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C J Seliskar

Showing results (1-10 of 8) with videos related to

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Science (New York, N.Y.)|February 26, 1971
Solvent dependence of the luminescence of N-arylaminonaphthalenesulfonatesC J Seliskar, L Brand
Analytical Chemistry|October 10, 1997
Electrochemical behavior of [ReI(DMPE)3]+, where DMPE = 1,2-bis(dimethylphosphino)ethane, at perfluorosulfonated ionomer-modified electrodesY Deng, C J Seliskar, W R Heineman
Analytical Chemistry|June 7, 2011
Spectroelectrochemical sensing based on multimode selectivity simultaneously achievable in a single device. 2. Demonstration of selectivity in the presence of direct interferencesY Shi, C J Seliskar, W R Heineman
Talanta|October 31, 2008
Dual-analyte spectroscopic sensing in sol-gel derived polyelectrolyte-silica composite thin filmsY Shi, C J Seliskar, W R Heineman
Applied Optics|October 2, 2010
Fiber-optic-graded-index-lens absorbance sensor with wavelength-scanning capabilityD A Landis, C J Seliskar, W R Heineman
Analytical Chemistry|January 11, 2000
Spectroelectrochemical sensing based on multimode selectivity simultaneously achievable in a single device. 9. Incorporation of planar waveguide technologyS E Ross, C J Seliskar, W R Heineman
Analytical Chemistry|October 31, 1998
Spectroscopic and electrochemical evaluation of a perfluorosulfonated ionomer and its gel as preconcentrating media for [ReI(DMPE)3]+, where DMPE = 1,2-bis(dimethylphosphino)ethaneB H Swaile, E A Blubaugh, C J Seliskar, et al.
Analytical Chemistry|January 11, 2000
Spectroelectrochemical sensing based on multimode selectivity simultaneously achievable in a single device. 5. Simulation of sensor response for different excitation potential waveformsA F Slaterbeck, M L Stegemiller, C J Seliskar, et al.
Pageof 1

Showing results (1-10 of 8) with videos related to

Sort By:
Pageof 1
Science (New York, N.Y.)|February 26, 1971
Solvent dependence of the luminescence of N-arylaminonaphthalenesulfonatesC J Seliskar, L Brand
Analytical Chemistry|October 10, 1997
Electrochemical behavior of [ReI(DMPE)3]+, where DMPE = 1,2-bis(dimethylphosphino)ethane, at perfluorosulfonated ionomer-modified electrodesY Deng, C J Seliskar, W R Heineman
Analytical Chemistry|June 7, 2011
Spectroelectrochemical sensing based on multimode selectivity simultaneously achievable in a single device. 2. Demonstration of selectivity in the presence of direct interferencesY Shi, C J Seliskar, W R Heineman
Talanta|October 31, 2008
Dual-analyte spectroscopic sensing in sol-gel derived polyelectrolyte-silica composite thin filmsY Shi, C J Seliskar, W R Heineman
Applied Optics|October 2, 2010
Fiber-optic-graded-index-lens absorbance sensor with wavelength-scanning capabilityD A Landis, C J Seliskar, W R Heineman
Analytical Chemistry|January 11, 2000
Spectroelectrochemical sensing based on multimode selectivity simultaneously achievable in a single device. 9. Incorporation of planar waveguide technologyS E Ross, C J Seliskar, W R Heineman
Analytical Chemistry|October 31, 1998
Spectroscopic and electrochemical evaluation of a perfluorosulfonated ionomer and its gel as preconcentrating media for [ReI(DMPE)3]+, where DMPE = 1,2-bis(dimethylphosphino)ethaneB H Swaile, E A Blubaugh, C J Seliskar, et al.
Analytical Chemistry|January 11, 2000
Spectroelectrochemical sensing based on multimode selectivity simultaneously achievable in a single device. 5. Simulation of sensor response for different excitation potential waveformsA F Slaterbeck, M L Stegemiller, C J Seliskar, et al.
Pageof 1