![SciELO - Brasil - Pseudopotential Study of CdTe Quantum Dots: Electronic and Optical Properties Pseudopotential Study of CdTe Quantum Dots: Electronic and Optical Properties SciELO - Brasil - Pseudopotential Study of CdTe Quantum Dots: Electronic and Optical Properties Pseudopotential Study of CdTe Quantum Dots: Electronic and Optical Properties](https://minio.scielo.br/documentstore/1980-5373/35CFph5fkk5Nfz5DYk6wPGH/a8292f6091d263487f6173f65483870be9fa9398.jpg)
SciELO - Brasil - Pseudopotential Study of CdTe Quantum Dots: Electronic and Optical Properties Pseudopotential Study of CdTe Quantum Dots: Electronic and Optical Properties
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Figure 2 from 15.3% efficient graded bandgap solar cells fabricated using electroplated CdS and CdTe thin films | Semantic Scholar
Electron-hole generation in solar cell pn junction. When studying Si cells, if the photon has an energy higher than that of the band gap the electron gets excited. But what in a
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Plots of the energy band of Cadmium telluride (a) with relativistic... | Download Scientific Diagram
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Electronic structure and band gap engineering of CdTe semiconductor nanowires - Journal of Materials Chemistry (RSC Publishing) DOI:10.1039/C2JM16810C
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Figure 3. Schematic representation of the size-dependent band gap : Quantum Dots, Part 1: Optical and Electrochemical Properties of CdTe Quantum Dots : Science and Education Publishing
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The energy band gap of CdTe as a function of temperature. Solid squares... | Download Scientific Diagram
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Scientific complications and controversies noted in the field of CdS/CdTe thin film solar cells and the way forward for further development | SpringerLink
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solid state physics - Why is the energy for an electron-hole pair for $\rm CdTe$ bigger than the band gap energy? - Physics Stack Exchange
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Figure 1 from Metal / CdTe / CdS / Cd 1 ~ x Zn x S / TCO / glass : A new CdTe thin " lm solar cell structure | Semantic Scholar
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Band diagrams and performance of CdTe solar cells with a Sb2Te3 back contact buffer layer: AIP Advances: Vol 1, No 4
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First-principles study of the band gap tuning and doping control in CdSe<sub><em>x</em></sub>Te<sub>1−<em>x</em></sub> alloy for high efficiency solar cell
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