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PLASMONIC NANOPARTICLE

  • Plasmonic nanoparticle
  • Plasmonic nanoparticles are particles whose electron density can couple with electromagnetic radiation of wavelengths that are far larger than the particle

    Plasmonic nanoparticle

    Plasmonic nanoparticle

    Plasmonic_nanoparticle

  • Magnetic-plasmonic bifunctional nanoparticles
  • Magnetic-plasmonic (bifunctional) nanoparticles (MP-NPs) consist of both optical (plasmonic) and magnetic components and thus, has the functionality of

    Magnetic-plasmonic bifunctional nanoparticles

    Magnetic-plasmonic_bifunctional_nanoparticles

  • Plasmonic solar cell
  • Type of solar cell

    nano-particles excited at their localized surface plasmon resonance. Plasmonic core-shell nanoparticles located in the front of the thin film solar cells can aid

    Plasmonic solar cell

    Plasmonic_solar_cell

  • Nanoparticle
  • Particle with size less than 100 nm

    nanoparticles and downconverting nanoparticles, and causes a shift in the emission wavelength spectrum. By introducing a dielectric layer, plasmonic core

    Nanoparticle

    Nanoparticle

    Nanoparticle

  • Silver nanoparticle
  • Ultrafine particles of silver between 1 nm and 100 nm in size

    catalytic activity better than that of gold nanoparticles on active support such as TiO2, Fe2O3, etc. Plasmonic effects have been studied quite extensively

    Silver nanoparticle

    Silver nanoparticle

    Silver_nanoparticle

  • Plasmonics
  • Use of plasmons for data transmission in circuits

    localized surface plasmon modes supported by metal nanoparticles are referred to as plasmonics modes. Both modes are characterized by large momentum

    Plasmonics

    Plasmonics

    Plasmonics

  • Plasmonic catalysis
  • Catalytic process

    the surface of the nanoparticle, which can be used to excite the electrons of nearby molecules. Similar to photocatalysts, plasmonic catalysts can transfer

    Plasmonic catalysis

    Plasmonic_catalysis

  • Emilie Ringe
  • Canadian chemist

    Sciences. Ringe studies plasmonic nanoparticles. When light of the appropriate frequency shines on these plasmonic nanoparticles the nearby electrons start

    Emilie Ringe

    Emilie_Ringe

  • Colloidal gold
  • Suspension of gold nanoparticles in a liquid

    Luan F (2011). "A review on functionalized gold nanoparticles for biosensing applications" (PDF). Plasmonics. 6 (3): 491–506. doi:10.1007/s11468-011-9228-1

    Colloidal gold

    Colloidal gold

    Colloidal_gold

  • Self-assembly of nanoparticles
  • Physical phenomenon

    Alexei A.; Edel, Joshua B. (2016). "Tuneable 2D self-assembly of plasmonic nanoparticles at liquid|liquid interfaces" (PDF). Nanoscale. 8 (46): 19229–19241

    Self-assembly of nanoparticles

    Self-assembly of nanoparticles

    Self-assembly_of_nanoparticles

  • Upconverting nanoparticles
  • Photoluminescent particles

    heat. In UCNP-plasmonic nanoparticle composites (e.g. NaYF4:Yb Er@Fe3O4@Au17), the UCNPs target tumor cells and the plasmonic nanoparticles generate heat

    Upconverting nanoparticles

    Upconverting_nanoparticles

  • Plasmon
  • Quasiparticle of charge oscillations in condensed matter

    et al. (2011). "A review on functionalized gold nanoparticles for biosensing applications". Plasmonics. 6 (3): 491–506. doi:10.1007/s11468-011-9228-1.

