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Dive into the research topics where Haripada Sarker is active.

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Featured researches published by Haripada Sarker.


Applied Physics Letters | 1997

An all-polymer charge storage device

Yossef Gofer; Haripada Sarker; Jeffrey G. Killian; T. O. Poehler; Peter C. Searson

Conducting polymers that can be switched between a neutral state and a doped state are of interest for charge storage applications. We report on the fabrication of an all-polymer charge storage device incorporating derivatized polythiophene films electropolymerized onto graphite-coated polymeric supports and a polymer gel electrolyte film. The devices exhibited discharge voltages of about 2.4 V and capacities of 9.5–11.5 mAh g−1. The elimination of any metallic components or liquids and the lightweight and flexible construction provides a unique approach for the fabrication of organic power sources.


Journal of Electroanalytical Chemistry | 1998

The electrochemistry of fluorine-substituted polyphenylthiophenes for charge storage applications

Yossef Gofer; Jeffrey G. Killian; Haripada Sarker; T. O. Poehler; Peter C. Searson

A series of thiophene-based conducting polymers has been synthesized. The properties of these polymers were characterized using electrochemical techniques. The polymerization potentials of the monomers were found to be related to the corresponding Hammett σ values. The maximum n-doping levels of the polymers were also found to be correlated with the Hammett σ values. No correlation was found with the maximum p-doping levels of the polymers. The doping densities were found to decrease on repeated cycling and were correlated with irreversible morphological changes in the films. Test cells were fabricated using conducting polymer films for both anode and cathode. These cells exhibited discharge voltages of about 2.5 V and capacities of 9.5 to 11.5 mA h g−1.


Synthetic Metals | 1997

Synthesis and characterization of fluoro-substituted polyphenylthiophenes for charge storage applications

Haripada Sarker; Yosef Gofer; Jeffrey G. Killian; T. O. Poehler; Peter C. Searson

Abstract A series of fluoro-substituted phenylthiophene monomers has been synthesized with high isolated yields (71–90%). Generalized coupling reactions have been developed for the series with a Pd(dppf)Cl 2 catalyst and via Zn-complex mediated reactions. The controlled electropolymerization of monomers yielded polymeric materials which, when cycled, exhibited reversible redox reactions in both the n- and p-doped states with high cycling efficiencies. The doping levels and polymerization potentials were strongly correlated with the electronic character of the monomers based on the Hammett model. This methodology suggests a theoretical scheme for the development of other high charge-capacity polymeric materials.


Synthetic Metals | 1998

Synthesis and characterization of a series of fluorine-substituted phenylene-thienyl polymers for battery applications

Haripada Sarker; Yosef Gofer; Jeffrey G. Killian; T. O. Poehler; Peter C. Searson

Abstract A series of fluorine-substituted phenylene-thienyl-based monomers (1,4-bis(2-thienyl)-benzene (THB), 1,4-bis(2-thienyl)-2-fluorophenylene (TFP),1,4-bis(2-thienyl)-2,5-difluorophenylene (TF2P), and 1,4-bis(2-thienyl)-2,3,5,6-tetrafluorophenylene (TF4P)) has been synthesized. Thin films of the polymers were deposited by controlled electropolymerization of the monomers, and the doping densities and cycling efficiencies were determined from electrochemical measurements. The polymers poly-1,4-bis(2-thienyl) -benzene (pTHB), poly-1,4-bis(2-thienyl)-2-fluorophenylene (pTFP), and poly-1,4-bis(2-thienyl)-2,5-difluorophenylene (pTF2P) exhibited reversible p-doping and n-doping, with doping densities in the range 0.12 to 0.45 electrons per monomer unit. The cycling efficiencies were higher for p-doping than for n-doping, with values in the range of 99.58 to 99.70% charge retained per cycle.


Synthetic Metals | 2000

Design and synthesis of a series of substituted polyphenylene-thiophenes

Haripada Sarker; Ivan W. Ong; Shukla Sarker; Peter C. Searson; T. O. Poehler

A series of substituted phenylene-thienyl based conducting polymers have been synthesized where fluorine and alkoxy functionalities have been systematically incorporated into the phenylene moiety. The structures of the monomers and the polymers were confirmed by spectroscopy. Thin films were obtained by chemical and electrochemical deposition. The polymers demonstrated a wide variation of solubility, optical absorption, electrical conductivity, and electrochemical properties.


Synthetic Metals | 2000

Photoluminescence of substituted phenylene–thienyl based polymers

Haripada Sarker; Ivan W. Ong; Peter C. Searson; T. O. Poehler

Abstract A series of four phenylene–thienyl based conducting polymers have been synthesized with push–pull funtionalities incorporated in the phenylene and thienyl moieties to control the solubility and emission properties. Light-emitting devices (LEDs) were constructed on indium tin oxide (ITO) and aluminum substrates. The emission wavelength could be tuned by constructing devices with mixtures of the polymers.


Archive | 1997

Electrochemical storage cell containing at least one electrode formulated from a fluorophenyl thiophene polymer

Peter C. Searson; Jeffrey G. Killian; Haripada Sarker; Jennifer Giaccai; Yossef Gofer; T. O. Poehler


Archive | 1997

Electrochemical storage cell containing at least one electrode formulated from a phenylene-thienyl based polymer

T. O. Poehler; Peter C. Searson; Jeffrey G. Killian; Haripada Sarker; Jennifer Giaccai; Yosef Gofer


Chemistry of Materials | 1999

Electrochemical Synthesis and Characterization of a Series of Fluoro-Substituted Phenylene-2-thienyl Polymers

Jeffrey G. Killian; Yosef Gofer; Haripada Sarker; T. O. Poehler; Peter C. Searson


Journal of Electroanalytical Chemistry | 1999

The electrochemical properties of a series of phenylene-thienyl polymers in tetramethylene sulfone based electrolytes

W.S Schlindwein; Yosef Gofer; Haripada Sarker; T. O. Poehler; Peter C. Searson

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T. O. Poehler

Johns Hopkins University

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Yossef Gofer

Johns Hopkins University

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Ivan W. Ong

Johns Hopkins University

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Shukla Sarker

Johns Hopkins University

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