Faysal Hakim

Faysal Hakim

University of Florida

H-index: 7

North America-United States

About Faysal Hakim

Faysal Hakim, With an exceptional h-index of 7 and a recent h-index of 7 (since 2020), a distinguished researcher at University of Florida, specializes in the field of RF MEMS, Ferroelectric Transducers, Organic Solar Cells.

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

A ferroelectric-gate fin microwave acoustic spectral processor

Nanoelectromechanical resonators for gigahertz frequency control based on hafnia–zirconia–alumina superlattices

In-Plane Bulk Acoustic Resonators Using 50nm-Thick Nano-Laminated Ferroelectric Hf0. 5Zr0. 5O2

A Segmented‐Target Sputtering Process for Growth of Sub‐50 nm Ferroelectric Scandium–Aluminum–Nitride Films with Composition and Stress Tuning

Ferroelectric-on-Si Super-High-Frequency Fin Bulk Acoustic Resonators With Hf0.5Zr0.5O2 Nanolaminated Transducers

Excitation of high-frequency in-plane bulk acoustic resonance modes in geometrically engineered hafnium zirconium oxide nano-electro-mechanical membrane

A Non-Reciprocal Lamb-Wave Delay Line Exploiting Acoustoelectric Effect in Single Crystal Germanium

Acoustically Coupled Wideband RF Filters with Bandwidth Reconfigurablity Using Ferroelectric Aluminum Scandium Nitride Film

Faysal Hakim Information

University

Position

Graduate Research Assistant Interdisciplinary Microsystem Group

Citations(all)

129

Citations(since 2020)

121

Cited By

28

hIndex(all)

7

hIndex(since 2020)

7

i10Index(all)

5

i10Index(since 2020)

5

Email

University Profile Page

Google Scholar

Faysal Hakim Skills & Research Interests

RF MEMS

Ferroelectric Transducers

Organic Solar Cells

Top articles of Faysal Hakim

A ferroelectric-gate fin microwave acoustic spectral processor

Nature Electronics

2024/1/2

Nanoelectromechanical resonators for gigahertz frequency control based on hafnia–zirconia–alumina superlattices

Nature Electronics

2023/7/27

In-Plane Bulk Acoustic Resonators Using 50nm-Thick Nano-Laminated Ferroelectric Hf0. 5Zr0. 5O2

2021/6/20

A Segmented‐Target Sputtering Process for Growth of Sub‐50 nm Ferroelectric Scandium–Aluminum–Nitride Films with Composition and Stress Tuning

physica status solidi (RRL)–Rapid Research Letters

2021/5

Ferroelectric-on-Si Super-High-Frequency Fin Bulk Acoustic Resonators With Hf0.5Zr0.5O2 Nanolaminated Transducers

IEEE Microwave and Wireless Components Letters

2021/3/19

Excitation of high-frequency in-plane bulk acoustic resonance modes in geometrically engineered hafnium zirconium oxide nano-electro-mechanical membrane

Applied Physics Letters

2020/8/10

A Non-Reciprocal Lamb-Wave Delay Line Exploiting Acoustoelectric Effect in Single Crystal Germanium

2020/1/18

Acoustically Coupled Wideband RF Filters with Bandwidth Reconfigurablity Using Ferroelectric Aluminum Scandium Nitride Film

2020/1/18

See List of Professors in Faysal Hakim University(University of Florida)

Co-Authors

academic-engine