- 3D Graphene–Cobalt Oxide Electrode for High-Performance Supercapacitor and Enzymeless Glucose Detection1593 cites
ACS Nano · 2012 · DOI
- 3D Graphene–Cobalt Oxide Electrode for High-Performance Supercapacitor and Enzymeless Glucose Detection1593 cites
ACS Nano · 2012 · DOI
- 3D Graphene–Cobalt Oxide Electrode for High-Performance Supercapacitor and Enzymeless Glucose Detection1593 cites
ACS Nano · 2012 · DOI
- Enhancing solar cell efficiency: the search for luminescent materials as spectral converters1698 cites
Chemical Society Reviews · 2012 · DOI
- Enhancing solar cell efficiency: the search for luminescent materials as spectral converters1698 cites
Chemical Society Reviews · 2012 · DOI
- Enhancing solar cell efficiency: the search for luminescent materials as spectral converters1698 cites
Chemical Society Reviews · 2012 · DOI
- Enhancing solar cell efficiency: the search for luminescent materials as spectral converters1698 cites
Chemical Society Reviews · 2012 · DOI
