{"id":3637,"date":"2019-02-17T20:35:38","date_gmt":"2019-02-17T15:05:38","guid":{"rendered":"http:\/\/iap.iisc.ac.in\/~abha\/?page_id=3637"},"modified":"2024-08-02T17:50:17","modified_gmt":"2024-08-02T12:20:17","slug":"publications","status":"publish","type":"page","link":"https:\/\/iap.iisc.ac.in\/~abha\/publications\/","title":{"rendered":"Publications"},"content":{"rendered":"\n<ol class=\"wp-block-list\"><li>Sutradhar, A. ; V.P., Krishnakumar; Mahapatra, A. D.; Sharma, P.; Misra, A., &#8220;Effect of oxygen on ammonia sensing of large area graphene&#8221;, <em><strong>New Journal of Chemistry<\/strong><\/em>  (Accepted 2024). <\/li><li>Chauhan, P. ; Parekh, M.; Sahoo, S.; Kumar, S.; Mondal, A.; Mahapatra, A. D.; Sharma, P.; Panwar, V.; Rao, A.M.; Misra, A., &#8220;Influence of Electrolyte on photo-charging capability of a ZnO-FTO supercapacitor&#8221;, <strong><em>Journal of Materials Chemistry A<\/em><\/strong> (Accepted 2024). <\/li><li>Mahapatra, A. D.; Kumar, S.; Chauhan, P.; Mondal, A.; Sutradhar, A.; Misra, A., \u201c&#8221;Large Area Graphene-MXene Quantum Dots Based High Performance Photochargeable Supercapacitor&#8221;,\u00a0 <em><strong>ACS Applied Energy Materials<\/strong><\/em> (Accepted 2024).<\/li><li>Krishnakumar, V. P.; Mahapatra, A. D.; Panwar, V.; Mondal, A.; Kumar, C. Kumar, P.; Misra, A., \u201cSemiconductor-Nanoparticle-Anchored Single-Walled Carbon Nanotubes for a Bolometer\u201d, <em><strong>Langmuir<\/strong><\/em>, 2024, 40, 11023. <a rel=\"noreferrer noopener\" href=\"https:\/\/doi.org\/10.1021\/acs.langmuir.4c00393\" target=\"_blank\"> https:\/\/doi.org\/10.1021\/acs.langmuir.4c00393<\/a><\/li><li>Panwar, V.; Dey, M.; Sharma, P.; Karthick, S.; Nandi, S.; Tripathi, R.; Mondal, A.; Makineni, S. K.; Shukla, A.; Singh, A.; Misra, A. \u201cUltrahigh photo-responsivity and detectivity in two-dimensional bismuth sulphide photodetector for Vis-NIR radiation\u201d, <em><strong>Small<\/strong><\/em>, 2024, 2309428. <a rel=\"noreferrer noopener\" href=\"https:\/\/doi.org\/10.1002\/smll.202309428\" target=\"_blank\">https:\/\/doi.org\/10.1002\/smll.202309428<\/a>. <\/li><li>Kumar, S.; Mondal, A.; Panwar, V.; Chauhan, P. S.; Shekhawat, R.;  Misra, A. \u201c Highly Efficient Photo Rechargeable Supercapacitor based on  Ambipolar Interface of Graphitic Carbon Nitride and MXene\u201d, <strong><em>Batteries  &amp; Supercaps<\/em><\/strong>, (Accepted 2023) <a rel=\"noreferrer noopener\" href=\"https:\/\/doi.org\/10.1002\/batt.202300393\" target=\"_blank\">https:\/\/doi.org\/10.1002\/batt.202300393<\/a> <\/li><li>Mahapatra, A. D.; Kumar, S.; Sutradhar, A.; Sahoo, S.; Misra, A.  \u201cZnO\/CdS based high performance broadband photo-chargeable flexible  supercapacitor\u201d\u00a0<strong><em>Electrochimica Acta<\/em><\/strong>, 2024, 474,1\u00a0143507 <a rel=\"noreferrer noopener\" href=\"https:\/\/doi.org\/10.1016\/j.electacta.2023.143507\" target=\"_blank\">https:\/\/doi.org\/10.1016\/j.electacta.2023.143507<\/a> <\/li><li>Chauhan, P.S.; Sen, Ria; Kumar, Sumana; Panwar,  V.; Misra, A. \u201cRole of graded microstructure and electrolyte  distribution in electrochemical capacitance of compressible  three-dimensional carbon nanotubes-polymer foam based supercapacitor\u201d<em>\u00a0<\/em><strong><em>Electrochimica Acta<\/em><\/strong>\u00a02023, 461 142595.\u00a0<a rel=\"noreferrer noopener\" href=\"https:\/\/doi.org\/10.1016\/j.electacta.2023.142595\" target=\"_blank\">https:\/\/doi.org\/10.1016\/j.electacta.2023.142595<\/a><\/li><li>Panwar, Vinod; Chauhan, Pankaj; Kumar, Sumana; Tripathi, Rahul; Misra,  Abha, \u201cGate field induced extraordinary energy storage in MoS2-graphene  based ultramicro-electrochemical capacitor\u201d,\u00a0\u00a0<em><strong>ACS  Energy Lett.