    Plasmon

    Plasmon

    Plasmon

  • Localized surface plasmon
  • Electron oscillations in a nanoparticle

    nanoparticle of size comparable to or smaller than the wavelength of light used to excite the plasmon. When a small spherical metallic nanoparticle is

    Localized surface plasmon

    Localized surface plasmon

    Localized_surface_plasmon

  • Plasmonic metamaterial
  • Metamaterial that uses surface plasmons to achieve optical properties not seen in nature

    A plasmonic metamaterial is a metamaterial that uses surface plasmons to achieve optical properties not seen in nature. Plasmons are produced from the

    Plasmonic metamaterial

    Plasmonic_metamaterial

  • Spherical nucleic acid
  • (July 2018). "Design principles for photonic crystals based on plasmonic nanoparticle superlattices". Proceedings of the National Academy of Sciences

    Spherical nucleic acid

    Spherical nucleic acid

    Spherical_nucleic_acid

  • Naomi Halas
  • American chemist and electrical engineer

    and the Smalley-Curl Institute. She invented the first nanoparticle with tunable plasmonic resonances, which are controlled by their shape and structure

    Naomi Halas

    Naomi_Halas

  • Phase-change material
  • Substance with high latent heat of melting or solidifying

    materials like carbon-based nanostructures (e.g., graphene, CNTs), plasmonic nanoparticles (e.g., Au, Ag), and semiconductors (e.g., TiO2, MoS2). Common PCMs

    Phase-change material

    Phase-change material

    Phase-change_material

  • Plasmon coupling
  • magnitude, which far-exceeds the field enhancement for a single plasmonic nanoparticle. Many sensing applications such as surface enhanced Raman spectroscopy

    Plasmon coupling

    Plasmon_coupling

  • Cross section (physics)
  • Probability of a given process occurring in a particle collision

    cross section relative to some physical process. For example, plasmonic nanoparticles can have light scattering cross sections for particular frequencies

    Cross section (physics)

    Cross_section_(physics)

  • Plasmonic nanolithography
  • Plasmonic nanolithography (also known as plasmonic lithography or plasmonic photolithography) is a nanolithographic process that utilizes surface plasmon

    Plasmonic nanolithography

    Plasmonic_nanolithography

  • Cell fusion
  • Biological process in which cells combine

    (NIR) laser and a plasmonic nanoparticle. The laser which typically acts as an optical trap, is used to heat the nanoscopic plasmonic particle to very

    Cell fusion

    Cell_fusion

  • Ambarish Ghosh
  • Indian physicist (1973-)

    recently, they have demonstrated a novel technique to integrate plasmonic nanoparticles with graphene in a sandwich configuration, allowing them to achieve

    Ambarish Ghosh

    Ambarish_Ghosh

  • Vladimir Shalaev
  • American optical physicist

    Shalaev, Refractory plasmonics, Science, v. 344, pp. 263–264 (2014) U. Guler, V.M. Shalaev, A. Boltasseva, Nanoparticle Plasmonics: Going Practical with

    Vladimir Shalaev

    Vladimir Shalaev

    Vladimir_Shalaev

  • Nicholas A. Kotov
  • American chemist (born 1965)

    energy devices, green catalysis, and aramid recycling. The chiral plasmonic nanoparticles are being tested for early detection of cancer. Kotov's research

    Nicholas A. Kotov

    Nicholas A. Kotov

    Nicholas_A._Kotov

  • Multiple layered plasmonics
  • Technology for manipulating plasmons

    equilibrium. Another example of multiple layered plasmonics involves placing drugs inside of the nanoparticle and using it as a vehicle to deliver toxic drugs

    Multiple layered plasmonics

    Multiple_layered_plasmonics

  • Solar cell
  • Device used to produce electricity from light

    infrared light into visible light have shown a 30% increase. Nanoparticle coatings inducing plasmonic light scattering increase wide-angle conversion efficiency

    Solar cell

    Solar cell

    Solar_cell

  • Spaser
  • Laser that uses surface plasmon polaritons

    surface plasmons and the resonant cavity is replaced by a nanoparticle, which supports the plasmonic modes. Similarly to a laser, the energy source for the

