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Stable colloidal quantum dot-based infrared photodiode: multiple passivation strategy
Byung Ku Jung, Woosik Kim, Soong Ju Oh
J. Korean Ceram. Soc.. 2021;58(5):521-529.   Published online 2021 September 30    DOI: https://doi.org/10.1007/s43207-021-00134-4

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Stable colloidal quantum dot-based infrared photodiode: multiple passivation strategy
Journal of the Korean Ceramic Society. 2021;58(5):521-529   Crossref logo
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Colloidal Quantum Dot-Based Infrared Photodiodes
ECS Transactions. 2019;1(33):17-31   Crossref logo
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Colloidal quantum dot photodetectors
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Record Charge Carrier Diffusion Length in Colloidal Quantum Dot Solids via Mutual Dot-To-Dot Surface Passivation
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Improving Photovoltaic Performance of ZnO Nanowires Based Colloidal Quantum Dot Solar Cells via SnO2 Passivation Strategy
Frontiers in Energy Research. 2019;7:   Crossref logo
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Integrating an electrically active colloidal quantum dot photodiode with a graphene phototransistor
Nature Communications. 2016;7(1):   Crossref logo
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Stable Semiconducting Ink Based on a Polypyrrole/Carbon-Quantum-Dot Aqueous Colloidal Suspension: A Potential Sensor for Volatile Organics Present in Food
ChemistrySelect. 2017;2(6):2139-2143   Crossref logo
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Nitride-based light-emitter and photodiode dual function devices with InGaN/GaN multiple quantum dot structures
Journal of Crystal Growth. 2008;310(10):2476-2479   Crossref logo
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Mid-infrared HgTe colloidal quantum dot photodetectors
Nature Photonics. 2011;5(8):489-493   Crossref logo
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Mid-Wavelength Infrared Responsivity of Colloidal Quantum Dot/Organic Hybrid Photodetectors
ECS Transactions. 2020;97(1):109-115   Crossref logo
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