<\/strong><\/em>\u00a02023, 8, 3, 1510\u20131519.\u00a0<a rel=\"noreferrer noopener\" href=\"https:\/\/doi.org\/10.1021\/acsenergylett.2c02476\" target=\"_blank\">https:\/\/doi.org\/10.1021\/acsenergylett.2c02476<\/a><\/li><li> Kumar, S.; Mukherjee, A.; Telpande , swanand;  Mohapatra, A.; Kumar, Praveen; Misra, Abha, Role of electrode-edge in  optically sensitive three-dimensional carbon foam-MoS2 based  high-performance microsupercapacitor, <em> <strong>J. Mater. Chem. A<\/strong><\/em>,  2023,11,  4963-4976.\u00a0<a rel=\"noreferrer noopener\" href=\"https:\/\/doi.org\/10.1039\/D2TA09002C\" target=\"_blank\">https:\/\/doi.org\/10.1039\/D2TA09002C<\/a><\/li><li>Nandi, S.; Panwar, V.; Misra, Abha, Metal-carbon nanotube composite for wavelength-selective bolometer with improved characteristics, <strong><em>Journal of Applied Physics<\/em><\/strong>, 2023, <strong>133<\/strong>, 043104; <a rel=\"noreferrer noopener\" href=\"https:\/\/doi.org\/10.1063\/5.0129993\" target=\"_blank\">https:\/\/doi.org\/10.1063\/5.0129993<\/a>. <\/li><li> Nandi,  S.; Misra, Abha, Carbon nanotube-based uncooled bolometers: advances and progress. <em><strong>ACS Materials Lett.<\/strong><\/em> 2023,  5, 1, 249\u2013274. <a rel=\"noreferrer noopener\" href=\"https:\/\/doi.org\/10.1021\/acsmaterialslett.2c00680\" target=\"_blank\">https:\/\/doi.org\/10.1021\/acsmaterialslett.2c00680<\/a><\/li><li> Chauhan, P.S.; Kumar, S.; Mondal, A.; Sharma, P.; Parekh, M.; Rao A.M.; Misra, Abha, Stacked vanadium pentoxide-zinc oxide interface for optically-chargeable supercapacitors, J. Mater. Chem. A, <strong><em>J. Mater. Chem. A<\/em><\/strong>, 2023,11, 95-107. <a rel=\"noreferrer noopener\" aria-label=\"https:\/\/doi.org\/10.1039\/D2TA06790K (opens in a new tab)\" href=\"https:\/\/doi.org\/10.1039\/D2TA06790K\" target=\"_blank\">https:\/\/doi.org\/10.1039\/D2TA06790K<\/a><\/li><li>Panwar, V.; Nandi, S.; Majumder, M.; Misra, Abha, Self-powered ZnO based  pyro-phototronic photodetectors: Impact of heterointerfaces and  parametric studies, <strong><em>J. Mater. Chem. C<\/em><\/strong>, 2022, 10, 12487-12510. <a href=\"https:\/\/doi.org\/10.1039\/D2TC02030K\">https:\/\/doi.org\/10.1039\/D2TC02030K<\/a> <\/li><li>Kumar,  S.; Nandi, S.; Mishra, V.; Shukla, A.; Misra, Abha, Anomalous  electrochemical capacitance in Mott insulator titanium sesquioxide,\u00a0<strong><em>J.  Mater. Chem. A<\/em>,<\/strong> 2022,10, 7314-7325.\u00a0<a rel=\"noreferrer noopener\" href=\"https:\/\/doi.org\/10.1039\/D1TA10262A\" target=\"_blank\">https:\/\/doi.org\/10.1039\/D1TA10262A<\/a><\/li><li>Tripathi,\u00a0R.;\u00a0Bhattacharyya,  P.;\u00a0Nandi,  S.;\u00a0Shukla,  A.;\u00a0Misra, Abha,\u00a0Molecular switching operation in gate constricted interface of MoS<sub>2<\/sub>\u00a0and hBN heterostructure,\u00a0<em><strong>Applied  Materials Today,\u00a0<\/strong><\/em>\u00a02021, 23, 100999.\u00a0<a rel=\"noreferrer noopener\" href=\"https:\/\/doi.org\/10.1016\/j.apmt.2021.100999\" target=\"_blank\">https:\/\/doi.org\/10.1016\/j.apmt.2021.100999<\/a><\/li><li>Nandi  S.; Kumar S.; Misra, Abha, Zinc oxide heterostructures: advances in  devices from self-powered photodetectors to self-charging  supercapacitors,\u00a0<strong><em>Mater.  Adv.<\/em>, <\/strong>2021,2, 6768-6799.\u00a0\u00a0<a rel=\"noreferrer noopener\" href=\"https:\/\/doi.org\/10.1039\/D1MA00670C\" target=\"_blank\">https:\/\/doi.org\/10.1039\/D1MA00670C<\/a><\/li><li>Tripathi, Rahul; Misra, Abha, A Novel Approach Towards Molecular Memory Device in Gate Tunable Structure of MoS<sub>2<\/sub>-graphene,\u00a0<em><strong>Nano  Research\u00a0<\/strong>,\u00a0<\/em>2021,\u00a014, 177-184.