Parametry
Więcej o książce
During the past decade, scanning electrochemical microscopy (SECM) has significantly advanced, with a notable increase in publications shifting from proof-of-concept to real-world applications. This technique has become essential for studying heterogeneous and homogeneous reactions, high-resolution imaging of various substrates, including biological cells, and microfabrication. As SECM is now widely utilized by research groups globally, a new edition of this monograph is timely, offering comprehensive reviews of its various aspects. The updated chapters provide essential experimental and theoretical background for those in the field. Chapters 1 through 5 cover the principles of SECM measurements, instrumentation, preparation of SECM probes, imaging methodologies, and theoretical foundations. Subsequent chapters focus on specific applications and are designed to be self-contained. While some familiarity with electrochemistry and physical chemistry is beneficial, the discussions are accessible for beginning graduate students. The book highlights SECM's utility across a range of interdisciplinary research, with applications spanning from biological systems to sensors and probing reactions at liquid-liquid interfaces.
Zakup książki
Scanning Electrochemical Microscopy, Second Edition, Allen J. Bard, Michael V. Mirkin
- Język
- Rok wydania
- 2012
- Oprawa
- (twarda)
Metody płatności
Brakuje nam tutaj Twojej recenzji.
- Tytuł
- Scanning Electrochemical Microscopy, Second Edition
- Język
- angielski
- Autorzy
- Allen J. Bard, Michael V. Mirkin
- Wydawca
- CRC Press
- Rok wydania
- 2012
- Oprawa
- twarda
- ISBN10
- 1439831122
- ISBN13
- 9781439831120
- Seria
- Tagi
- Mikrobiologia
- Ocena
- 4 z 5
- Opis
- During the past decade, scanning electrochemical microscopy (SECM) has significantly advanced, with a notable increase in publications shifting from proof-of-concept to real-world applications. This technique has become essential for studying heterogeneous and homogeneous reactions, high-resolution imaging of various substrates, including biological cells, and microfabrication. As SECM is now widely utilized by research groups globally, a new edition of this monograph is timely, offering comprehensive reviews of its various aspects. The updated chapters provide essential experimental and theoretical background for those in the field. Chapters 1 through 5 cover the principles of SECM measurements, instrumentation, preparation of SECM probes, imaging methodologies, and theoretical foundations. Subsequent chapters focus on specific applications and are designed to be self-contained. While some familiarity with electrochemistry and physical chemistry is beneficial, the discussions are accessible for beginning graduate students. The book highlights SECM's utility across a range of interdisciplinary research, with applications spanning from biological systems to sensors and probing reactions at liquid-liquid interfaces.