    Spaser

    Spaser

  • Michel Meunier
  • Canadian engineer

    transfection using an ultra-fast pulsed laser (femtosecond laser) and of plasmonic nanoparticles, typically gold or gold-silver alloy. The activities of his laboratory

    Michel Meunier

    Michel_Meunier

  • Gold nanoparticles in chemotherapy
  • Drug delivery technique using gold nanoparticles as vectors

    arthritis. Gold nanoparticle technology shows promise in the advancement of cancer treatments. Some of the properties that gold nanoparticles possess, such

    Gold nanoparticles in chemotherapy

    Gold nanoparticles in chemotherapy

    Gold_nanoparticles_in_chemotherapy

  • Nonlinear optics
  • Branch of physics

    Trejo-Valdez, M; Torres-Torres, C (2019-09-17). "Optical phase-change in plasmonic nanoparticles by a two-wave mixing". Physica Scripta. 94 (12): 125802. Bibcode:2019PhyS

    Nonlinear optics

    Nonlinear optics

    Nonlinear_optics

  • Jaime Gómez Rivas
  • Spanish physicist

    the nanoscale. Rivas' 2011 research presented an advancement in plasmonic nanoparticle sensor performance, achieving over tenfold improvement in sensitivity

    Jaime Gómez Rivas

    Jaime_Gómez_Rivas

  • Rizia Bardhan
  • Indian origin American biomolecular engineer

    Fan; Chihhui Wu; Kui Bao; et al. (1 May 2010). "Self-assembled plasmonic nanoparticle clusters". Science. 328 (5982): 1135–1138. Bibcode:2010Sci...328

    Rizia Bardhan

    Rizia_Bardhan

  • Nanoscale plasmonic motor
  • A nanoscale plasmonic motor (sometimes called a "light mill") is a type of nanomotor, converting light energy to rotational motion at nanoscale. It is

    Nanoscale plasmonic motor

    Nanoscale plasmonic motor

    Nanoscale_plasmonic_motor

  • Single-entity electrochemistry
  • microscopy to monitor electrochemical reactions at the surface of plasmonic nanoparticles. Plasmonics-based electrochemical current microscopy (PECM) measures

    Single-entity electrochemistry

    Single-entity_electrochemistry

  • Surface-enhanced Raman spectroscopy
  • Spectroscopic technique

    molecules adsorbed on rough metal surfaces or by nanostructures such as plasmonic-magnetic silica nanotubes. The enhancement factor can be as much as 1010

    Surface-enhanced Raman spectroscopy

    Surface-enhanced Raman spectroscopy

    Surface-enhanced_Raman_spectroscopy

  • CD/DVD based immunoassay
  • nanoparticles can be identified with photometric or plasmonic detectors. The smaller the nanoparticles are, the more sensitive the assay becomes. Silver

    CD/DVD based immunoassay

    CD/DVD based immunoassay

    CD/DVD_based_immunoassay

  • Janus particles
  • Type of nanoparticle or microparticle

    step with scalable flame aerosol technology. These hybrid plasmonic-magnetic nanoparticles bear properties that are applicable in bioimaging, targeted

    Janus particles

    Janus particles

    Janus_particles

  • Extended Wulff constructions
  • Shapes for crystals with interfaces and twins

    PMID 21797229. Ringe, Emilie (2020). "Shapes, Plasmonic Properties, and Reactivity of Magnesium Nanoparticles". The Journal of Physical Chemistry C. 124

    Extended Wulff constructions

    Extended Wulff constructions

    Extended_Wulff_constructions

  • Photonic metamaterial
  • Type of electromagnetic metamaterial

    and out the other side. By employing a combination of plasmonic and non-plasmonic nanoparticles, lumped circuit element nanocircuits at infrared and optical