\u00a0<a rel=\"noreferrer noopener\" href=\"https:\/\/doi.org\/10.1007\/s12274-020-3063-7\" target=\"_blank\">https:\/\/doi.org\/10.1007\/s12274-020-3063-7<\/a>\u00a0<\/li><li>Ghosh,  R.; Misra, Abha, Carbon nanotube based hierarchical paper structure for  ultra-high electrothermal actuation in large humidity range,\u00a0<em><strong>ACS  Appl. Electron. Mater.<\/strong><\/em>\u00a02021, 3, 3, 1260\u20131267.\u00a0<a rel=\"noreferrer noopener\" href=\"https:\/\/doi.org\/10.1021\/acsaelm.0c01069\" target=\"_blank\">https:\/\/doi.org\/10.1021\/acsaelm.0c01069<\/a><\/li><li>Kumar,  S.; Misra, Abha, Three-dimensional Carbon Foam-Metal Oxides based  Asymmetric Electrodes for High-performance Solid-state  Micro-Supercapacitor,<strong>\u00a0<em>Nanoscale<\/em>, <\/strong>2021,13, 19453-19465,\u00a0<a rel=\"noreferrer noopener\" href=\"https:\/\/doi.org\/10.1039\/D1NR02833B\" target=\"_blank\">https:\/\/doi.org\/10.1039\/D1NR02833B<\/a><\/li><li>Tripathi,  Rahul; Bhattacharyya, Pritam; Shukla, Alok; Misra, Abha, Role of  defect-induced interfacial states in molecular sensing: Ultrahigh  sensitive region for molecular interaction,<strong><em>Physical  Rev. Applied<\/em>, <\/strong>2020, 14, 054014.<a rel=\"noreferrer noopener\" href=\"https:\/\/doi.org\/10.1103\/PhysRevApplied.14.054014\" target=\"_blank\">https:\/\/doi.org\/10.1103\/PhysRevApplied.14.054014<\/a><\/li><li>Nandi  S.; Tripathi, R.; Adhikary, G. D.; Kumar, P.; Misra, Abha Ultrahigh  Infrared Photoresponse in Titanium Sesquioxide at Mott-insulator  Transition, <strong>Advanced Materials Interfaces, <\/strong>2020, 7, 2001091.<a rel=\"noreferrer noopener\" href=\"https:\/\/doi.org\/10.1002\/admi.202001091\" target=\"_blank\">https:\/\/doi.org\/10.1002\/admi.202001091<\/a><\/li><li>Kumar,  Sumana; Telpande, swanand; Manikandan, Veera; Kumar, Praveen; Misra,  Abha, Novel Electrode Geometry for High Performance CF\/Fe<sub>2<\/sub>O<sub>3<\/sub>\u00a0based  Planar Solid State Micro-electrochemical Capacitor, \u00a0<em><strong>Nanoscale,\u00a0<\/strong><\/em>2020,12, 19438-19449.\u00a0<a rel=\"noreferrer noopener\" href=\"https:\/\/doi.org\/10.1039\/D0NR04410E\" target=\"_blank\">https:\/\/doi.org\/10.1039\/D0NR04410E<\/a><\/li><li>Ghosh,  Rituparna; Misra, Abha, Tailored Viscoelasticity of Polymer Cellular  Structure through Nanoscale Entanglement of Carbon Nanotubes,\u00a0<strong><em>Nanoscale  Adv.<\/em>,<\/strong> 2020,2, 5375-5383.\u00a0<a rel=\"noreferrer noopener\" href=\"https:\/\/doi.org\/10.1039\/D0NA00333F\" target=\"_blank\">https:\/\/doi.org\/10.1039\/D0NA00333F<\/a><\/li><li>Ghosh, R.  Telpande, S. Gowda, P. Reddy, S. K. Kumar, P. Misra, A. Deterministic  Role of Carbon Nanotube-Substrate Coupling for Ultrahigh Actuation in  Bi-layer Electro-Thermal Actuators, <strong>ACS Applied Materials &amp; Interfaces,\u00a0<\/strong>2020, 12, 29959\u201329970. <\/li><li>Nandi S.; Misra, A. Spray Coating of Two-dimensional Suspended Film of Vanadium Oxide Coated Carbon Nanotubes for Fabrication of Large Volume Infrared Bolometer, <strong>ACS Appl. Mater. Interfaces,<\/strong> 2020, 12 (1), 1315-1321.<\/li><li>Mukherjee, A.; Jaidev, L.; Chatterjee, K.; Misra, A. Modified Fermi Level in Strontium Nanoparticles Decorated Reduced Graphene Oxide for Wide Concentration Detection of Nitrogen Dioxide at Room Temperature. <strong> Res. Express 6 (2019) 065611<\/strong>.<\/li><li>Mukherjee, A.; Jaidev, L.; Chatterjee, K.; Misra, A. Nanoscale heterojunctions of rGO-MoS<sub>2<\/sub> composites for nitrogen dioxide sensing at room temperature, <strong>Nano Express<\/strong> 2020, 1, 010003.<\/li><li>Boruah B. D.; Misra A. Voltage Generation in Optically Sensitive Supercapacitor for Enhanced Performance. <strong>ACS Applied Energy Materials<\/strong>, 2019, 2, 1, 278-286.<\/li><li>Boruah B. D.; Maji A.; Misra A. Flexible Array of Micro-supercapacitor for Additive Energy Storage Performance Over a Large Area. <strong>ACS Applied Materials and Interfaces,<\/strong> 2018, 10, 15864-15872.