Electron & Probe Microscopy Workshop - 3 Day Advanced Learning Hub! Inside the Microworld, 3-Day Electron & Probe Microscopy Experience
Parul University MNRDC hosted a 3-day hands-on microscopy workshop. 17 researchers from 10 disciplines learned SEM, AFM, and surface analysis from leading scientists.

Establishment and Governance
The 3-Day Hands-On Training on Electron and Probe Microscopy for Surface Analysis in Health Sciences, Nanotechnology, and Materials Research was remarkable for its disciplinary breadth. Most microscopy training events in India target materials science or physics. This workshop deliberately included pharmacy, Ayurveda, civil engineering, food technology, and genetics researchers. The resulting cross-disciplinary exchange created connections and insights that no single-department training could have produced. Explore Admissions for 2026 and start building your future in innovation and technology.
The workshop was supported by the Shri B. V. Patel Education Trust, whose Deputy Director Dr. Neeta Shrivastava was personally present throughout the final day’s review session. Founded in 1974, the Trust has championed practical, hands-on learning over passive instruction – a philosophy that shaped every element of this programme. Dr. Shrivastava described the workshop as a direct reflection of the Trust’s mission: bridging the gap between knowledge and capability.
The Instrument Portfolio – 10 Advanced Tools
The Instrument Portfolio - 10 Advanced Tools
The MNRDC houses ten instruments covering the full range of material characterisation techniques. The Hitachi SU3800 Scanning Electron Microscope with EDS (₹1.9 crore, Japan, 2024) is the center’s most-used instrument, with over 897 samples analysed at a rate of 4–5 samples per day. It provides surface morphology analysis and elemental composition data in a single session. The Bruker D6 PHASER X-Ray Diffractometer (₹1.06 crore, Germany, 2024) has analysed over 600 samples, providing phase identification and crystal structure analysis using Bragg’s Law, supported by ICDD PDF-4 database and TOPAS software. The Nanosurf Core AFM (₹76 lakh, Switzerland, 2024) has characterised over 145 samples, delivering nanoscale surface topography, roughness parameters, and mechanical property data.
The Pin-on-Disc Tribometer (Novus Tribo Solutions, 2024) has tested over 118 specimens to ASTM G99 standard, analysing wear rate and friction coefficient for metals, polymers, composites, and coated materials. The LCR Meter ZM2376 (NF Corporation, Japan, 2024) has characterised over 61 samples for electrical and dielectric properties across a frequency range of 1 mHz to 5 MHz, with temperature testing up to 1,200°C using an integrated furnace. The RF/DC Magnetron Sputtering System Auto 500 (HHV India, ₹41.3 lakh, 2024) combines three deposition techniques – DC sputtering, RF sputtering, and thermal evaporation – in a single chamber for thin film deposition of metals, oxides, nitrides, and organic compounds.
Additional instruments include a Piezo-based Multicomponent Dynamometer for machining force measurement, a CNC Micro Machine Tool for precision micro-machining, a Computerised Bottom Pouring Stir Casting Machine (2 kg, 2025), and a Compression Molding Machine (50-ton, 2025). Instruments in procurement include a Differential Scanning Calorimeter (NEXTA DSC 200, Hitachi Japan) and Simultaneous Thermal Analyzer (NEXTA STA 200, Hitachi Japan).
Funded Research Projects - ISRO, CSIR, and Royal Academy of Engineering UK
The MNRDC’s research credentials are anchored by three externally funded projects spanning India’s most prestigious funding agencies and international bodies.
The ISRO project – Development and Characterisation of Processed Shape Memory Alloy (SMA) Components for Space Applications – positions the MNRDC at the intersection of materials engineering and aerospace technology. Shape memory alloys, which return to a predetermined shape upon heating, are critical for deployable structures and actuators in space missions. Characterising their surface and structural properties under various processing conditions requires exactly the instrument suite the MNRDC has assembled.
The CSIR-funded project on Design and Development of Metamaterial-Based Massive MIMO Antenna Using Machine Learning for Beyond 5G Applications connects the center to one of the most consequential telecommunications engineering challenges of the coming decade. Metamaterials – engineered to have properties not found in nature – require precise thin film deposition and surface characterisation at scales the MNRDC’s instruments are designed for.
The Royal Academy of Engineering UK-funded project on Advancing Green Hydrogen Production through Electrolysis: Optimisation and Renewable Energy Integration links the MNRDC directly to global clean energy research priorities. The center’s most significant publication – “Vertically aligned NiFeP@Ni nanotubes for efficient electrochemical production of green hydrogen and sulfur: Circular economy meets sustainable energy” (Renewable Energy, Impact Factor 9.1, Q1, 2025) – demonstrates the research capacity already being exercised in this domain.
