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By D.R. Crow
Series: ASM Handbook Archive
Volume: 10
Publisher: ASM International
Published: 01 January 1986
DOI: 10.31399/asm.hb.v10.a0001741
EISBN: 978-1-62708-178-8
... the dropping mercury electrode (polarography). It discusses the various methods of voltammetry, namely, linear sweep voltammetry, cyclic voltammetry, and stripping voltammetry that are carried out with different electrode material. The article also explores the modern instrumentation and developments achieved...
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Published: 01 January 1986
Fig. 9 Relationship between drop time, pulse duration, and current signal in differential pulse polarography. More
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Published: 15 December 2019
Fig. 21 Relationship between drop time, pulse duration, and current signal in differential pulse polarography More
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Published: 01 January 1986
Fig. 8 Relationship between drop time, pulse duration, and current measurement period used in normal pulse polarography. More
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Published: 15 December 2019
Fig. 20 Relationship between drop time, pulse duration, and current measurement period used in normal pulse polarography More
Series: ASM Handbook
Volume: 10
Publisher: ASM International
Published: 15 December 2019
DOI: 10.31399/asm.hb.v10.a0006679
EISBN: 978-1-62708-213-6
... electrometric titration voltammetry electrochemical cells polarography Overview ELECTROCHEMISTRY is a branch of physical chemistry that deals with the chemical changes produced by electricity and the production of electricity by chemical changes. The voltaic pile discovered by Volta in 1799...
Series: ASM Handbook Archive
Volume: 10
Publisher: ASM International
Published: 01 January 1986
DOI: 10.31399/asm.hb.v10.a0001742
EISBN: 978-1-62708-178-8
... electrochemical techniques, the reaction often must be allowed to go to completion efficiently, prolonging analysis times. However, the technique is more accurate (0.1%) than controlled-potential coulometry (0.2 to 5%) or polarography (2%). Use of efficient stirring lessens analysis time. Overall analysis time...
Series: ASM Handbook Archive
Volume: 10
Publisher: ASM International
Published: 01 January 1986
DOI: 10.31399/asm.hb.v10.a0001744
EISBN: 978-1-62708-178-8
... of the extent of reaction versus potential for a Type I electrolysis. This graph is similar to the current-potential curve for reversible processes in voltammetry and polarography (see the article “Voltammetry” in this Volume). At 25 °C (75 °F), the value of RT / nF is 59.2/ n mV; thus, for the reduction...
Series: ASM Handbook
Volume: 10
Publisher: ASM International
Published: 15 December 2019
DOI: 10.31399/asm.hb.v10.a0006748
EISBN: 978-1-62708-213-6
... a reservoir through a are referred to a standard electrode, such as cal properties of semiconductors and capillary tube (internal diameter: 0.03 to the hydrogen electrode. devices. 0.05 mm, or 0.0012 to 0.0020 in.) into a electrogravimetry. An electroanalytical tech- solution being analyzed by polarography...
Series: ASM Handbook Archive
Volume: 10
Publisher: ASM International
Published: 01 January 1986
DOI: 10.31399/asm.hb.v10.a0005692
EISBN: 978-1-62708-178-8
Series: ASM Handbook Archive
Volume: 10
Publisher: ASM International
Published: 01 January 1986
DOI: 10.31399/asm.hb.v10.a0001743
EISBN: 978-1-62708-178-8
... into a suitable solution without loss Voltammetry and polarography: Provides direct of analyte; interfering substances must be masked electrochemical measurement of metals and or removed nonmetals and is the basis of amperometric titration Advantages Stripping analysis: Quantitative determination...
Series: ASM Handbook
Volume: 10
Publisher: ASM International
Published: 15 December 2019
DOI: 10.31399/asm.hb.v10.9781627082136
EISBN: 978-1-62708-213-6
Series: ASM Handbook Archive
Volume: 10
Publisher: ASM International
Published: 01 January 1986
DOI: 10.31399/asm.hb.v10.a0001750
EISBN: 978-1-62708-178-8
Series: ASM Handbook Archive
Volume: 10
Publisher: ASM International
Published: 01 January 1986
DOI: 10.31399/asm.hb.v10.9781627081788
EISBN: 978-1-62708-178-8