<\/li><li>Boruah B. D.; Nandi S.; Misra A. Layered assembly of reduced graphene oxide and vanadium oxide heterostructure supercapacitor electrodes with larger surface area for efficient energy storage performance. <strong>ACS Applied Energy Materials,<\/strong> 2018, 1, 1567-1574.<\/li><li>Boruah, B. D.; Majji, S. N.; Nandi, S.; Misra, A. Doping controlled pyro-phototronic effect in self-powered zinc oxide photodetector for enhancement of photoresponse, <strong>Nanoscale<\/strong>, 2018, 10, 3451 \u2013 3459.<\/li><li>Boruah, B. D.; Misra, A. Synergistic effect in heterostructure of ZnCo<sub>2<\/sub>O<sub>4<\/sub> and hydrogenated zinc oxide nanorods for high capacitive response, <strong>Nanoscale<\/strong>, 2017, 9, 9411 \u2013 9420.<\/li><li>Boruah, B. D.; Misra, A. Photocharge-Enhanced Capacitive Response of a Supercapacitor, <strong>Energy Technology <\/strong>2017, 5, 1356-1363.<\/li><li>Boruah, B. D.; Misra, A. Internal asymmetric tandem supercapacitor for high working voltage along with superior rate performance, <strong>ACS Energy Letters<\/strong>, 2017, 2, 1720-1728.<\/li><li>Boruah, B. D.; Majji, S. N.; Misra, A. Surface photo-charge effect in doped-ZnO nanorods for high-performance self-powered ultraviolet photodetectors. <strong>Nanoscale<\/strong>, 2017, 9, 4536 &#8211; 4543.<\/li><li>Nandi, S.; Boruah, B.; Misra, A. Zinc oxide quantum dots decorated carbon nanotubes for improved opto-electro-mechanical response, <strong>Sensors and Actuators A: Physical<\/strong>, 2017, 267, 351-359.<\/li><li>Tripathi, R.; Majji, S.; Ghosh, R.; Nandi, S.; Boruah, B.; Misra, A. Capacitive behavior of Carbon Nanotubes Thin Film Induced by Deformed ZnO Microspheres, <strong>Nanotechnolgy<\/strong>, 2017, 28, 395101.<\/li><li>Mukherjee, A.; Reddy, S. K.; Boruah, B. D.; Misra, A. Influence of charge traps in carbon nanodots on gas interaction. <strong>Nanotechnology<\/strong>, 2017, 28, 135206.<\/li><li>Jain, L. Mohapatra, D. R.; Basu, R.; Misra, D. S.; Misra, A.; Samajdar, I. Effect of interplay Between Isotropic Gases on Microstructural Evolution of Single Crystal Diamond, <strong>Crystal Research and Technology<\/strong>, 2017, 52.<\/li><li>Jain, L.; Mani Krishna, K.V.; Prasad, A.; Mehtani, H. K.; Misra, D. S.; Misra, A., Samajdar, I. D. Defining the role of silicon substrate orientation on the polycrystalline diamond film: a novel approach for characterizing faceted microstructures, <strong>Crystal Growth &amp; Design<\/strong>, 2017, 17, 5366-5376.<\/li><li>Ghosh, R.; Boruah, B. D.; Misra, A. Thermo-mechanical behavior of graphene oxide hydrogel. <strong>Materials Research Express, <\/strong>2017<strong>,<\/strong> 4, 025006.<\/li><li>Boruah, B. D.; Misra, A. A flexible ternary oxide based solid-state supercapacitor with excellent rate capability<strong>, J. Mater. Chem.<\/strong> A, 2016, 4, 17552.<\/li><li>Boruah, B. D.; Misra, A. Energy efficient hydrogenated-zinc oxide nanoflakes for high performance self-powered ultraviolet photodetector, <strong>ACS Applied Materials and Interfaces<\/strong>, 2016, 8, 18182.<\/li><li>Boruah, B. D.; Misra, A. conjugated assembly of colloidal zinc oxide quantum dots and multiwalled carbon nanotubes for excellent photosensitive ultraviolet photodetector, <strong>Nanotechnology<\/strong>, 2016, 27, 355204.<\/li><li>Boruah, B. D.; Misra, A. Polyethylenimine mediated graphene based flexible paper for supercapacitor, <strong>Energy Storage Materials<\/strong>, 2016, 5, 103. (Second edition).<\/li><li>Boruah, B. D.; Misra, A. Nickel hydroxide coated carbon nanoparticles mediated hybrid three-dimensional graphene foam assembly for supercapacitor, <strong>RSC Advances<\/strong>, 2016, 6, 36307.