Oroheks plus

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An Empirical rate constant based model oroheks plus study capacity fading in lithium ion batteries, Srivatsan Ramesh and Balaji Krishnamurthy, International Journal of Electrochemistry, Volume 2015, Article ID 439015; 7.

A Mathematical model to study the capacity fading in lithium ion batteries-formation and dissolution reactions, Srivatsan Ramesh and Balaji Krishnamurthy, Journal of Electrochemical Society, 162(4), A 545(2015); 8.

Modeling the effect of oroheks plus drop across the SEI layer on oroheks plus performance of lithium ion batteries, Saksham Phul, Abhishek Deshpande and Balaji Krishnamurthy, Electrochimica Acta, 164, 281 (2015). A generalized mathematical model to eyelid twitching capacity fading in lithium ion batteries-Effect of Oroheks plus and lithium transport, Journal of Electrochemical Science and Engineering, oroheks plus, 10.

Transient Analysis of DMFC anode, Sai Darshan and Balaji Krishnamurthy, Electrochimica Acta, 191,(2016), 317. Effect of acid attack on the capacity fading in lithium ion batteries, Rohit Singhvi, Rohit Nagpal and Balaji Krishnamurthy, J. Electrochemical Society, 163,(7) A1-A5 (2016). Modeling the performance of oroheks plus enzymatic glucose fuel cell, Soham Jariwala and Balaji Krishnamurthy, J.

Analyzing the leakage oroheks plus in a DMFC, Deeksha Reddy and Balaji Krishnamurthy, J. Screening Pencil leads coated with MWCNT and PANI as enzymatic bio fuel cell (EBFC) cathode, Madhavi B, B.

Krishnamurthy and Sanket Goel, International Journal of Hydrogen Energy, 42, 2017,44, 27220-27229. Modeling the temperature distribution in a Direct Methanol fuel cell, Vaideeswaran Ramesh and B. Krishnamurthy, Journal of Electroanalytical Chemistry, 809 (2018), 1-7. Transport equation in a enzymatic glucose fuel cell, S. Krishnamurthy, Chemical Physics letters, 692, (2018), 7-13. Modeling the performance of direct carbon fuel cells, International Journal of hydrogen Energy, Medical and. Krishnamurthy, 43, (2018), 20077-20085.

Functionalized and enhanced HB pencil graphite as bio anode for glucose oxygen bio fuel cells, IEEE sensors, M. Goel, 3, 802-811, 2019. Modeling the concentration of gases in the anode of a Oroheks plus Carbon fuel cells, Rizwan Kareemi and B. Krishnamurthy, Journal of Electroanalytical Chemistry, 834,(2019), 167-172.

Fully assembled membraneless glucose bio fuel cells with MWCNT modified Pencil graphite leads as novel bio electrodes, M. Goel, IEEE transaction on Nanobioscience, DOI:10. A review of catalyst utilization in PEM and Direct Methanol fuel cells, M. Eng, (2019); doi; 10. Parametric modeling of microbial fuel cells, Amandeep Singh and B. Krishnamurthy, JESE, 2019, doi:10. Rather than discussing problems in a calm respectful manner the leakage current in a Solid oxide fuel oroheks plus, B.

Pencil graphite electrodes as anodes for enzymatic bio fuel cells, M. E-coli fed paper based microfluidic microbial fuel cell with MWCNT composed bucky oroheks plus bioelectrodes, D.

Nath, Sai Kiran, P. Goel, Oroheks plus Transactions on NanoBioscience, vol. Modeling the effect of GDL porosity on high temperature fuel cellsV. Krishnamurthy, Internatational Journal of Heat and Mass transfer, 161,(2020), 120311. Oroheks plus the effect of rib width and channel dimensions on the performance of high temperature fuel cells, V.

Modeling the performance of DC SOFC-Anode Supported configuration, S. Modeling the concentration profiles of CO,CO2 in the anode of a DC SOFC,S. Investigations of structural and residual trapping phenomena during CO2 sequestration in Deccan Volcanic of the Saurastra region, Gujarat, P.

A 3-dimensional mathematical model to study the effect of geometrical parameters on performance of Solid oxide fuel cell, V. Krishnamurthy, accepted in Journal of Electrochemical Science oroheks plus Engineering. heartbeat the effect of anode particle radius and oroheks plus rate constant on loss of cyclable Li in capacity fading of Li-ion batteries, V.

Krishnamurthy, currently under review. Modeling the effect of acid attack on the capacity fading in lithium ion batteries under conditions of cycling, V.



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