Sankara Arunachalam

About Sankara Arunachalam

Sankara Arunachalam, With an exceptional h-index of 11 and a recent h-index of 11 (since 2020), a distinguished researcher at King Abdullah University of Science and Technology, specializes in the field of Surface science, Biomimetics, Micro/nano scale, Engineered surfaces.

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

Predicting droplet detachment force: Young-Dupré Model Fails, Young-Laplace Model Prevails

Emergent collective motion of self-propelled condensate droplets

Directional Wetting of Submerged Gas-entrapping Microtextures

Coating-free Underwater Breathing via Biomimicry

General Predictive Framework for Droplet Detachment Force

Perfluorocarbon-free membranes for membrane distillation

Bio-Inspired Gas-Entrapping Microtextured Surfaces (GEMS): Fundamentals and Applications

Droplet Adhesion Revisited: Experiments and Theory

Sankara Arunachalam Information

University

Position

PhD Student

Citations(all)

481

Citations(since 2020)

469

Cited By

235

hIndex(all)

11

hIndex(since 2020)

11

i10Index(all)

11

i10Index(since 2020)

11

Email

University Profile Page

Google Scholar

Sankara Arunachalam Skills & Research Interests

Surface science

Biomimetics

Micro/nano scale

Engineered surfaces

Top articles of Sankara Arunachalam

Predicting droplet detachment force: Young-Dupré Model Fails, Young-Laplace Model Prevails

Communications Physics

2024/3/11

Emergent collective motion of self-propelled condensate droplets

Physical Review Letters

2024/2/1

Directional Wetting of Submerged Gas-entrapping Microtextures

arXiv preprint arXiv:2401.09463

2024/1/8

Coating-free Underwater Breathing via Biomimicry

arXiv preprint arXiv:2311.15819

2023/11/27

General Predictive Framework for Droplet Detachment Force

arXiv preprint arXiv:2307.12527

2023/7/24

Perfluorocarbon-free membranes for membrane distillation

2021/3/25

Bio-Inspired Gas-Entrapping Microtextured Surfaces (GEMS): Fundamentals and Applications

2023

Sankara Arunachalam
Sankara Arunachalam

H-Index: 9

Droplet Adhesion Revisited: Experiments and Theory

APS March Meeting Abstracts

2023

Delayed Leidenfrost States on Hydrophobic Surfaces

APS Division of Fluid Dynamics Meeting Abstracts

2021

Diffusion-driven directional wetting transitions

APS Division of Fluid Dynamics Meeting Abstracts

2021

Suppression of Leidenfrost effect on superhydrophobic surfaces

Physics of Fluids

2021/12/1

Durable Gas-entrapping Microstructured Surfaces (GEMS)

APS Division of Fluid Dynamics Meeting Abstracts

2021

Wetting Transitions: Counterintuitive Wetting Transitions in Doubly Reentrant Cavities as a Function of Surface Make-Up, Hydrostatic Pressure, and Cavity Aspect Ratio (Adv …

Advanced Materials Interfaces

2020/11/20

Counterintuitive Wetting Transitions in Doubly Reentrant Cavities as a Function of Surface Make‐Up, Hydrostatic Pressure, and Cavity Aspect Ratio

Advanced Materials Interfaces

2020/11

Superhydrophobicity and size reduction enabled Halobates (Insecta: Heteroptera, Gerridae) to colonize the open ocean

Scientific Reports

2020/5/8

Sankara Arunachalam
Sankara Arunachalam

H-Index: 9

Himanshu Mishra
Himanshu Mishra

H-Index: 16

Mitigating cavitation erosion using biomimetic gas-entrapping microtextured surfaces (GEMS)

Science advances

2020/3/27

Proof-of-concept for gas-entrapping membranes derived from water-loving SiO2/Si/SiO2 wafers for green desalination

JoVE (Journal of Visualized Experiments)

2020/3/1

Rendering SiO2/Si surfaces omniphobic by carving gas-entrapping microtextures comprising reentrant and doubly reentrant cavities or pillars

Journal of Visualized Experiments

2020/2/11

See List of Professors in Sankara Arunachalam University(King Abdullah University of Science and Technology)

Co-Authors

academic-engine