Search Results - "Epur, Rigved"

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  1. 1

    Tin and graphite based nanocomposites: Potential anode for sodium ion batteries by Datta, Moni Kanchan, Epur, Rigved, Saha, Partha, Kadakia, Karan, Park, Sung Kyoo, Kumta, Prashant N.

    Published in Journal of power sources (01-03-2013)
    “…Pure tin (Sn) and a homogeneous nanocomposite of tin and graphite (C), denoted as Sn/C, have been studied as a suitable anode for sodium ion batteries. The…”
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    Journal Article
  2. 2

    Vertically aligned silicon/carbon nanotube (VASCNT) arrays: Hierarchical anodes for lithium-ion battery by Wang, Wei, Epur, Rigved, Kumta, Prashant N.

    Published in Electrochemistry communications (01-05-2011)
    “…Vertically aligned silicon/carbon nanotube arrays are directly synthesized on Inconel metal current collector as lithium-ion battery anode. The hierarchical…”
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    Journal Article
  3. 3

    Gold-coated carbon nanotube electrode arrays: Immunosensors for impedimetric detection of bone biomarkers by Ramanathan, Madhumati, Patil, Mitali, Epur, Rigved, Yun, Yeoheung, Shanov, Vasselin, Schulz, Mark, Heineman, William R., Datta, Moni K., Kumta, Prashant N.

    Published in Biosensors & bioelectronics (15-03-2016)
    “…C-terminal telopeptide (cTx), a fragment generated during collagen degradation, is a key biomarker of bone resorption during the bone remodeling process. The…”
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    Journal Article
  4. 4

    Electrodeposition of amorphous silicon anode for lithium ion batteries by Epur, Rigved, Ramanathan, Madhumati, Beck, Faith R., Manivannan, Ayyakkannu, Kumta, Prashant N.

    “…► Amorphous silicon is obtained by electrodeposition. ► Amorphous films exhibit capacity of 1300mAhg−1. ► The films exhibit capacity retention of…”
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    Journal Article
  5. 5

    Microwave Derived Facile Approach to Sn/Graphene Composite Anodes for, Lithium-Ion Batteries by Beck, Faith R., Epur, Rigved, Hong, Daeho, Manivannan, Ayyakkannu, Kumta, Prashant N.

    Published in Electrochimica acta (01-05-2014)
    “…Tin particles embedded in graphene (G) sheet have been synthesized by microwave reduction of tin halide (SnCl2) and graphite oxide (GO) followed by annealing…”
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    Journal Article
  6. 6

    Nickel Catalyst-Assisted Vertical Growth of Dense Carbon Nanotube Forests on Bulk Copper by Atthipalli, Gowtam, Epur, Rigved, Kumta, Prashant N, Yang, Mengjin, Lee, Jung-Kun, Gray, Jennifer L

    Published in Journal of physical chemistry. C (10-03-2011)
    “…Vertical growth of carbon nanotubes using thermal chemical vapor deposition (CVD) is demonstrated on bulk copper substrates by first sputtering a thin Ni film…”
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    Journal Article
  7. 7
  8. 8

    Pulsed Current Electrodeposition of Silicon Thin Films Anodes for Lithium Ion Battery Applications by Gattu, Bharat, Epur, Rigved, Shanti, Pavithra, Jampani, Prashanth, Kuruba, Ramalinga, Datta, Moni, Manivannan, Ayyakkannu, Kumta, Prashant

    Published in Inorganics (01-06-2017)
    “…Electrodeposition of amorphous silicon thin films on Cu substrate from organic ionic electrolyte using pulsed electrodeposition conditions has been studied…”
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    Journal Article
  9. 9

    Amorphous silicon–carbon based nano-scale thin film anode materials for lithium ion batteries by Datta, Moni Kanchan, Maranchi, Jeffrey, Chung, Sung Jae, Epur, Rigved, Kadakia, Karan, Jampani, Prashanth, Kumta, Prashant N.

    Published in Electrochimica acta (01-05-2011)
    “…► Thin film amorphous C/Si. Good cycling response validates carbon matrix for Silicon anodes. ► Thin film amorphous C/Si/C. Good cycling response validates…”
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    Journal Article
  10. 10

    Silicon–Carbon Core–Shell Hollow Nanotubular Configuration High-Performance Lithium-Ion Anodes by Gattu, Bharat, Epur, Rigved, Jampani, Prashanth H, Kuruba, Ramalinga, Datta, Moni Kanchan, Kumta, Prashant N

    Published in Journal of physical chemistry. C (11-05-2017)
    “…Silicon anode systems, due to their intrinsic high theoretical specific capacity, show tremendous potential in lithium ion batteries (LIBs). Unfortunately,…”
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    Journal Article
  11. 11

    Nanoscale engineered electrochemically active silicon–CNT heterostructures-novel anodes for Li-ion application by Epur, Rigved, Datta, Moni K., Kumta, Prashant N.

    Published in Electrochimica acta (15-12-2012)
    “…[Display omitted] ► Generation of vertically aligned Si/CNT heterostructures with novel Si morphologies. ► Nanoscale Si droplets show better cyclability than…”
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    Journal Article
  12. 12
  13. 13

    Nanoscale engineered electrochemically active siliconaCNT heterostructures-novel anodes for Li-ion application by Epur, Rigved, Datta, Moni K, Kumta, Prashant N

    Published in Electrochimica acta (15-12-2012)
    “…Heterostructures of vertically aligned carbon nanotubes (CNTs) and nanostructured silicon were synthesized on quartz substrates using a simple 2 step liquid…”
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    Journal Article
  14. 14

    A simple facile approach to large scale synthesis of high specific surface area silicon nanoparticles by Epur, Rigved, Minardi, Luke, Datta, Moni K., Chung, Sung Jae, Kumta, Prashant N.

    Published in Journal of solid state chemistry (01-12-2013)
    “…An inexpensive, facile, and high throughput synthesis of silicon nanoparticles was achieved by the mechano-chemical reduction reaction of magnesium silicide…”
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    Journal Article
  15. 15

    Tartrate Resistant Acid Phosphatase Assisted Degradation of Single-Wall Carbon Nanotubes (SWCNTs) by Ramanathan, Madhumati, Patil, Mitali S, Epur, Rigved, Kumta, Prashant N

    Published in ACS biomaterials science & engineering (09-05-2016)
    “…In this study, we explored the capability of tartrate resistant acid phosphatase (TRAcP), a bone resorption marker, to degrade carboxylated single-walled…”
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    Journal Article
  16. 16

    Fundamental study of engineered nanocrystalline and amorphous silicon based high capacity, reversible and stable anodes for lithium-ion batteries by Epur, Rigved

    Published 01-01-2014
    “…Commercial lithium-ion battery (LIB) systems at present employ graphite as the anode having a theoretical capacity of 372 mAh/g. However, for hybrid electric…”
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    Dissertation
  17. 17

    Copper nanoparticles and carbon nanotubes-based electrochemical sensing system for fast identification of tricresyl-phosphate in aqueous samples and air by Pedrosa, Valber A., Epur, Rigved, Benton, Jessica, Overfelt, Ruel A., Simonian, Aleksandr L.

    Published in Sensors and actuators. B, Chemical (18-06-2009)
    “…An electrochemical method has been developed for the determination of tricresyl phosphate (TCP) in aqueous media and air. Although TCP is not an electroactive…”
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    Journal Article