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Issue DateTitleAuthor(s)
2015A novel energy-based method to evaluate indentation modulus and hardness of cementitious materials from nanoindentation load–displacement dataJha K.K.; Suksawang N.; Lahiri, Debrupa; Agarwal A.
2015Aligned carbon nanotube reinforced polymeric scaffolds with electrical cues for neural tissue regenerationGupta P.; Sharan S.; Roy, Partha; Lahiri, Debrupa
2020Anisotropically Conductive Biodegradable Scaffold with Coaxially Aligned Carbon Nanotubes for Directional Regeneration of Peripheral NervesGhosh S.; Haldar S.; Gupta S.; Bisht A.; Chauhan S.; Kumar V.; Roy, Partha; Lahiri, Debrupa
2011Apatite formability of boron nitride nanotubesLahiri, Debrupa; Singh V.; Keshri A.K.; Seal S.; Agarwal A.
2021Application of 3D bioprinting in wound healing: A reviewGhosh S.; Kaushik G.; Roy, Partha; Lahiri, Debrupa
2020Assessment of biomechanical stability and formulation of a statistical model on magnesium based composite in two different milieusDubey A.; Jaiswal S.; Lahiri, Debrupa
2021Assessment of Interfacial Interaction in Graphene Nanoplatelets and Carbon Fiber-Reinforced Epoxy Matrix Multiscale Composites and Its Effect on Mechanical BehaviorJain V.; Bisht A.; Jaiswal S.; Dasgupta K.; Lahiri, Debrupa
2019Au nanoparticle-decorated aragonite microdumbbells for enhanced antibacterial and anticancer activitiesSamanta A.; Podder S.; Kumarasamy M.; Ghosh C.K.; Lahiri, Debrupa; Roy, Partha; Bhattacharjee S.; Ghosh J.; Mukhopadhyay A.K.
2021Biocompatibility and biodegradability evaluation of magnesium-based intramedullary bone implants in avian modelAbhishek M.S.; Jaiswal S.; Dubey A.; Lahiri, Debrupa; Das A.K.
2015Biocompatibility of ultrafine grained zircaloy-2 produced by cryorolling for medical applicationsTrivedi P.; Goel S.; Das S.; Jayaganthan R.; Lahiri, Debrupa; Roy, Partha
2019Bioengineered smart trilayer skin tissue substitute for efficient deep wound healingHaldar S.; Sharma A.; Gupta S.; Chauhan S.; Roy, Partha; Lahiri, Debrupa
2011Boron nitride nanotube reinforced hydroxyapatite composite: Mechanical and tribological performance and in-vitro biocompatibility to osteoblastsLahiri, Debrupa; Singh V.; Benaduce A.P.; Seal S.; Kos L.; Agarwal A.
2010Boron nitride nanotube reinforced polylactide-polycaprolactone copolymer composite: Mechanical properties and cytocompatibility with osteoblasts and macrophages in vitroLahiri, Debrupa; Rouzaud F.; Richard T.; Keshri A.K.; Bakshi S.R.; Kos L.; Agarwal A.
2013Boron nitride nanotubes reinforced aluminum composites prepared by spark plasma sintering: Microstructure, mechanical properties and deformation behaviorLahiri, Debrupa; Hadjikhani A.; Zhang C.; Xing T.; Li L.H.; Chen Y.; Agarwal A.
2012Carbon nanotube reinforced hydroxyapatite composite for orthopedic application: A reviewLahiri, Debrupa; Ghosh S.; Agarwal A.
2010Carbon nanotube reinforced metal matrix composites - A reviewBakshi S.R.; Lahiri, Debrupa; Agarwal A.
2009Carbon nanotube reinforced polylactide-caprolactone copolymer: Mechanical strengthening and interaction with human osteoblasts in vitroLahiri, Debrupa; Rouzaud F.; Namin S.; Keshri A.K.; Valdas J.J.; Kos L.; Tsoukias N.; Agarwal A.
2010Carbon nanotube toughened hydroxyapatite by spark plasma sintering: Microstructural evolution and multiscale tribological propertiesLahiri, Debrupa; Singh V.; Keshri A.K.; Seal S.; Agarwal A.
2011Carbon nanotubes improve the adhesion strength of a ceramic splat to the steel substrateKeshri A.K.; Lahiri, Debrupa; Agarwal A.
2011Carbon nanotubes: How strong is their bond with the substrate?Lahiri, Indranil; Lahiri, Debrupa; Jin S.; Agarwal A.; Choi W.