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Faculty details Parag Bhargava

Class of 1985 Chair Professor for Technology & Sustainable Development

Parag Bhargava

Email: pbhargava[at]iitb[dot]ac[dot]in

Phone: (+91) (022) 2576 7628

Education: 

  • Ph.D., Mats. Sci., University of Alabama (1996) 
  • M.S., Matls. Engg., University of Alabama (1994) 
  • B.Tech., Met. Engg. IIT Bombay (1991)
Teaching

In the departmental introductory course (Materials & Technology) he always begins with discussion on engineering, its role in shaping the society and economy, the role of innovation etc. In his teaching, besides the formal curriculum he has always included projects which require some hands­on thinking. Some of the projects assigned include disassembly of gadgets, machines, instruments where the students are required to study the function of each part, the materials that the parts are made of and the methods by which these parts are manufactured and whether they are produced in India. Other projects were based on fabrication, materials recycling and identification of a new need/ unsolved problem / improvement needed by interviewing at least 15 – 20 stakeholders.

Courses taught: Experimental Techniques in Materials Science; Ceramic Processing Techniques; Colloid and Interfacial Science; Materials and Technology / It’s a Materials World

Research profile

Most of Prof. Bhargava’s work is centred around particulate materials. His group, while working on basic research, has always maintained a keen interest in application oriented or product development research. He and his group has also been undertaking research on scaling up of previously developed processes in the lab. He is a co­founder of several companies in the domain of particulate processing / ceramics (ANTS Ceramics, Digident LLP, Metwiz Materials). Some of the technology development work undertaken includes ­ Electrophoretic deposition of diamond particles on phosphor bronze wheels for jewellery diamond sawing applications, Conductive silver paste for flexible membranes for use in keyboards, Ceramic carbon resistors for electrical power applications, A process and machine for spinning ceramic (alumina) fibres, A process for making kg level quantity of nanozirconia, Ceramic foams for high temperature thermal insulation and machine for continuous production of ceramic foams.

Research interest
  • Powder Processing 
  • Shape Forming of Ceramics 
  • Rheology of inks, Pastes 
  • Synthesis of weakly agglomerated nanoparticles 
  • Dental Materials 
  • Glasses and glass ceramics 
  • Silver inks, Pastes for Sensors / Flexible Electronics / Solar PV 
  • Scaling­up and Product development

Screen printed silver paste for flexible electronics

Centrifugally spun ceramic fibres for high temperature applications

Machinable glass ceramic for dental applications

Faculty details Prasanna Kumar

Assistant Professor

Prasanna Kumar S. Mural

Email: prasannamural[at]iitb[dot]ac[dot]in

Phone: (+91) (022) 2576 7635

Education: 

  • Ph.D. Nano Sci. & Engg. IISc, Bangalore 2017 
  • M.B.A. (Total Quality Management) Sikkim Manipal 2012 
  • M.Tech. (Plastic Tech.) ­ CIPET, Bhubaneshwar, 2009 
  • B.E. (Chem. Engg.) ­ N.I.T.Karnataka 2006
Teaching

Prof. Prasanna kumar's teaching policy involves him being always humble and remain as a student for learning. He believes in teaching that imparts confidence in critical thinking to the students so they are in a position to communicate their knowledge efficiently. His teaching instills a foundation for students to venture and tackle the new problem with cutting­edge research. Some courses taught are: 

Undergraduate Course: ­ Engineering Polymers & Composites, Heat Treatment Laboratory 

Postgraduate Course:­ Communication Skills, Sustainable Materials for Water Treatment

Research profile

Prof. Prasanna Kumar’s research interests are in the area of Polymer nanocomposites for developing sustainable technologies to meet energy and water demand. His work involves the synthesis of nanoparticle preparation, tailoring the nanoparticles with suitable chemical functionalities, polymer nanocomposite preparation, and materials characterization that benefit in developing suitable nanocomposite material which may assist in emerging sustainable technologies. His work is interdisciplinary research that involves bridging to connect nanotechnology from lab setup to industrial scale to meet energy and water demand. A major aspect of his research is the development model system for process integration of new avenues in developing future products. During his tenure at NIT Calicut, Kerala he established nanogenerator material for energy harvesting. His team at IITB is looking into developing multifaceted materials for energy, water, and sensor applications [1,2,3].

Research interest
  • Polymer nanocomposites 
  • Membranes 
  • Piezotribo­electric materials 
  • Nanofibers

Films for Energy Harvesting

Thin­ film composite membrane

Multi­functional material in real world

References
  1. Chandran, Akash M., et al. "Zinc oxide nanoparticles coated with (3­aminopropyl) triethoxysilane as additives for boosting the dielectric, ferroelectric, and piezoelectric properties of poly (vinylidene fluoride) films for energy harvesting." ACS Applied Nano Materials 4.2 (2021): 1798­1809. 
  2. Chandran, Akash M., and Prasanna Kumar S. Mural. "Surface silanized MWCNTs doped PVDF nanocomposite with self­organized dipoles: an intrinsic study on the dielectric, piezoelectric, ferroelectric, and energy harvesting phenomenology." Sustainable Energy & Fuels 6.6 (2022): 1641­1653. 
  3. Chandran, Akash M., Ekta Tayal, and Prasanna Kumar S. Mural. "Polycaprolactone­blended cellulose acetate thin­film composite membrane for dairy waste treatment using forward osmosis." Environmental Science and and Pollution Research 29.57 (2022): 86418­86426.