<\/li><li>Nandi, S.; M. S., Naidu; Misra, A. Effect of optical and magnetic fields on electrical characteristics of colloidal graphene quantum dots, <strong>RSC Advances<\/strong>, 2016, 6, 40577.<\/li><li>Boruah, B. D.; Mukherjee, A.; Misra, A. \u201cSandwiched assembly of ZnO NWs between graphene layers for self-powered and fast-responsive UV photodetector\u201d <strong>Nanotechnology,<\/strong> 2016, 27, 095205.<\/li><li>Boruah, B. D.; Misra, A. \u201cEffect of magnetic field on photoresponse of cobalt integrated zinc oxide nanorods\u201d <strong>ACS Applied Materials &amp; Interfaces, <\/strong>2016, 8, 4771\u20134780.<\/li><li>Nandi, S.; Ramachandran, J.; Ghosh, R.; Misra, A. \u201cInfluence of flame on graphene based flexible nanocomposite\u201d <strong>Materials Research Express<\/strong>, 2016, 3, 1-8.<\/li><li>S., Jayanthi; Mukheerjee, A.; Chattrejee, K.; Sood, A.; Misra, A. \u201cTailored nitrogen dioxide sensing response of three-dimensional graphene foam\u201d <strong>Sensors &amp; Actuators B, Chemical,<\/strong> 2016, 222, 21.<\/li><li>Mukherjee, A.; Ferry, D. B.; Reddy, S. K.; Pavan, K. R.; Misra, A. \u201cSensing response of semiconducting metal oxides decorated multiwalled carbon nanotubes towards toxic gases\u201d <strong>Sci. Lett. J. <\/strong>2016, 5, 224 (Invited Article).<\/li><li>Ghosh, R.; Reddy, S. K.; Sridhar, S.; Misra, A. \u201cTemperature dependent compressive behavior of graphene mediated three-dimensional cellular assembly\u201d <strong>Carbon<\/strong>, 2016, 96, 439.<\/li><li>Boruah, B. D.; Misra, A. \u201cZnO Quantum dots and graphene based heterostructure for excellent photoelastic and highly sensitive ultraviolet photodetector\u201d <strong>RSC Advances,<\/strong> 2015, 5, 90838.<\/li><li>Gowda, P.; Mohaptra, D. R.; Misra, A. \u201cPhotoresponse of double-stacked graphene to infrared radiation\u201d <strong>Nanoscale<\/strong>, 2015, 7, 15806.<\/li><li>Reddy, S.; Lal, D.; Misra, A.; Kumar, P. \u201cNovel architecture for anomalous strengthening of a particulate filled polymer matrix composite\u201d <strong>RSC Advances<\/strong>, 2015, 5, 62477.<\/li><li>N., Shivananju; Asokan, S.; Misra, A. \u201cEffect of optical wavelength on photo induced strain sensitivity in carbon nanotubes using fiber Bragg grating\u201d <strong>J. Phys. D: Applied Physics<\/strong>, 2015, 48 275502.<\/li><li>Boruah, B.; Mukherjee, A.; Sridhar, S.; Misra, A. \u201cHighly dense ZnO nanowires grown on graphene foam for ultraviolet photodetection\u201d <strong>ACS Applied Materials &amp; Interfaces<\/strong>, 2015, 7, 10606.<\/li><li>Reddy, S.; Misra, A. \u201cTailored mechanical behavior of magnetic particles loaded carbon nanotube foam in presence of magnetic field&#8221; <strong>Journal of Physics D: Applied Physics<\/strong>, 2015, 48 265301.<\/li><li>Boruah, B.; Ferry, D.; Mukherjee, A.; Misra, A. \u201cFew-layer graphene\/ZnO nanowires based high performance UV photodetector&#8221; <strong>Nanotechnology<\/strong>, 2015, 26 235703.<\/li><li>Ferry, D.; R., P.; Reddy, S.; Mukherjee, A.; Misra, A. \u201cGraphene based multifunctional flame sensor&#8221; <strong>Nanotechnology<\/strong>, 2015, 26 195502.<\/li><li>Mukherjee S.; Sakorikar T.; Mukherjee A.; Misra A. \u201cWater-responsive carbon nanotubes for selective detection of toxic gases\u201d <strong>Appl. Phys. Lett.<\/strong>, 2015, 106, 113108.<\/li><li>Gowda P.; Mukherjee S.; Reddy S. K.; Ghosh R.; Misra A. \u201cGiant actuation in bulk carbon nanotubes under coupled electric and magnetic fields\u201d <strong>RSC Advances<\/strong>, 2015, 5, 26157.<\/li><li>Reddy, S. K.; Ferry D. B.; Misra A. \u201cHighly compressible behavior of polymer mediated three-dimensional network of graphene foam\u201d <strong>RSC Advances<\/strong>, 2014, 4, 50074.