Rohit Khanna

Materials Scientist with PhD and publications in biomaterials, tissue engineering and structural material applications

About

Dr. Rohit Khanna is a highly educated and experienced researcher in the field of materials science and engineering. He earned his Ph.D. in Materials and Nanotechnology from North Dakota State University in 2010, focusing on the development and characterization of advanced ceramic materials. Prior to this, he completed his M. Tech. in Materials Science and Engineering from Indian Institute of Technology Kanpur in 2006 and his B. Engg. in Ceramic Engineering from National Institute of Technology Rourkela in 2001. He then moved on to work as a Postdoctoral Scholar at Pennsylvania State University, where he further expanded his expertise in the field of materials science. Dr. Khanna has also gained international research experience through his work as a Visiting Research Scientist and JSPS Postdoctoral Fellow at Chubu University in Japan. During this time, he focused on developing new materials for biomedical and energy applications. Dr. Khanna worked as an Assistant Professor of Research at the University of Texas at San Antonio, where he mentored graduate students and conducted research on the synthesis and characterization of novel materials for various applications. He also worked as Principal Scientist at Durahip LLC, where he led research projects related to developing high-performance ceramic materials for medical implant applications. Dr. Khanna's research has been published in numerous peer-reviewed journals and he has presented his work at various national and international conferences. He is also a member of several professional organizations, including the American Ceramic Society and Materials Research Society. Overall, Dr. Khanna is a highly accomplished researcher with a strong background in materials science and engineering. His extensive education and diverse research experience make him a valuable asset in the field of materials science.

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Publications

Fabrication of dense α-alumina layer on Ti-6Al-4V alloy hybrid for bearing surfaces of artificial hip joint
Materials Science and Engineering: C
2016
Progress in Wear Resistant Materials for Total Hip Arthroplasty
Coatings
2017
Fabrication of dense alumina layer on Ti alloy hybrid by cold metal transfer and micro-arc oxidation methods
Journal of Materials Research
2017
Perspective: Ultrastructural Origins of Bone Fragility
Osteology and Rheumatology – Open Journal
2016
Formation of Alumina Layer on Ti Alloy for Artificial Hip Joint
Key Engineering Materials
2014
Novel artificial hip joint: A layer of alumina on Ti–6Al–4V alloy formed by micro-arc oxidation
Materials Science and Engineering: C
2015
Preparation of a titanium metal electrode with a nitrogen-doped one-dimensional titanium oxide surface layer for the support of catalysts
RSC Advances
2015
Critical Temperature for Fabrication of Ti Metal Electrode Produced by Alkali, Acid and Heat Treatment in N2 Gas
Journal of Clean Energy Technologies
2013
Experiments in Nanomechanical Properties of Live Osteoblast Cells and Cell–Biomaterial Interface
Journal of Nanotechnology in Engineering and Medicine
2011
Bone nodules on chitosan–polygalacturonic acid–hydroxyapatite nanocomposite films mimic hierarchy of natural bone
Acta Biomaterialia
2011
Effects of entrapment on nucleic acid content, cell morphology, cell surface property, and stress of pure cultures commonly found in biological wastewater treatment
Applied Microbiology and Biotechnology
2011
In Situ Swelling Behavior of Chitosan-Polygalacturonic Acid/Hydroxyapatite Nanocomposites in Cell Culture Media
International Journal of Polymer Science
2010
Nanomechanics of Surface Modified Nanohydroxyapatite Particulates Used in Biomaterials
Journal of Engineering Mechanics
2009
Sliding Wear Properties of Self‐Mated Yttria‐Stabilized Tetragonal Zirconia Ceramics in Cryogenic Environment
Journal of the American Ceramic Society
2007
Low friction and severe wear of alumina in cryogenic environment: A first report
Journal of Materials Research
2006
Microstructure, mechanical properties and oxidation behavior of a multiphase (Mo,Cr)(Si,Al)2 intermetallic alloy–SiC composite processed by reaction hot pressing
Materials Science and Engineering: A
2004

Education

North Dakota State University

Ph.D. / August, 2010

Fargo, North Dakota, United States of America

Indian Institute of Technology Kanpur

M. Tech., Materials Science and Engineering / April, 2006

Kanpur

National Institute of Technology Rourkela

B. Engg., Ceramic Engineering / April, 2001

Rourkela

Experience

University of Texas at San Antonio

Assistant Professor of Research / August, 2016May, 2017

Pennsylvania State University

Postdoctoral Scholar / July, 2014June, 2015

Chubu University

Visiting Research Scientist / April, 2014July, 2014

JSPS Postdoctoral Fellow / April, 2012March, 2014

Postdoctoral Researcher / April, 2011March, 2012

Durahip LLC

Principal Scientist / July, 2014Present

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