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Smartphones for Chemical Analysis: From Proof-of-concept to Analytical Applications
Smartphones for Chemical Analysis: From Proof-of-concept to Analytical Applications
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Smartphones for Chemical Analysis: From Proof-of-Concept to Analytical Applications,Volume 101 in the Comprehensive Analytical Chemistry series, highlights new advances in this broadening field, with chapters covering Smartphone-based assay benchmarking using traditional instrumental analysis, Smartphone-based water analysis, Sample preparation in smartphone-based analysis: Current status and challenges, Application of smartphone-based analysis in the medical field, Smartphone-based biosensors in the food analysis field, Bioreceptors for smartphone detection, Smartphone anatomy: Features used for ubiquitous sensing, and much more.
Format: Hardback
Length: 370 pages
Publication date: 26 April 2023
Publisher: Elsevier - Health Sciences Division
Smartphones have revolutionized the field of chemical analysis, offering a versatile and portable platform for various analytical applications. In the Comprehensive Analytical Chemistry series, Volume 101, titled "Smartphones for Chemical Analysis: From Proof-of-Concept to Analytical Applications," readers are presented with a comprehensive exploration of the latest advancements in this rapidly evolving field.
The book begins with a chapter that delves into the benchmarking of smartphone-based assays using traditional instrumental analysis. This chapter highlights the potential of smartphones as powerful tools for chemical analysis, showcasing their ability to deliver accurate and reproducible results. It also discusses the challenges and limitations associated with smartphone-based assays and provides strategies for overcoming them.
Another chapter focuses on smartphone-based water analysis, examining the use of these devices for the detection and quantification of various water contaminants. The chapter discusses the advantages of smartphone-based water analysis, such as its portability, affordability, and real-time monitoring capabilities, and explores the current status and challenges in this field. It also highlights the potential applications of smartphone-based water analysis in various industries, including environmental monitoring, public health, and water resource management.
Sample preparation in smartphone-based analysis is another critical aspect covered in the book. The chapter discusses the challenges and opportunities associated with preparing samples for analysis using smartphones. It explores the current state-of-the-art techniques and tools used for sample preparation, including microfluidics, solid-phase extraction, and chromatography. It also highlights the potential applications of smartphone-based analysis in drug discovery, food analysis, and clinical diagnostics.
The application of smartphone-based analysis in the medical field is explored in a chapter dedicated to this topic. The chapter discusses the use of smartphones for the diagnosis, monitoring, and treatment of various diseases. It highlights the advantages of smartphone-based healthcare, such as its accessibility, convenience, and cost-effectiveness. It also explores the potential applications of smartphone-based analysis in personalized medicine, remote healthcare, and medical education.
Smartphone-based biosensors in the food analysis field are another area of focus in the book. The chapter discusses the use of smartphones for the detection and quantification of various food contaminants, including pesticides, heavy metals, and pathogens. It highlights the advantages of smartphone-based biosensors, such as their portability, affordability, and real-time monitoring capabilities. It also explores the current status and challenges in this field and discusses the potential applications of smartphone-based biosensors in food safety, quality control, and food authentication.
Bioreceptors for smartphone detection are another innovative application discussed in the book. The chapter explores the use of smartphones as bioreceptors for the detection of various analytes, including drugs, toxins, and biomarkers. It highlights the advantages of smartphone-based detection, such as its simplicity, portability, and low cost. It also discusses the current state-of-the-art techniques and tools used for smartphone detection, including electrochemical sensors, optical sensors, and mass spectrometry.
Smartphone anatomy: Features used for ubiquitous sensing is a chapter that delves into the hardware and software components of smartphones that are used for sensing. The chapter discusses the various sensors and technologies used in smartphones, such as cameras, microphones, accelerometers, and GPS. It highlights the potential applications of smartphone-based sensing in various fields, including environmental monitoring, health and wellness, and smart cities.
Additional chapters in the book cover end-user integration for at-home analysis, hyphenating paper-based biosensors with smartphones, smartphone-based fluorescent and chemiluminescent sensing, smartphones for portable surface-enhanced Raman spectroscopy, towards a universal applicable photonics approach and sustainable spectral data, integrating blockchain and image analyses on smartphones to create a secure food export pipeline, smartphone-based electrochemical (bio)sensors: state of the art and perspective, micro- and nanoplastic detection through a point-of-site platform platform, and benchmarking using ambient mass spectrometry.
In conclusion, "Smartphones for Chemical Analysis: From Proof-of-Concept to Analytical Applications" is a valuable resource for researchers, scientists, and practitioners in the field of chemical analysis. The book provides a comprehensive overview of the latest advancements in smartphone-based analysis, covering a wide range of topics such as assay benchmarking, water analysis, sample preparation, medical applications, biosensors, bioreceptors, and ubiquitous sensing. With its extensive coverage and practical insights, the book offers a valuable guide for those seeking to leverage the power of smartphones in their analytical endeavors.
Weight: 696g
Dimension: 160 x 240 x 26 (mm)
ISBN-13: 9780443134050
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