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Electroanalytical Chemistry. Gary A. MabbottЧитать онлайн книгу.

Electroanalytical Chemistry - Gary A. Mabbott


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      In view of ongoing research, equipment modifications, changes in governmental regulations, and the constant flow of information relating to the use of experimental reagents, equipment, and devices, the reader is urged to review and evaluate the information provided in the package insert or instructions for each chemical, piece of equipment, reagent, or device for, among other things, any changes in the instructions or indication of usage and for added warnings and precautions. While the publisher and authors have used their best efforts in preparing this work, they make no representations or warranties with respect to the accuracy or completeness of the contents of this work and specifically disclaim all warranties, including without limitation any implied warranties of merchantability or fitness for a particular purpose. No warranty may be created or extended by sales representatives, written sales materials or promotional statements for this work. The fact that an organization, website, or product is referred to in this work as a citation and/or potential source of further information does not mean that the publisher and authors endorse the information or services the organization, website, or product may provide or recommendations it may make. This work is sold with the understanding that the publisher is not engaged in rendering professional services. The advice and strategies contained herein may not be suitable for your situation. You should consult with a specialist where appropriate. Further, readers should be aware that websites listed in this work may have changed or disappeared between when this work was written and when it is read. Neither the publisher nor authors shall be liable for any loss of profit or any other commercial damages, including but not limited to special, incidental, consequential, or other damages.

       Library of Congress Cataloging‐in‐Publication Data

      Names: Mabbott, Gary A., 1950‐ author.

      Title: Electroanalytical chemistry : principles, best practices, and case

      studies / Gary A. Mabbott.

      Description: First edition. | Hoboken, NJ : Wiley, 2020. | Series: Chemical

      analysis : a series of monographs on analytical chemistry and its

      applications | Includes bibliographical references and index.

      Identifiers: LCCN 2019048343 (print) | LCCN 2019048344 (ebook) | ISBN

      9781119538592 (hardback) | ISBN 9781119538608 (adobe pdf) | ISBN

      9781119538585 (epub)

      Subjects: LCSH: Electrochemical analysis.

      Classification: LCC QD115 .M325 2020 (print) | LCC QD115 (ebook) | DDC

      543/.4–dc23

      LC record available at https://lccn.loc.gov/2019048343

      LC ebook record available at https://lccn.loc.gov/2019048344

      Cover Design: Wiley

      Cover Image: © agsandrew/Shutterstock

      Although electroanalytical techniques are among the oldest instrumental methods used in chemistry, they continue to evolve. In the past two decades, there have been several exciting developments in the field that will ensure their relevance to chemical measurements for decades to come.

      One of the growing areas in which electrochemical methods will continue to play an important role is in sensor technology. Electrochemical devices are relatively simple in terms of instrumentation and can be miniaturized. Both of these attributes help keep their costs down and make them candidates for applications such as remote sensors, personal health care monitors, and implantable devices. Some of the newer developments in both ion selective electrodes and voltammetric devices are making these sensors more selective, more robust, applicable to a wider range of analytes, and capable of lower detection limits. As simple as they may be in terms of associated hardware, these devices take advantage of a range of physical and chemical phenomena and are notable intellectual achievements. Advances in this area will require a firm grasp of the underlying science, imagination and hard work, but the possibilities are plentiful.

      This book is primarily a textbook for instrumental analysis courses. As an academic subject, instrumental analysis encompasses an enormous field. It is not surprising, then, that university textbooks for instrumental analysis courses are also enormous. No one can expect to cover half of the material contained in them in a single semester. Mark Vitha has initiated a series of monographs as an alternative approach in which instructors can choose only those volumes covering topics that they intend to use in their own classes. The purpose of this book is to provide an option for teaching electroanalytical methods as a part of that series.

      Although this appears to be more material than is easy to cover in a few weeks of a single course, the overview explains which sections to concentrate on, if time is limited. I wanted to let instructors decide on what supporting material and case studies to cover to meet their needs. I hope that students will find the application material engaging. The material should also be relevant to scientists from other fields who need an introduction to the area of electrochemical analysis.

      I want to thank Mark Vitha for including me in this project. His energy, insight, and tenacity for getting things done have been an inspiration for me for many years. Several people have read early drafts of various material for this book. I am particularly grateful to Mark, Larry Potts, Maggie Malone‐Povolny, Wayne Boettner, and Joe Brom for their feedback. Each of them has had a different perspective and has made helpful comments. I am also grateful to Phil Bühlmann for his encouragement and insightful comments. I want to thank all the people at Wiley who have helped me in many ways, but Gayathree Sekar deserves special thanks for answering my questions and managing a myriad of things to see this book through production.

      Finally, I want to thank my wife, Ann, for all her love and patience. This project would not have been possible without her support and understanding.

      Gary A. Mabbott

      St. Paul, Minnesota, USA

      June 9, 2019

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