Ravinder Dahiya

Ravinder Dahiya

University of Glasgow

H-index: 64

Europe-United Kingdom

About Ravinder Dahiya

Ravinder Dahiya, With an exceptional h-index of 64 and a recent h-index of 57 (since 2020), a distinguished researcher at University of Glasgow, specializes in the field of Flexible Electronics, Printed Electronics, Sensors, Robotics, Touch Sensing.

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

Direct Roll Printed Si and GaAs based Flexible Photosensors

Highly Conductive PEDOT:PSS: Ag Nanowire-Based Nanofibers for Transparent Flexible Electronics

Self-Powered Multimodal Sensing Using Energy-Generating Solar Skin for Robotics and Smart Wearables

Multisource Energy Harvester on Textile and Plants for Clean Energy Generation from Wind and Rainwater Droplets

Electrochemical Detection of Fe2+ ions in Water using 2-Dimensional g-C3N4 modified Glassy Carbon Electrode-based Sensor

Bioinspired Distributed Energy in Robotics and Enabling Technologies

An Introduction to Microplastics, and Its Sampling Processes and Assessment Techniques

Panel: Sustainability in Computing

Ravinder Dahiya Information

University

Position

Professor of Electronics and Nanoengineering

Citations(all)

16699

Citations(since 2020)

12727

Cited By

7887

hIndex(all)

64

hIndex(since 2020)

57

i10Index(all)

201

i10Index(since 2020)

173

Email

University Profile Page

Google Scholar

Ravinder Dahiya Skills & Research Interests

Flexible Electronics

Printed Electronics

Sensors

Robotics

Touch Sensing

Top articles of Ravinder Dahiya

Direct Roll Printed Si and GaAs based Flexible Photosensors

IEEE Sensors Letters

2024/4

Highly Conductive PEDOT:PSS: Ag Nanowire-Based Nanofibers for Transparent Flexible Electronics

ACS Applied Materials & Interfaces

2024/3

Self-Powered Multimodal Sensing Using Energy-Generating Solar Skin for Robotics and Smart Wearables

Advanced Intelligent Systems

2024/3

Multisource Energy Harvester on Textile and Plants for Clean Energy Generation from Wind and Rainwater Droplets

ACS Sustainable Chem. Eng.

2024/1

Electrochemical Detection of Fe2+ ions in Water using 2-Dimensional g-C3N4 modified Glassy Carbon Electrode-based Sensor

2023/1/23

Priyanka Ganguly
Priyanka Ganguly

H-Index: 12

Ravinder Dahiya
Ravinder Dahiya

H-Index: 38

Bioinspired Distributed Energy in Robotics and Enabling Technologies

2023/4

An Introduction to Microplastics, and Its Sampling Processes and Assessment Techniques

Sensing Technologies for Real Time Monitoring of Water Quality

2023/10/27

Andrea Adami
Andrea Adami

H-Index: 8

Ravinder Dahiya
Ravinder Dahiya

H-Index: 38

Panel: Sustainability in Computing

2023/3/13

Recent Developments in 2D Materials for Energy Harvesting Applications

2023/3/27

Design of a Robust Lung Sound Acquisition System for Reliable Acoustic Lung Imaging

2023/9/3

Minghui Li
Minghui Li

H-Index: 7

Ravinder Dahiya
Ravinder Dahiya

H-Index: 38

Influence of Printed Encapsulation Layer on the Mechanical Reliability and Performance of V₂O₅ Nanowires-Based Flexible Temperature Sensors

IEEE Journal on Flexible Electronics

2023/2/24

João Neto
João Neto

H-Index: 1

Ravinder Dahiya
Ravinder Dahiya

H-Index: 38

Printed n- and p-channel Transistors using Silicon Nanoribbons Enduring Electrical, Thermal, and Mechanical Stress

ACS Applied Materials and Interfaces

2023/3

Tuneable Conductive Composite for 3D Printed Sensors and Embedded Circuits

Advanced Intelligent Systems

2023/7

V2O5 Nanowires-Coated Yarn-Based Temperature Sensor With Wireless Data Transfer for Smart Textiles

IEEE Journal on Flexible Electronics

2023/3

Self-Powered e-Skin based on Integrated Flexible Organic Photovoltaics and Transparent Touch Sensors

Advanced Intelligent Systems

2023/7

Printing of Nano- to Chip-Scale Structures for Flexible Hybrid Electronics

Advanced Electronic Materials

2023/3

PEDOT:PSS based Disposable Humidity Sensor for Skin Moisture Monitoring

IEEE Sensors Letters

2023/3

Printed Memristors Using Hydrothermally Grown Zinc Oxide Nanowires

2023/7

The Effect of Sensor Array Design on Acoustic Imaging for Enhancing HFCWO Therapy

2023/2/20

Minghui Li
Minghui Li

H-Index: 7

Ravinder Dahiya
Ravinder Dahiya

H-Index: 38

Fully 3D Printed Piezoelectric Pressure Sensor for Dynamic Tactile Sensing

Additive Manufacturing

2023/6/5

See List of Professors in Ravinder Dahiya University(University of Glasgow)

Co-Authors

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