<\/li><li>Misra A.; Kumar P. \u201cTailoring viscoelastic response of carbon nanotubes cellular structure using electric field\u201d <strong>Nanoscale<\/strong>, 2014 6, 13668.<\/li><li>Gowda, P.; Mohapatra, D.; Misra A. \u201cEnhanced photoresponse in monolayer hydrogenated graphene photodetector\u201d <strong>ACS Applied Materials &amp; Interfaces<\/strong>, 2014, 6, 16763.<\/li><li>Reddy, S.; Mukherjee, A.; Misra A. \u201cMagnetic field induced tailoring of mechanical behavior of fluid filled micro porous carbon nanotube foam<strong>\u201d Appl. Phys. Lett.<\/strong>, 2014, 104, 261906.<\/li><li>Gowda, P.; Mahopatra, D.; Misra, A. \u201cNonlinear optical absorption in graphene infrared photodetector\u201d <strong>Nanotechnology<\/strong>, 2014, 25, 335710.<\/li><li>Misra A. \u201cCarbon nanotubes and graphene based chemical sensors\u201d, <strong>Current Science<\/strong>, 2014, 107, 419. (Invited review article)<\/li><li>Misra, A.; Kumar, P.; Raney, J. R.; Singhal, A.; Lattanzi, L.; Daraio, C. &#8220;Effect of fluid medium on mechanical behavior of carbon nanotube foam&#8221; <strong>Appl. Phys. Lett.<\/strong>, 2014, 104, 221910.<\/li><li>P. Gowda; T. Sakorikar; S. Reddy; D. Ferry; A. Misra, Defect induced enhancement\/quenching control of photocurrent in few layer graphene photodetector\u201d <strong>ACS Applied Materials &amp; Interfaces<\/strong>, 2014, 6, 7485.<\/li><li>S. Mukherjee; A. Misra, \u201cBroadband wavelength-selective reflectance and selective polarization by tip-bent vertically aligned multi-walled carbon nanotube forest\u201d <strong>Journal of Physics D: Applied Physics<\/strong>, 2014, 47, 235501.<\/li><li>P. Gowda; U. Ramamurty; A. Misra, \u201cTuning of the electro-mechanical behavior of the cellular carbon nanotube structures with nanoparticle dispersions\u201d <strong>Appl. Phys. Lett.<\/strong> 2014, 104, 101911.<\/li><li>B. N. Shivananju; A. Suri; S. Asokan; A. Misra, \u201cMonitoring of ultraviolet pulse rate dependent photomechanical actuation in carbon nanotubes using fiber Bragg gratings\u201d <strong>Appl. Phys. Lett.<\/strong> 2014, 104, 013104.<\/li><li>P. Gowda; A. Suri; S. K. Reddy; A. Misra, &#8220;Chemical vapor detection using nonlinear electrical properties of carbon nanotube bundles&#8221; <strong>Nanotechnolgy<\/strong>, 2014, 25, 025708.<\/li><li>S. Mohanty; A. Misra, &#8220;Carbon nanotube based multifunctional flame sensor&#8221; <strong>Sensors and Actuators B (Chemical)<\/strong>, 2014, 192, 594.\u00a0<\/li><li>P. Gowda; P. Kumar; R. Tripathi; A. Misra, &#8220;Electric field induced ultra-high actuation in a bulk carbon nanotube structure&#8221; <strong>Carbon<\/strong>, 2014, 67, 546.<\/li><li>S. Mukherjee; A. Suri; K. Vani; A. Misra, &#8220;Aluminum coated carbon nanotube film for wavelength-selective surface&#8221; <strong>Appl. Phys. Lett.<\/strong>, 2013, 103, 131909.<\/li><li>A. Misra; P. Kumar, &#8220;Periodic Architecture for High Performance Shock Absorbing Composites&#8221; <strong>Scientific Reports<\/strong>, Article number: 2056, 2013.<\/li><li>B. N. Shivananju; A. Suri; S. Asokan; A. Misra \u201cCarbon nanotube coated fiber Bragg grating for photomechanical optic modulator\u201d <strong>Rev. Sci. Instrum.<\/strong> 2013, 84, 095101.<\/li><li>S. Reddy; A. Misra, \u201cInfluence of Magnetic field on the compressive behavior of carbon nanotubes\u201d <strong>Appl. Phys. Lett<\/strong>. 2013, 102, 241919.<\/li><li>Suri A.; A. Misra, \u201cCoupling of photomechanical and electromechanical actuations in carbon nanotubes\u201d <strong>Nanotechnology<\/strong> 2013, 24, 105501-6.<\/li><li>M. S. R. N. Kiran; U. Ramamurty; A. Misra, \u201cMechanical and electrical contact resistance characteristics of a cellular assembly of carbon nanotubes\u201d, <strong>Nanotechnology<\/strong> 2013, 24, 015707-12.