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Localized Surface Plasmon Resonance Spectroscopy for Fundamental Studies of Nanoparticle Optics and Applications to Biosensors

Localized Surface Plasmon Resonance Spectroscopy for Fundamental Studies of Nanoparticle Optics and Applications to Biosensors
Author: Amanda Jo Haes
Publisher:
Total Pages:
Release: 2004
Genre:
ISBN:

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This work reveals that triangular silver nanoparticles have remarkable optical properties and that the enhanced sensitivity of their nanoenvironment can be used as a new class of optical sensors using localized surface plasmon resonance (LSPR) spectroscopy. The contents of thesis can be divided into two main subject areas: (1) the characterization and optimization of nanoparticles for the basic understanding of their optical properties and (2) the development, testing, and theoretical understanding of model biological assays and nonmodel assays for disease diagnosis. In the first half of this work, an improved understanding of the physical characteristics of noble metal nanoparticles is explored. Specifically, the realization that the sensitivity of these nanoparticles can be optimized for a given adsorbate is revealed. First, it is demonstrated that the short range (viz., 0--3 nm) distance dependence of the electromagnetic fields that surround these nanoparticles can be systematically tuned by changing their composition, size, and structure. Second, multilayer shells are assembled onto surface-confined noble metal nanoparticles to study the long range distance dependence. It is shown that this dependence (viz., 3--35 nm) is non-linear and has a tunable sensing range. Finally, methods to enhance the nanosensor's response based on interactions between the nanoparticle's plasmon resonance and the adsorbate's molecular resonance is revealed. In the remainder sections, we explore the use of these nanoparticles as biological sensors. First, the model system of biotin/streptavidin is confirmed to be highly specific with low nonspecific influences. Next, the demonstration of an immunoassay (biotin/anti-biotin) is performed. Finally, the LSPR nanosensor is shown to be a promising platform for the possible mechanistic understanding of Alzheimer's disease.


Localized Surface Plasmon Resonance Based Nanobiosensors

Localized Surface Plasmon Resonance Based Nanobiosensors
Author: Yi-Tao Long
Publisher: Springer Science & Business Media
Total Pages: 123
Release: 2014-04-10
Genre: Science
ISBN: 3642547958

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This book introduces the fundamentals and applications of the localized surface plasmon resonance (LSPR) property of noble metallic nanoparticles, with an emphasis on the biosensing applications of plasmonic nanoparticles, especially in living cell imaging and photothermal therapy. It provides an overview of the different operating principles of plasmonic sensors, particularly the single-nanoparticle-based detections, and a series of creative biosensors based on the modulation of different parameters of nanoparticles (particle size, shape, composition and surrounding medium) for label-free detection. The interparticle coupling effect, plasmon resonance energy transfer, electron transfer on plasmonics surface are also covered in this book. This book is intended for graduate students and researchers working in the interdisciplinary field combining chemistry, biology, material science and nanophotonics. Yi-Tao Long is a Professor at the School of Chemistry and Molecular Engineering, East China University of Science and Technology, China.


Nanoplasmonic Sensors

Nanoplasmonic Sensors
Author: Alexandre Dmitriev
Publisher: Springer Science & Business Media
Total Pages: 394
Release: 2012-07-31
Genre: Science
ISBN: 1461439337

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This book is a compendium of the finest research in nanoplasmonic sensing done around the world in the last decade. It describes basic theoretical considerations of nanoplasmons in the dielectric environment, gives examples of the multitude of applications of nanoplasmonics in biomedical and chemical sensing, and provides an overview of future trends in optical and non-optical nanoplasmonic sensing. Specifically, readers are guided through both the fundamentals and the latest research in the two major fields nanoplasmonic sensing is applied to – bio- and chemo-sensing – then given the state-of-the-art recipes used in nanoplasmonic sensing research.


Nanoplasmonics

Nanoplasmonics
Author: Grégory Barbillon
Publisher: BoD – Books on Demand
Total Pages: 496
Release: 2017-06-21
Genre: Science
ISBN: 9535132776

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Nanoplasmonics is a young topic of research, which is part of nanophotonics and nano-optics. Nanoplasmonics concerns to the investigation of electron oscillations in metallic nanostructures and nanoparticles. Surface plasmons have optical properties, which are very interesting. For instance, surface plasmons have the unique capacity to confine light at the nanoscale. Moreover, surface plasmons are very sensitive to the surrounding medium and the properties of the materials on which they propagate. In addition to the above, the surface plasmon resonances can be controlled by adjusting the size, shape, periodicity, and materials' nature. All these optical properties can enable a great number of applications, such as biosensors, optical modulators, photodetectors, and photovoltaic devices. This book is intended for a broad audience and provides an overview of some of the fundamental knowledges and applications of nanoplasmonics.


