Area of research
Electrical and Electronic Engineering · Materials Chemistry
Research interest
Research interests include Cadmium telluride photovoltaics, Materials science, Optoelectronics, Buffer (optical fiber), Metalorganic vapour phase epitaxy, and Layer (electronics).
Development of ZnO Buffer Layers for As‐Doped CdSeTe/CdTe Solar Cells with Efficiency Exceeding 20%
Improved interface passivation in high-efficiency Se-alloyed CdTe solar cells using a SnO <mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML" altimg="si17.svg" display="inline" id="d1e400"> <mml:msub> <mml:mrow/> <mml:mrow> <mml:mn>2</mml:mn> </mml:mrow> </mml:msub> </mml:math> /ZnO n-type bilayer
CdTe absorber layers grown under Cd-rich conditions by MOCVD: Impact on surface morphology and structure
Bilayer SnO<sub>2</sub>/ZnO Buffer Layers to Achieve 21.7% Efficient CdSeTe/CdTe Solar Cells
Cdte Absorber Layers Grown Under Cd-Rich Conditions by Mocvd: Impact on Surface Morphology and Structure
Ce-Alloyed ZnO Buffer Layers for Thin Film CdSeTe/CdTe Solar Cells
Optimising the thickness of sputtered SnO<sub>2</sub> buffer layers for high efficiency CdSeTe/CdTe devices
Achieving 21.4% Efficient CdSeTe/CdTe Solar Cells Using Highly Resistive Intrinsic ZnO Buffer Layers
19.5% Efficient CdSeTe/CdTe Solar Cells Using ZnO Buffer Layers
Impact of In-Situ Cd Saturation MOCVD Grown CdTe Solar Cells on As Doping and V<sub>OC</sub>
Impact of In-situ Cd saturation MOCVD grown CdTe solar cells on As doping and VOC