Introduction to Analytical Voltammetry
From the Fundamentals to the State-of-the-Art
- 1 Edición - 1 de diciembre de 2026
- Última edición
- Autores: Robert Crapnell, Elena Bernalte, Craig E. Banks
- Idioma: Inglés
Introduction to Analytical Voltammetry: From the Fundamentals to the State-of-the-Art provides a comprehensive overview and introduction to both the fundamental background and ap… Leer más
Descripción
Descripción
Subsequent chapters then introduce the state-of-the-art in electroanalytical voltammetry, with an emphasis on 2D material electrochemistry, forensic electrochemistry, sonoelectroanalysis, wearable technology, gas sensors, environmental science, biosensors, circular economy electrochemistry and additive manufacturing electrochemistry. Also featured is a timely chapter on the potential for AI and machine learning techniques for analytical voltammetry. The book is written primarily for advanced undergraduate or graduate students and their tutors in chemistry who need to understand how voltametric techniques are utilized for the study of electrochemical systems and the development of analytical methods.
Puntos claves
Puntos claves
- Offers a comprehensive, introductory treatment of analytical voltammetry
- Provides a complementary reference text for electrochemistry focused courses
- Addresses voltammetry topics of growing interest, including the circular economy, wearable sensors, 3D printed sensors, and its use in forensic analysis
- Covers key topics and the latest developments, including the utilization of AI and machine learning
- Presents a strong focus on contemporary applications of analytical voltammetry
De interès para
De interès para
Índice
Índice
Part I Fundamentals of electrochemistry and electroanalysis
1. Introduction to electrochemistry
2. Principles and interpretation of cyclic voltammetry
3. Introduction to electroanalysis
Part II Electroanalytical sensing platforms
4. Nanomaterials within electroanalysis
5. Wearable electroanalytical sensors
6. Sonoelectroanalysis in analytical voltammetry
7. Additive manufacturing electroanalysis
Part III Applications of electroanalysis
8. Electroanalytical biosensors
9. Clinical and pharmaceutical electroanalysis
10. Environmental electroanalysis
11. Forensic electroanalysis
12. Electroanalysis for food and drink
13. Electroanalytical gas sensors
14. Analytical voltammetry of solids
Part IV The future of electroanalysis
15. Sustainability and the circular economy
16. Artificial intelligence and machine learning in analytical voltammetry
Detalles del producto
Detalles del producto
- Edición: 1
- Última edición
- Publicado: 1 de diciembre de 2026
- Idioma: Inglés
Sobre los autores
Sobre los autores
RC
Robert Crapnell
EB
Elena Bernalte
Elena Bernalte holds a BSc (Hons) in Chemistry (2006) and MSc in Environmental Science (2010) at University of Extremadura (Spain), and she obtained her PhD in Analytical Chemistry (2013) at the same University. She is currently a Senior Research Associate at Manchester Metropolitan University where her focus is on electroanalysis within both forensic and environmental samples, additive manufacturing, and sustainability.
CB
Craig E. Banks
Craig E. Banks holds a Personal Chair in Chemistry at Manchester Metropolitan University and has published more than 600 papers (h-index: 101; citations: 42K), also 4 books, 20 book chapters, whilst being the lead inventor on 21 patents. Craig has spun out 2 companies from his research and was awarded the Royal Society of Chemistry’s Harrison–Meldola Memorial Prize (2011) for his contributions to the understanding of carbon materials, in particular graphene and its application as an electrode material. He was awarded a Royal Society of Chemistry Tilden Prize (2023) for his outstanding contributions to electrochemistry through pioneering additive manufacturing and also the Royal Society of Chemistry L. S. Theobald Lectureship (2024) having demonstrated a significant contribution to the development or application of analytical chemistry. Banks is known for his expertise in fundamental and applied aspects of electrochemistry, being involved in the significant development of next generation screen-printing electrodes and more recently the use of additive manufacturing.