<\/li><li>V. V. Shastry; U. Ramamurty; A. Misra, &#8220;Thermo-mechanical stability of a cellular assembly of carbon nanotubes in air&#8221;, <strong>Carbon<\/strong>, 2012, 50, 4373-4378.<\/li><li>L. Lattanzi; J. R. Raney; L. De Nardo; A. Misra; C. Daraio, \u201cNonlinear viscoelasticity of freestanding and polymer-anchored vertically aligned carbon nanotube foams\u201d, <strong>J. Appl. Phys.<\/strong> 2012, 111, 074314.<\/li><li>A. Misra, \u201cTemperature gradient induced phase transitions and morphological changes in diamond thin film\u201d, <strong>J. Crystal Growth<\/strong> 2012, 343, 127.<\/li><li>A. Misra \u201cBending of metal-filled carbon nanotube under electron beam irradiation\u201d, <strong>AIP Advances<\/strong> 2012, 2, 012142.<\/li><li>A. Misra; J. R. Raney; A. C. Craig; C. Daraio, \u201cEffect of density variation and non-covalent functionalization on the compressive behavior of carbon nanotube arrays\u201d, <strong>Nanotechnology<\/strong>, 2011, 22, 425705.<\/li><li>A. Misra; J. R. Raney; A. C. Craig; L. De Nardo; C. Daraio, &#8220;Synthesis and characterization of carbon nanotube-polymer multilayer structures&#8221;, <strong>ACS Nano<\/strong>, 2011, 5, 7713.<\/li><li>J. R. Raney; A. Misra; C. Daraio, &#8220;Tailoring the microstructure and mechanical properties of arrays of aligned multiwall carbon nanotubes by utilizing different hydrogen concentrations during synthesis&#8221;, <strong>Carbon<\/strong>, 2011, 49, 3631-3638.<\/li><li>A. Misra; J. Giri; C. Daraio, \u201cHydrogen evolution on hydrophobic aligned carbon nanotubes arrays\u201d, <strong>ACS Nano<\/strong>, 2009, 3, 3903.<\/li><li>A. Misra; J. R. Greer; C. Daraio,\u00a0 \u201cStrain rate effects in the mechanical response of polymer anchored carbon nanotube foams\u201d <strong>Advanced Materials<\/strong>, 2008, 20, 1.<\/li><li>A. Misra, C. Daraio \u201cCarbon nanotube-sharp magnetic tips and carbon nanotube-soldering irons\u201d, <strong>Advanced Materials<\/strong>, 2008, 20, 5.<\/li><li>D. R. Mohapatra; P. Rai; A. Misra; P. K. Tyagi; B. S. Yadav; D. S. Misra, \u201cParameter window of diamond growth on GaN films by microwave plasma chemical vapor deposition\u201d, <strong>Diamond and Related Materials<\/strong>, 2008, 17, 1775.\u00a0<\/li><li>L. Aditya; A. Srivastava; S. K. Sahoo; P. Das; C. Mukherjee; A. Misra; V. R. Reddy; R. S. Shinde; A. Gupta; S. Prasad; I. Samajdar; R. V. Nandedkar; N. Venkataramani, \u201cGrowth of Textured Nanocrystalline Cobalt Ferrite Thin Films by Pulsed Laser Deposition\u201d, <strong>J. Nano Science and\u00a0 Nanotechnology<\/strong>, 2008, 8, 1.<\/li><li>A. Misra; P. K. Tyagi; P. Rai; J. Ghatak; P. V. Satyam; D. S. Misra, \u201cAxial Buckling of nickel encapsulated multiwalled carbon nanotubes with 100 MeV Au7+ ion irradiation\u201d, <strong>Phys. Rev. B.<\/strong>, 2007, 76, 014108.<\/li><li>A. Misra; P. K. Tyagi; P. Rai; D. S. Misra, \u201cFTIR spectroscopy of multiwalled carbon nanotubes: A simple approach to study the nitrogen doping\u201d, <strong>J. Nano Science and Nanotechnology<\/strong>, 2007, 7, 1820.<\/li><li>A. Misra; P. K. Tyagi; B. S. Yadav; V. Pancholi; P. Rai; S.S. Major; I. D. Samajdar; D. S. Misra, \u201cHexagonal diamond synthesis on h-GaN strained films\u201d, <strong>Appl. Phys. Lett.<\/strong>, 2006, 89, 071911.<\/li><li>A. Misra; P. K. Tyagi; P. Rai; J. Ghatak; P. V. Satyam; D. K. Avasthi; D. S. Misra, \u201cRe-orientation of the crystalline planes in confined single crystal nickel nanorods Induced by heavy ion-irradiation\u201d, <strong>Appl. Phys. Lett.<\/strong>, 2006, 89, 091907.