Nanomaterials for Biosensors

Nanomaterials for Biosensors
Author: Bansi D. Malhotra
Publisher: William Andrew
Total Pages: 334
Release: 2017-10-26
Genre: Technology & Engineering
ISBN: 0128135158

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Nanomaterials for Biosensors: Fundamentals and Applications provides a detailed summary of the main nanomaterials used in biosensing and their application. It covers recent developments in nanomaterials for the fabrication of biosensor devices for healthcare diagnostics, food freshness and bioprocessing. The various processes used for synthesis and characterization of nanostructured materials are examined, along with the design and fabrication of bioelectronic devices using nanostructured materials as building blocks. Users will find the fundamentals of the main nanomaterials used in biosensing, helping them visualize a systematic and coherent picture of how nanomaterials are used in biosensors. The book also addresses the role of bio-conjugation of nanomaterials in the construction of nano-biointerfaces for application in biosensors. Such applications, including metal nanoparticles, metal oxide nanoparticles, nanocomposites, carbon nanotubes, conducting polymers and plasmonic nanostructures in biosensing are discussed relative to each nanomaterial concerned. Finally, recent advancements in protein functionalized nanomaterials for cancer diagnostics and bio-imaging are also included. Provides a detailed study on how nanomaterials are used to enhance sensing capabilities in biosensors Explains the properties, characterization methods and preparation techniques of the nanomaterials used in biosensing Arranged in a material-by-material way, making it clear how each nanomaterial should be used


Localized Surface Plasmon Resonance for Optical Fiber-Sensing Applications

Localized Surface Plasmon Resonance for Optical Fiber-Sensing Applications
Author: Pedro J. Rivero
Publisher:
Total Pages:
Release: 2017
Genre: Science
ISBN:

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It is well known that optical fiber sensors have attracted the attention of scientific community due to its intrinsic advantages, such as lightweight, small size, portability, remote sensing, immunity to electromagnetic interferences and the possibility of multiplexing several signals. This field has shown a dramatic growth thanks to the creation of sensitive thin films onto diverse optical fiber configurations. In this sense, a wide range of optical fiber devices have been successfully fabricated for monitoring biological, chemical, medical or physical parameters. In addition, the use of nanoparticles into the sensitive thin films has resulted in an enhancement in the response time, robustness or sensitivity in the optical devices, which is associated to the inherent properties of nanoparticles (high surface area ratio or porosity). Among all of them, the metallic nanoparticles are of great interest for sensing applications due to the presence of strong absorption bands in the visible and near-infrared regions, due to their localized surface plasmon resonances (LSPR). These optical resonances are due to the coupling of certain modes of the incident light to the collective oscillation of the conduction electrons of the metallic nanoparticles. The LSPR extinction bands are very useful for sensing applications as far as they can be affected by refractive index variations of the surrounding medium of the nanoparticles, and therefore, it is possible to create optical sensors with outstanding properties such as high sensitivity and optical self-reference. In this chapter, the attractive optical properties of metal nanostructures and their implementation into different optical fiber configuration for sensing or biosensing applications will be studied.


Nanoantenna

Nanoantenna
Author: Marc Lamy de la Chapelle
Publisher: CRC Press
Total Pages: 427
Release: 2013-01-24
Genre: Science
ISBN: 9814303623

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This book concentrates on the various fields related to the development of a nanobiosensor and presents the latest information from renowned experts. It focuses on the enhanced spectroscopy, including SERS, SEIRA/SEIRS, and near-field optics, and the related physical processes (optical properties of metallic nanoparticles, plasmon resonance, field


Plasmonics-Based Optical Sensors and Detectors

Plasmonics-Based Optical Sensors and Detectors
Author: Banshi D. Gupta
Publisher: CRC Press
Total Pages: 528
Release: 2023-08-24
Genre: Technology & Engineering
ISBN: 1000959325

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Plasmonics stems from the surface charge density oscillations at metal–dielectric interface, leading to extremely strong light–matter interactions. In the past few decades, plasmonics has become one of the most favorite fields/techniques in realizing high-performance photonic devices. For this purpose, different new concepts, such as exploration of different radiation frequency regions, two-dimensional materials/heterostructures, and different types of substrates for the excitation of plasmons have been investigated for plasmonics-based sensors and detectors. This book focuses on the recent and advanced works on optical sensors and detectors utilizing plasmonic techniques for opto-electronic applications. The book is unique as it describes both sensors and detectors based on plasmonics and their practical applications in a single book, a feature not found in any book so far.


Engineering the Surface Chemistries of Plasmonic Nanoparticles for Biosensing Applications

Engineering the Surface Chemistries of Plasmonic Nanoparticles for Biosensing Applications
Author: Matthew Nathaniel Creyer
Publisher:
Total Pages: 0
Release: 2023
Genre:
ISBN:

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Plasmonic nanoparticles (PNs) have unique optical properties that make them particularly attractive for biosensing applications. These properties arise due the localized surface plasmon resonance (LSPR) on their surface which occurs upon light excitation that is typically in the visible region of the electromagnetic spectrum. The absorbing and scattering properties of PNs are derived from the LSPR and are tunable based on the nanoparticle shape, size, and local dielectric environment. Furthermore, the LSPR on PNs enables fluorophores in close proximity (


Recent Advances in Plasmonic Probes

Recent Advances in Plasmonic Probes
Author: Rajib Biswas
Publisher: Springer Nature
Total Pages: 498
Release: 2022-06-21
Genre: Science
ISBN: 3030994910

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This book gives a comprehensive overview of recent advancements in both theory and practical implementation of plasmonic probes. Encompassing multiple disciplines, the field of plasmonics provides a versatile and flexible platform for nanoscale sensing and imaging. Despite being a relatively young field, plasmonic probes have come a long way, with applications in chemical, biological, civil, and architectural fields as well as enabling many analytical schemes such as immunoassay, biomarkers, environmental indexing, and water quality sensing, to name but a few. The objective of the book is to present in-depth analysis of the theory and applications of novel probes based on plasmonics, with a broad selection of specially-invited chapters on the development, fabrication, functionalization, and implementation of plasmonic probes as well as their integration with current technologies and future outlook. This book is designed to cater to the needs of novice, seasoned researchers and practitioners in academia and industry, as well as medical and environmental fields.