Mahdi Zamani

About Mahdi Zamani

Mahdi Zamani, With an exceptional h-index of 11 and a recent h-index of 11 (since 2020), a distinguished researcher at École Polytechnique Fédérale de Lausanne, specializes in the field of semiconductor science, nanotechnology, solar cells, crystal growth.

His recent articles reflect a diverse array of research interests and contributions to the field:

Idle mode throughput projection using physical layer measurements

Log likelihood ratio based rate adaptation through turbo-HARQ

Investigating the Effect of Crystal Morphology on Optoelectronic Properties of Zinc Phosphide Thin Films via Optical-pump Terahertz Probe Spectroscopy

Carrier generation and collection in Zn3P2/InP heterojunction solar cells

Zn/P ratio and microstructure defines carrier density and electrical transport mechanism in earth-abundant Zn3-xP2+ y thin films

Investigation of Electronic and Spectral Properties of Nitrene Intermediates Produced by Thermal Decomposition of Cyanuric Triazide Explosive using DFT and MP2 Calculations

Stoichiometry modulates the optoelectronic functionality of zinc phosphide (Zn 3− x P 2+ x)

Showcasing the optical properties of monocrystalline zinc phosphide thin films as an earth-abundant photovoltaic absorber

Mahdi Zamani Information

University

Position

PhD student- (EPFL)

Citations(all)

446

Citations(since 2020)

404

Cited By

199

hIndex(all)

11

hIndex(since 2020)

11

i10Index(all)

12

i10Index(since 2020)

12

Email

University Profile Page

Google Scholar

Mahdi Zamani Skills & Research Interests

semiconductor science

nanotechnology

solar cells

crystal growth

Top articles of Mahdi Zamani

Idle mode throughput projection using physical layer measurements

2024/1/11

Log likelihood ratio based rate adaptation through turbo-HARQ

2023/12/26

Investigating the Effect of Crystal Morphology on Optoelectronic Properties of Zinc Phosphide Thin Films via Optical-pump Terahertz Probe Spectroscopy

2023/9/17

Carrier generation and collection in Zn3P2/InP heterojunction solar cells

Solar Energy Materials and Solar Cells

2023/7/1

Zn/P ratio and microstructure defines carrier density and electrical transport mechanism in earth-abundant Zn3-xP2+ y thin films

Solar Energy Materials and Solar Cells

2023/4/1

Investigation of Electronic and Spectral Properties of Nitrene Intermediates Produced by Thermal Decomposition of Cyanuric Triazide Explosive using DFT and MP2 Calculations

Semiannual Organic Chemistry Journal

2022/4/21

Stoichiometry modulates the optoelectronic functionality of zinc phosphide (Zn 3− x P 2+ x)

Faraday Discussions

2022

Showcasing the optical properties of monocrystalline zinc phosphide thin films as an earth-abundant photovoltaic absorber

Materials Advances

2022

Raman tensor of zinc-phosphide (Zn 3 P 2): from polarization measurements to simulation of Raman spectra

Physical Chemistry Chemical Physics

2022

Nanoscale Growth Initiation as a Pathway to Improve the Earth-Abundant Absorber Zinc Phosphide

2021/10/4

Modeling the Shape Evolution of Selective Area Grown Zn3P2 Nanoislands

Crystal Growth & Design

2021/7/15

The path towards 1 µm monocrystalline Zn3P2 films on InP: substrate preparation, growth conditions and luminescence properties

Journal of Physics: Energy

2021/5/20

Rotated domains in selective area epitaxy grown Zn 3 P 2: formation mechanism and functionality

Nanoscale

2021

Crystalline Order in Compound Semiconductors in Nanoscale Structures and Thin Films

2021

Mahdi Zamani
Mahdi Zamani

H-Index: 8

Towards defect-free thin films of the earth-abundant absorber zinc phosphide by nanopatterning

Nanoscale Advances

2021

van der Waals Epitaxy of Earth-Abundant Zn3P2 on Graphene for Photovoltaics

Crystal Growth & Design

2020/4/9

Heterotwin Zn 3 P 2 superlattice nanowires: the role of indium insertion in the superlattice formation mechanism and their optical properties

Nanoscale

2020

Multiple morphologies and functionality of nanowires made from earth-abundant zinc phosphide

Nanoscale Horizons

2020

Raman spectroscopy and lattice dynamics calculations of tetragonally-structured single crystal zinc phosphide (Zn3P2) nanowires

Nanotechnology

2020/12/1

3D ordering at the liquid–solid polar interface of nanowires

Advanced Materials

2020/8

See List of Professors in Mahdi Zamani University(École Polytechnique Fédérale de Lausanne)