Michael Cai Wang

Michael Cai Wang

University of South Florida

H-index: 21

North America-United States

About Michael Cai Wang

Michael Cai Wang, With an exceptional h-index of 21 and a recent h-index of 19 (since 2020), a distinguished researcher at University of South Florida, specializes in the field of Interface/Surface Phenomena, Nanomanufacturing, Materials Science, 2D Materials, Self-Assembly.

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

Directionally-Resolved Phononic Properties of Monolayer 2D Molybdenum Ditelluride (MoTe2) under Uniaxial Elastic Strain

Nanoscale goldbeating: Solid-state transformation of 0D and 1D gold nanoparticles to anisotropic 2D morphologies

Effects of urban runoff and hydrological seasonality on plastic transport in the Hillsborough River

Ultrathin neural interfaces constructed from carbon and amorphous silicon carbide

Mitigation of Electromigration in Metal Interconnects via Hexagonal Boron Nitride as an Ångström‐Thin Passivation Layer

Effects of urban hydrology on plastic transport in a subtropical river

Effects of hydrodynamics on the cross‐sectional distribution and transport of plastic in an urban coastal river

A Flexible a-SiC-Based Neural Interface Utilizing Pyrolyzed-Photoresist Film (C) Active Sites

Michael Cai Wang Information

University

Position

___

Citations(all)

1550

Citations(since 2020)

1143

Cited By

877

hIndex(all)

21

hIndex(since 2020)

19

i10Index(all)

24

i10Index(since 2020)

23

Email

University Profile Page

University of South Florida

Google Scholar

View Google Scholar Profile

Michael Cai Wang Skills & Research Interests

Interface/Surface Phenomena

Nanomanufacturing

Materials Science

2D Materials

Self-Assembly

Top articles of Michael Cai Wang

Title

Journal

Author(s)

Publication Date

Directionally-Resolved Phononic Properties of Monolayer 2D Molybdenum Ditelluride (MoTe2) under Uniaxial Elastic Strain

Nano Letters

Zhewen Yin

Wyatt Panaccione

Anjun Hu

Ossie RT Douglas

Md Rubayat-E Tanjil

...

2023/12/15

Nanoscale goldbeating: Solid-state transformation of 0D and 1D gold nanoparticles to anisotropic 2D morphologies

PNAS Nexus

Md Rubayat-E Tanjil

Tanuj Gupta

Matthew T Gole

Keegan P Suero

Zhewen Yin

...

2023/8

Effects of urban runoff and hydrological seasonality on plastic transport in the Hillsborough River

Florida Scientist

Mauricio E Arias

Charlotte J Haberstroh

Zhewen Yin

Michael Cai Wang

2023

Ultrathin neural interfaces constructed from carbon and amorphous silicon carbide

Chenyin Feng

Christopher L Frewin

Md Rubayat-E Tanjil

Richard Everly

Jay Bieber

...

2022/1/1

Mitigation of Electromigration in Metal Interconnects via Hexagonal Boron Nitride as an Ångström‐Thin Passivation Layer

Advanced Electronic Materials

Yunjo Jeong

Ossie Douglas

Utkarsh Misra

Md Rubayat‐E Tanjil

Kenji Watanabe

...

2021/6

Effects of urban hydrology on plastic transport in a subtropical river

Acs Es&T Water

Charlotte J Haberstroh

Mauricio E Arias

Zhewen Yin

Michael C Wang

2021/7/28

Effects of hydrodynamics on the cross‐sectional distribution and transport of plastic in an urban coastal river

Water Environment Research

Charlotte J Haberstroh

Mauricio E Arias

Zhewen Yin

Michael Cai Wang

2021/2

A Flexible a-SiC-Based Neural Interface Utilizing Pyrolyzed-Photoresist Film (C) Active Sites

Micromachines

Chenyin Feng

Christopher L Frewin

Md Rubayat-E Tanjil

Richard Everly

Jay Bieber

...

2021/7/13

Top-Down Processing Towards Ångström-Thin Two-Dimensional (2D) Elemental Metals

Md Rubayat-E Tanjil

Stanley Agbakansi

Keegan Phayden Suero

Ossie Douglas

Yunjo Jeong

...

2020/9/3

Strongly enhanced electromechanical coupling in atomically thin transition metal dichalcogenides

Materials Today

Md Farhadul Haque

Peter Snapp

Jin Myung Kim

Michael Cai Wang

Hyung Jong Bae

...

2021/7/1

Silicon carbide biotechnology: carbon-based neural interfaces

Chenyin Feng

Mohamad Beygi

Christopher L Frewin

Md Rubayat-E Tanjil

Ashok Kumar

...

2021

Large scale self-assembly of plasmonic nanoparticles on deformed graphene templates

Scientific reports

Matthew T Gole

Zhewen Yin

Michael Cai Wang

Wayne Lin

Ziran Zhou

...

2021/6/10

Hexagonal Boron Nitride: Mitigation of Electromigration in Metal Interconnects via Hexagonal Boron Nitride as an Ångström‐Thin Passivation Layer (Adv. Electron. Mater. 6/2021)

Advanced Electronic Materials

Yunjo Jeong

Ossie Douglas

Utkarsh Misra

Md Rubayat‐E Tanjil

Kenji Watanabe

...

2021/6

Plastic transport in a complex confluence of the Mekong River in Cambodia

Environmental Research Letters

Charlotte J Haberstroh

Mauricio E Arias

Zhewen Yin

Ty Sok

Michael C Wang

2021/9/7

Ångström- and Nano-scale Pore-Based Nucleic Acid Sequencing of Current and Emergent Pathogens

MRS Advances

Britney A Shepherd

Md Rubayat-E Tanjil

Yunjo Jeong

Bilgenur Baloğlu

Jingqiu Liao

...

2020/10/29

Proceedings of the 2019 NanoFlorida International Conference Held at the University of South Florida, Tampa, FL

Shyam S Mohapatra

Robert D Frisina

Subhra Mohapatra

Mandip Singh

Manh-Huong Phan

2020/7/15

Ångström-and Nano-scale Pore-Based Nucleic Acid Sequencing of Current and Emergent Pathogens-ERRATUM

Mrs Advances

Britney A Shepherd

Md Rubayat-E Tanjil

Yunjo Jeong

Bilgenur Baloğlu

Jingqiu Liao

...

2020/1

Sustainable and Resilient Manufacturing for the Post–COVID-19 Era

ASTM Smart and Sustainable Manufacturing Systems

Nancy Diaz-Elsayed

Hadi Charkhgard

Michael Cai Wang

2020/10/29

See List of Professors in Michael Cai Wang University(University of South Florida)

Co-Authors

H-index: 77
N. Aluru

N. Aluru

University of Illinois at Urbana-Champaign

H-index: 48
Richard T. Haasch

Richard T. Haasch

University of Illinois at Urbana-Champaign

H-index: 36
SungWoo Nam

SungWoo Nam

University of Illinois at Urbana-Champaign

H-index: 30
Mauricio E. Arias

Mauricio E. Arias

University of South Florida

H-index: 19
Jin Myung Kim

Jin Myung Kim

University of Illinois at Urbana-Champaign

H-index: 19
Yuhang Jing

Yuhang Jing

Harbin Institute of Technology

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