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Titlebook: Nanobiosensors and Nanobioanalyses; Mun‘delanji C. Vestergaard,Kagan Kerman,Eiichi Tam Book 2015 Springer Japan 2015 electrochemistry.nano

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书目名称Nanobiosensors and Nanobioanalyses
编辑Mun‘delanji C. Vestergaard,Kagan Kerman,Eiichi Tam
视频video
概述Summarizes key developments and presents challenging questions in each chapter.Discusses established, cutting-edge, and future trends in detail.Provides information on nanobiosensors and nanobioanalys
图书封面Titlebook: Nanobiosensors and Nanobioanalyses;  Mun‘delanji C. Vestergaard,Kagan Kerman,Eiichi Tam Book 2015 Springer Japan 2015 electrochemistry.nano
描述.This book provides a comprehensive review of established, cutting-edge, and future trends in the exponentially growing field of nanomaterials and their applications in biosensors and bioanalyses. Part I focuses on the key principles and transduction approaches, reviewing the timeline featuring the important historical milestones in the development and application of nanomaterials in biosensors and bioanalyses. Part II reviews various architectures used in nanobiosensing designs focusing on nanowires, one- and two-dimensional nanostructures, and plasmonic nanobiosensors with interferometric reflectance imaging. Commonly used nanomaterials, functionalization of the nanomaterials, and development of nanobioelectronics are discussed in detail in Part III with examples from screen-printed electrodes, nanocarbon films, and semiconductor quantum dots. Part IV reviews the current applications of carbon nanotubes, nanoneedles, plasmonic sensors, electrochemical scanning microscopes, and field-effect transistors with the future outlook for emerging technologies. Attention is also given to potential challenges, in particular, of taking these technologies at the point-of-need. The book conclu
出版日期Book 2015
关键词electrochemistry; nanobioanalyses; nanobioelectronics; nanobiosensing architectures; nanobiosensors; nano
版次1
doihttps://doi.org/10.1007/978-4-431-55190-4
isbn_softcover978-4-431-56267-2
isbn_ebook978-4-431-55190-4
copyrightSpringer Japan 2015
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Vertically Aligned Nanowire Array-Based Sensors and Their Catalytic Applicationsays of Au, Pt and nickel (Ni) will be described. These materials have been characterized using X-ray diffraction, scanning electron microscopy and transmission electron microscopy. The catalytic activity and the suitability of these materials as electrochemical sensors have been investigated by cycl
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Device Architecture and Biosensing Applications for Attractive One- and Two-Dimensional Nanostructurons are also included. Field-effect transistor devices constructed from 1D silicon nanowires and 2D graphene sheets are described, and we discuss biosensors for the investigation of protein–protein interactions, neural signal transmission, viral infection diagnosis, biomolecular detection, nucleic a
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Nanoimprinted Plasmonic Biosensors and Biochipsonto the cyclo-olefin polymer substrate from porous alumina molds. To obtain the plasmonic surface, a thin layer of gold was generated on the nanopillar structure. After optimization of the size of the alumina pores, the Au cap thickness, the diameter of the nanopillars and bovine serum albumin bloc
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Nanoparticle Biosensing with Interferometric Reflectance Imaginging, diagnostics and monitoring. In this chapter we discuss the principles that have led to the development of this technique and its applications in assay development and biophysical analysis, and our progress in developing this technology into a rapid and cost-effective point-of-care instrument.
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