<\/li><li>P. K. Tyagi; A. Misra; D. S. Misra; J. Ghatak; P. V. Satyam; F. Le Normand, \u201cHigh-resolution transmission electron microscopy mapping of nickel and cobalt single crystalline rods inside multiwalled carbon nanotubes and chirality calculations\u201d <strong>Appl. Phys. Lett.<\/strong>, 2005, 86, 253110.<\/li><li>P. K. Tyagi; A. Misra; M. K. Singh; E. Titus; D. S. Misra; J. Ghatak; P. V. Satyam; M. Roy, \u201cSingle crystalline nickel nanorods inside carbon nanotubes: their growth behavior, structure and magnetic properties\u201d, <strong>J. Nano Science and\u00a0 Nanotechnology<\/strong>, 2005, 5, 596.<\/li><li>E. Titus; D. S. Misra; A. K. Sikder; P. K. Tyagi; M. K. Singh; A. Misra; N. Ali; G. Cabral; J. Gracio, \u201cQuantitative analysis of hydrogen in chemical vapor deposited diamond films\u201d, <strong>Diamond and Related materials<\/strong>, 2005, 14, 476.<\/li><li>P. K. Tyagi; A. Misra; K. N. N. Unni; P. Rai; M. K. Singh; U. Palnitkar; D. S. Misra; F. Le Normand; M. Roy; S. K. Kulshreshtha, \u201cStep growth in single-crystal diamond grown by microwave plasma chemical vapor deposition\u201d, <strong>Diamond and Related Materials<\/strong>, 2005, 15, 304.<\/li><li>A. Misra; P. K. Tyagi; D. S. Misra, \u201cFTIR studies of nitrogen-doped carbon nanotubes\u201d, <strong>Diamond and Related Materials<\/strong>, 2005, 15, 385.<\/li><li>A. Misra; P. K. Tyagi; M. K. Singh; D. S. Misra; J. Ghatak; P. V. Satyam; D. K. Avasthi, \u201cStructural damage on multiwalled carbon nanotubes and encapsulated single crystal nickel nanorods irradiated with Au<sup>+7<\/sup> ions of 100 MeV\u201d,<strong> Diamond and Related Materials<\/strong>, 2005, 15, 300.<\/li><li>P. K. Tyagi; M. K. Singh; A. Misra; N. Kumar; D. S. Misra; E. Titus; M. Roy; A. K. Dua, \u201cPreparation of Ni-filled carbon nanotubes for key potential applications in nanotechnology\u201d, <strong>Thin Solid Films<\/strong>, 2004, 469, 127.<\/li><li>E. Titus; D. S. Misra; M. K. Singh; P. K. Tyagi; A. Misra; F. Le Normand; J. Gracio; N. Ali, \u201cGrowth of (100) oriented diamond grains by the application of lateral temperature gradients across silicon substrates\u201d<strong>,<\/strong> <strong>Journal of Materials Research<\/strong>, 2004, 19, 3206.<\/li><\/ol>\n","protected":false},"excerpt":{"rendered":"<p>Sutradhar, A. ; V.P., Krishnakumar; Mahapatra, A. D.; Sharma, P.; Misra, A., &#8220;Effect of oxygen on ammonia sensing of large area graphene&#8221;, New Journal of Chemistry (Accepted 2024). Chauhan, P. ; Parekh, M.; Sahoo, S.; Kumar, S.; Mondal, A.; Mahapatra, A. D.; Sharma, P.; Panwar, V.; Rao, A.M.; Misra, A., &#8220;Influence of Electrolyte on photo-charging [&hellip;]<\/p>\n","protected":false},"author":1,"featured_media":0,"parent":0,"menu_order":16,"comment_status":"closed","ping_status":"closed","template":"template-publications.php","meta":{"_acf_changed":false,"footnotes":""},"class_list":["post-3637","page","type-page","status-publish","hentry"],"acf":[],"_links":{"self":[{"href":"https:\/\/iap.iisc.ac.in\/~abha\/wp-json\/wp\/v2\/pages\/3637","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/iap.iisc.ac.in\/~abha\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/iap.iisc.ac.in\/~abha\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/iap.iisc.ac.in\/~abha\/wp-json\/wp\/v2\/users\/1"}],"replies":[{"embeddable":true,"href":"https:\/\/iap.iisc.ac.in\/~abha\/wp-json\/wp\/v2\/comments?post=3637"}],"version-history":[{"count":52,"href":"https:\/\/iap.iisc.ac.in\/~abha\/wp-json\/wp\/v2\/pages\/3637\/revisions"}],"predecessor-version":[{"id":4424,"href":"https:\/\/iap.iisc.ac.in\/~abha\/wp-json\/wp\/v2\/pages\/3637\/revisions\/4424"}],"wp:attachment":[{"href":"https:\/\/iap.iisc.ac.in\/~abha\/wp-json\/wp\/v2\/media?parent=3637"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}