International Partnerships and Recognition
The MNRDC has established a strategic research partnership with IIT Ropar for shared research and resources. International academic collaborations include Penza State University in Russia and the University of Surrey in the United Kingdom – home of Prof. S. Ravi P. Silva (Distinguished Professor, Director of the Advanced Technology Institute, H-index 92, CBE 2021, inventor of 50 patents, £50M research funding), who served as Chief Guest at the MNRDC’s ICSUMMIT 2026 international conference.
The centre has felicitated Parul Univesity to serve as official Knowledge Partner for international conferences in the United Kingdom and Vietnam – a recognition of its research positioning that extends well beyond Gujarat. Its growing publication record – 14 research papers enabled by the centre’s facilities, shared through its official Instagram and LinkedIn channels with QR code links to the full papers – demonstrates the translational value of its instrumentation.
Industry Partnerships and Service Model
The MNRDC actively serves the pharmaceutical, chemical engineering, materials science, and nanotechnology sectors. Industry partners include BDR Pharmaceuticals International, BDR Lifescience, AMI Lifesciences, SEASHORE NANOTECH, Gujarat Metal Cast, Nomisma Healthcare, and 15+ other organisations. External users account for a larger proportion of total usage than internal university users, with approximately 60% repeat client rate – a metric that reflects both service quality and results reliability.
The centre operates as a paid facility with separate pricing tiers for internal university users, external academic users, and industry clients. All instruments are charged per sample or per run – not per hour – with full confidentiality of all user data. NDAs can be arranged for industry projects, and IP protection follows a clearly defined framework based on whether an MoU is in place.
Training and Human Capacity Building
Beyond testing services and research, the MNRDC runs instrument-specific training workshops – one-day, two-day, and three-day formats. The three-day format includes hands-on machine operation rather than demonstration only. To date, 130 participants have been trained, drawn from pharmacy, Ayurveda, biotechnology, civil engineering, mechanical engineering, food technology, electronics, genetics, and more. Participants have come from institutions including Parul University, Sardar Vallabhbhai Patel National Institute of Technology, Vellore Institute of Technology and Sigma University.
Future expansion plans include a Smart Materials Laboratory (ISRO Funded), a Biotechnology Laboratory (SERB-TARE funded), and an RF Anechoic Chamber (CSIR-Funded). The Industries Commissionerate has also awarded a separate grant of ₹1.17 crore to establish a Centre of Excellence in Advanced Manufacturing Research and Technology at Parul University – a direct consequence of the MNRDC’s demonstrated success.
Frequently Asked Questions
Who can attend MNRDC workshops at Parul University?
MNRDC workshops are open to faculty members, PhD and Master's students, research scholars, and industry professionals from any discipline. The 3-day microscopy workshop included participants from pharmacy, Ayurveda, biotechnology, civil engineering, mechanical engineering, food technology, electronics, and genetics from institutions including Parul University and Vellore Institute of Technology.
What instruments are available at the MNRDC?
The MNRDC houses a Hitachi SU3800 SEM with EDS, Bruker D6 PHASER XRD, Nanosurf Core AFM, Pin-on-Disc Tribometer, LCR Meter ZM2376, RF/DC Magnetron Sputtering System, Piezo-based Dynamometer, CNC Micro Machine Tool, Stir Casting Machine, and Compression Molding Machine. A Differential Scanning Calorimeter and Simultaneous Thermal Analyzer (both Hitachi Japan) are in procurement.
How long does sample testing take at the MNRDC?
Standard sample testing at the MNRDC is completed within 10 working days. Urgent samples can be processed within a single day (4 SEM images for urgent vs 8 standard). This compares to the up-to-3-month turnaround Gujarat researchers previously faced when sending samples to Mumbai facilities.
What is the MNRDC's connection to ISRO and the Royal Academy of Engineering?
The MNRDC runs an ISRO-funded project on Shape Memory Alloy components for space applications. Its Royal Academy of Engineering UK-funded project focuses on green hydrogen production through electrolysis. The center's most significant publication - in Renewable Energy journal, Impact Factor 9.1 (Q1, 2025) - emerges from this green hydrogen research.
What disciplines benefited from the MNRDC microscopy workshop?
The 3-day workshop served pharmacy, chemical engineering, civil engineering, biotechnology, mechanical engineering, food technology, electronics and communication engineering, Ayurveda, genetics, and bioengineering - an unusually broad interdisciplinary spread. Participants included PhD scholars, faculty, diploma students, and international students from institutions across India.