Faculty details Rajiv O. Dusane

Institute Chair Professor

Rajiv O. Dusane

Email: rodusane[at]iitb[dot]ac[dot]in

Phone: (+91) (022) 2576 7633

Education: 

  • Ph.D. ­ Physics, 1990, Univ. of Poona, Pune, 
  • M.Sc. ­ Physics, Nagpur Univ ­ 1984
Teaching

Prof. Dusane has engaged students in thin films and semiconductor device processing courses over the last 20 or more years with special emphasis on the practical aspects. He also established the Thin Film lab for both UG and PG students. As his special interest he also took the communication course for the PG students. 

Undergraduate course: Science and Technology of Thin Films 

Postgraduate course: Materials and Processes for Semiconductor Device Manufacturing

Research profile

Prof. Dusane has over the last 30 years carried out fundamental and applied research in the area of semiconductor thin films and devices, surface modification and plasma processing of various materials with a view to develop new processes and materials in thin film and nano structure form, capable for a variety of applications ranging from solar cells, thin film light emitting devices (TFLEDs), microelectronic devices, sensors and actuators (MEMS) and batteries. He has done pioneering work in the area of Hot Wire Chemical Vapor Deposition (HWCVD) process in this country. Several patents have resulted out of this work and some successful industrial collaborations have also been undertaken. Over these years he has established state of the art facilities for thin film deposition and characterization. Recent significant work from his group is the Silicon nanowire­based anode for Li­ion battery. The work carried out till now has demonstrated the capabilities of the Hot Wire process in diverse areas like Microelectronics, Biocompatible materials, surface functionalization and modification, barrier layers etc. This has given new directions to the applicability of the HWCVD process in the area of MEMS and sensors. Recently he has designed and developed a HWCVD multi­chamber cluster tool, the first of its kind in the country.

Research interest
  • Semiconductor thin films for optoelectronic devices, 
  • Photovoltaic devices, 
  • Energy storage

HIT solar cell on textured Silicon wafer architecture and fabricated cell

The newly developed HWCVD multichamber system

Silicon Nanowire Anode based Li­ ion pouch cell

References
  1. Rashmi Tripathi, V Chauhan, P Gandharapu, S Kobi, A Mukhopadhyay, R O Dusane. “Si Nanowires Grown on Cu Substrates via the Hot­Wire­ Assisted Vapor–Liquid–Solid Method for Use as Anodes for Li­Ion Batteries”. ACS Applied Nano Materials (2022), 17767–17782. 
  2. "Conformal Deposition of BxC in High Aspect Ratio Trenches for 3­D neutron detectors", Gourav Kumar, Partha Karar, D S Patil, Arvind Singh, Anita Topkar, R O Dusane Thin Solid Films 720 (2021) 138521 
  3. "Piezoresistive pressure sensor using nanocrystalline silicon thin film on flexible substrate", V Pandey, A Mandal, S Sisle, MP Gururajan, R O Dusane Sensors and Actuators A: Physical 316, 112372

Faculty details Shobha Shukla

Professor

Shobha Shukla

Email: 184114003[at]iitb[dot]ac[dot]in

Phone: (+91) (022) 2576 7607

Education: 

  • PhD (Microelectronics, Photonics and Materials) – Dept. of Electrical Engineering, University at Buffalo/SUNY­ Buffalo, NY, USA – 2010 
  • MS (Electrical Engineering with major in photonics & microelectronics – Dept. of Electrical Engineering, University at Buffalo/SUNY­Buffalo, NY, USA – 2008. 
  • MSc (Electronics) ­ Dept. of Physics, Lucknow University, Lucknow, UP, India – 2002.
Teaching

Prof. Shobha Shukla teaches a range of courses, encompassing not only technical but also soft skills. Some of the courses offered by her are­ 

  • Vibrational Spectroscopy for Material Scientists 
  • Laser Processing and nanostructures 
  • Electrical characterization of Materials 
  • Communication skills
Research profile

Prof. Shobha Shukla specializes in research areas including 3D/4D micro/ nanofabrication using two­photon lithography, wastewater treatment, biophotonics, and plasmonic devices. She collaborates extensively with industry, government, and academic partners, employing both experimental and computational approaches to address global environmental challenges related to air, water, and energy. Recently, her team at IIT Bombay has developed the first additive­free all­carbon composite for patterning of fluorescent micro/nanostructures [1]. Another team is focused on wastewater treatment, using graphene­based porous materials and nanocomposite polymer membranes. They have developed a range of working devices, like Oil Shark_R, Dye Monster, H­ MetaS, and Oil Trapper, aimed at resource recovery and water purification [2]. The development of a miniaturized nano­ sensor for the detection of the arsenic species in water, is another example of work which lies at the intersection of chemistry, photonics and water quality monitoring. In addition to her research, Prof. Shukla serves as the Center­in­ Charge at the Water Innovation Center: Technology Research & Education (WICTRE). She is also an associated faculty member at the IITB­Ohio State Frontier Science and Engineering Research Center. She also serves an an Editorial Board member of 'Scientific Reports' (Nature Publishing Group), 'Journal of Physics­Photonics' and 'Nanotechnology' (IoP Publishing), and the Editorial Advisory Board Member of 'Materials Open Research' by Taylor & Francis. She has also been involved as a Guest Editor for “Thematic issue in Graphene synthesis & patterning” by 'Frontiers in Materials' and a special issue focussed on "Metaphotonics" in 'Journal of Physics­Photonics.”

Research interest
  • Two­photon lithography 
  • Wastewater treatment 
  • Biophotonics Plasmonic devices

Two­photon patternable all carbon material system for the fabrication of fluorescent micro/nanostructures [1].

Development of graphene­based materials for oil and organic solvent recovery and water purification [2].

Single­platform device developed for the detection of organo­arsenic species in water [3].

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