Workshop Registration End Date :12 Oct 2026

Virtual Workshop

Nanoelectronics and Smart Sensors

Engineering the Future of Electronics through Nanoscale Devices, Smart Materials, and Intelligent Sensor Systems

Skills you will gain:

About Workshop:

Nanoelectronics and smart sensors represent the backbone of next-generation intelligent systems, enabling ultra-sensitive detection, miniaturized devices, and high-performance computing platforms. By leveraging nanomaterials such as graphene, carbon nanotubes, and metal oxides, modern sensors achieve unprecedented sensitivity and efficiency.
This short-duration workshop (3 days, 60–90 minutes each) introduces participants to core nanoelectronic principles, sensor architectures, and real-world applications in healthcare monitoring, environmental sensing, and IoT systems. It also includes hands-on simulation-based learning to help participants understand device behavior and sensor optimization.

Aim: This workshop aims to introduce participants to the fundamentals and applications of nanoelectronics and smart sensor technologies. It focuses on nanoscale materials, device physics, sensor fabrication concepts, and real-world applications in healthcare, environment, and wearable systems, along with exposure to simulation-based and AI-assisted design approaches.

Workshop Objectives:

  • Introduce nanoelectronics principles and device physics
  • Explain nanoscale sensor mechanisms
  • Demonstrate smart sensing technologies
  • Provide simulation-based learning experience
  • Highlight real-world applications in healthcare and environment

What you will learn?

Day 1: Fundamentals of Nanoelectronics

  • Introduction to nanoelectronics and device scaling principles
  • Quantum confinement and electron transport in nanoscale systems
  • Evolution of nanoscale transistors (MOSFETs, FinFETs, GAAFETs)
  • Carbon-based nanoelectronics: Graphene, Carbon Nanotubes (CNTs) and emerging 2D materials
  • Fundamentals of nanofabrication techniques (Photolithography, Electron Beam Lithography, Atomic Layer Deposition, CVD)

🧪 Hands-on Session 1 :Nano-Device Simulation & Transistor Scaling Lab

Activities:

  • Simulate classical versus nanoscale transistor characteristics
  • Visualize scaling effects on threshold voltage, leakage current, and power consumption
  • Compare silicon-based devices with graphene/CNT-based nano-devices
  • Optimize device parameters to evaluate switching performance


Day 2: Smart Sensors & Nano-Enabled Detection Technologies

  • Fundamentals and classification of smart sensors (physical, chemical, biological)
  • Nanomaterial-assisted sensing mechanisms and surface functionalization
  • Electrochemical, optical, piezoresistive, capacitive, and FET-based nanosensors
  • Flexible, wearable, and printed sensor technologies
  • Signal conditioning, data acquisition, and sensor performance metrics

🧪 Hands-on Session 2 : Smart Sensor Design & Signal Response Analysis

Activities:

  • Design a virtual nanomaterial-based biosensor
  • Simulate sensor responses to varying analyte concentrations
  • Analyze sensitivity, selectivity, response time, and detection limits
  • Model a real-world sensing application such as glucose monitoring or environmental pollutant detection


Day 3: Intelligent Nanoelectronics & Emerging Smart Systems

  • Nanoelectronics for wearable healthcare and implantable medical devices
  • Nano-enabled environmental monitoring and smart sensing networks
  • Integration of nanoelectronics with IoT and edge computing
  • Flexible electronics, electronic skin (e-skin), and human-machine interfaces
  • Emerging technologies: Neuromorphic electronics, quantum nanoelectronics, self-powered sensors, and future research trends

🧪 Hands-on Session 3 : Wearable Sensor & IoT Monitoring System Design

Activities:

  • Design a wearable health-monitoring sensor architecture
  • Simulate real-time acquisition of physiological signals
  • Visualize wireless transmission of sensor data to an IoT dashboard
  • Analyze sensor performance under different operating conditions

Mentor Profile

Fee Plan

StudentINR 1999/- OR USD 65
Ph.D. Scholar / ResearcherINR 2999/- OR USD 75
Academician / FacultyINR 3999/- OR USD 85
Industry ProfessionalINR 4999/- OR USD 95

Important Dates

Registration Ends
12 Oct 2026 Indian Standard Timing 3:30 PM
Workshop Dates
12 Oct 2026 to
14 Oct 2026  Indian Standard Timing 4:00 PM

Get an e-Certificate of Participation!

Intended For :

This workshop is designed for undergraduate and postgraduate students in engineering, nanotechnology, electronics, physics, biotechnology, and related disciplines, as well as Ph.D. scholars, researchers, faculty members, academicians, and industry professionals working in electronics, IoT, wearable technologies, and healthcare innovation. It is also suitable for beginners interested in exploring nano-enabled electronic systems and smart sensing technologies.

Career Supporting Skills

Workshop Outcomes

  • Understand nanoelectronics fundamentals and scaling effects
  • Analyze nanoscale transistor behavior
  • Design conceptual smart sensor systems
  • Interpret sensor signals and responses
  • Explore applications in healthcare and IoT systems
  • Connect nanotechnology with modern electronics applications

FREEDOM TO LEARN 10% OFF All Courses & Workshops Use Code: NANOINDIA10 ⏳ Offer Ends In: Loading... Learn Today. Lead Tomorrow. Explore Programs →
FREEDOM TO LEARN 10% OFF All Courses & Workshops Use Code: NANOINDIA10 ⏳ Offer Ends In: Loading... Learn Today. Lead Tomorrow. Explore Programs →