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Dive into the research topics where Rahul Suryakant Kadam is active.

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Featured researches published by Rahul Suryakant Kadam.


International journal of electrochemistry | 2017

Thermodynamics of Lithium Intercalation in Randomly Oriented High Graphene Carbon

Rahul Suryakant Kadam; Kishor Purushottam Gadkaree

This paper covers details of systematic investigation of the thermodynamics (entropy and enthalpy) of intercalation associated with lithium ion in a structurally novel carbon, called Randomly Oriented High Graphene (ROHG) carbon and graphite. Equilibrated OCV (Open Circuit Voltage) versus temperature relationship is investigated to determine the thermodynamic changes with the lithium intercalation. ROHG carbon shows entropy of 9.36 J·mol−1·K−1 and shows no dependency on the inserted lithium concentration. Graphite shows initial entropy of 84.27 J·mol−1·K−1 and shows a strong dependence on lithium concentration. ROHG carbon (from −90.85 kJ mol−1 to −2.88 kJ mol−1) shows gradual change in the slope of enthalpy versus lithium ion concentration plot compared to graphite (−48.98 kJ mol−1 to 1.84 kJ mol−1). The study clearly shows that a lower amount of energy is required for the lithium ion intercalation into the ROHG structure compared to graphite structure. Randomly oriented graphene platelet cluster structure of ROHG carbon makes it easier for the intercalation or deintercalation of lithium ion. The ease of intercalation and the small cluster structure of ROHG as opposed to the long linear platelet structure of graphite lead to higher rates of the charge-discharge process for ROHG, when used as an electrode material in electrochemical applications.


International journal of electrochemistry | 2018

Performance of Novel Randomly Oriented High Graphene Carbon in Lithium Ion Capacitors

Rahul Suryakant Kadam; Kishor Purushottam Gadkaree

The structure of carbon material comprising the anode is the key to the performance of a lithium ion capacitor. In addition to determining the capacity, the structure of the carbon material also determines the diffusion rate of the lithium ion into the anode which in turn controls power density which is vital in high rate applications. This paper covers details of systematic investigation of the performance of a structurally novel carbon, called Randomly Oriented High Graphene (ROHG) carbon, and graphite in a high rate application device, that is, lithium ion capacitor. Electrochemical impedance spectroscopy shows that ROHG is less resistive and has faster lithium ion diffusion rates (393.7 × 10−3 S·s(1/2)) compared to graphite (338.1 × 10−3 S·s(1/2)). The impedance spectroscopy data is supported by the cell data showing that the ROHG carbon based device has energy density of 22.8 Wh/l with a power density of 4349.3 W/l, whereas baseline graphite based device has energy density of 5 Wh/l and power density of 4243.3 W/l. This data clearly shows advantage of the randomly oriented graphene platelet structure of ROHG in lithium ion capacitor performance.


Archive | 2014

Encapsulated lithium particles and methods of making and use thereof

Kishor Purushottam Gadkaree; Rahul Suryakant Kadam; Andrew Fleitz Husted


Archive | 2014

LOW RESISTANCE ULTRACAPACITOR ELECTRODE AND MANUFACTURING METHOD THEREOF

Kishor Purushottam Gadkaree; Rahul Suryakant Kadam; Atul Kumar


Archive | 2017

Poly-vinylidene difluoride anode binder in a lithium ion capacitor

Kishor Purushottam Gadkaree; Rahul Suryakant Kadam


Archive | 2016

Anode for lithium ion capacitor

Kishor Purushottam Gadkaree; Rahul Suryakant Kadam; Andrew Fleitz Husted


Archive | 2015

ELECTROLYTES FOR HIGH TEMPERATURE EDLC

Shrisudersan Jayaraman; Rahul Suryakant Kadam; Steven Isaac Massey; Shivani Roa Polasani


Archive | 2015

COKE SOURCED ANODE FOR LITHIUM ION CAPACITOR

Kishor Purushottam Gadkaree; Rahul Suryakant Kadam


Archive | 2015

Cathode for a lithium ion capacitor

Kishor Purushottam Gadkaree; Rahul Suryakant Kadam; Jia Liu


Archive | 2017

METHOD OF PRE-DOPING A LITHIUM ION CAPACITOR

Kishor Purushottam Gadkaree; Rahul Suryakant Kadam

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