    Photonic metamaterial

    Photonic metamaterial

    Photonic_metamaterial

  • Graphene plasmonics
  • engineering of metallic substrates or nanoparticles (e.g., gold, silver and copper) with graphene, the plasmonic properties of the hybrid structures could

    Graphene plasmonics

    Graphene_plasmonics

  • Novavax COVID-19 vaccine
  • Vaccine against COVID-19

    SARS-CoV-2 Mediated by N Gene Targeted Antisense Oligonucleotide Capped Plasmonic Nanoparticles". primary. ACS Nano. 14 (6): 7617–7627. doi:10.1021/acsanm.0c01978

    Novavax COVID-19 vaccine

    Novavax COVID-19 vaccine

    Novavax_COVID-19_vaccine

  • Nanofluid
  • Fluid containing nanometer-sized particles, called nanoparticles

    particles, called nanoparticles. These fluids are engineered colloidal suspensions of nanoparticles in a base fluid. The nanoparticles used in nanofluids

    Nanofluid

    Nanofluid

  • List of plasma physics articles
  • Plasmonic cover, Theories of cloaking Plasmonic laser, Nanolaser Plasmonic metamaterials Plasmonic nanolithography Plasmonic Nanoparticles Plasmonic solar

    List of plasma physics articles

    List_of_plasma_physics_articles

  • Platinum nanoparticle
  • Resonance-enhanced Properties of Noble Metal Nanoparticles and Their Applications to Biosystems". Plasmonics. 2 (3): 107. doi:10.1007/s11468-007-9031-1

    Platinum nanoparticle

    Platinum nanoparticle

    Platinum_nanoparticle

  • Prashant K. Jain
  • Indian-American scientist

    scaling law of plasmonic interactions and physical principles governing the plasmonic absorption and scattering properties of gold nanoparticles, which now

    Prashant K. Jain

    Prashant_K._Jain

  • Oleg Prezhdo
  • Ukrainian–American physical chemist (born 1970)

    interaction and high densities of states. While investigating plasmonic properties of metal nanoparticles, Prezhdo predicted instantaneous photo-induced charge

    Oleg Prezhdo

    Oleg Prezhdo

    Oleg_Prezhdo

  • Effective medium approximations
  • Method of approximating the properties of a composite material

    to determine the morphology of plasmonic nanocrystals without transmission electron microscopy?". Journal of Nanoparticle Research. 18 (8): 217. Bibcode:2016JNR

    Effective medium approximations

    Effective_medium_approximations

  • Peter Nordlander
  • Swedish physicist

    the plasmonic properties of nanoparticles of complex shapes in terms of interacting primitive plasmon modes. His group has investigated plasmonic nanocavities

    Peter Nordlander

    Peter Nordlander

    Peter_Nordlander

  • Nanoshell
  • equilibrium. Another example of nanoshell plasmonics in cancer treatment involves placing drugs inside of the nanoparticle and using it as a vehicle to deliver

    Nanoshell

    Nanoshell

    Nanoshell

  • Nanocluster
  • Collection of bound atoms or molecules

    molecule and does not exhibit plasmonic behavior; nanoclusters are known as the bridging link between atoms and nanoparticles. Nanoclusters may also be referred

    Nanocluster

    Nanocluster

  • Method of moments (electromagnetics)
  • Numerical method in computational electromagnetics

    (February 2012). "MNPBEM – A Matlab toolbox for the simulation of plasmonic nanoparticles". Computer Physics Communications. 183 (2): 370–381. arXiv:1109

    Method of moments (electromagnetics)

    Method of moments (electromagnetics)

    Method_of_moments_(electromagnetics)

  • Ya Wang
  • Chinese-American mechanical engineer

    research include nanomedicine and nanorobotics, magnetic-plasmonic bifunctional nanoparticles, and the applications of piezoelectric ceramics in vibration

    Ya Wang

    Ya_Wang

  • Audrey Moores
  • Romanian chemist

    solvent-free conditions, and explored the catalytic properties of plasmonic nanoparticles. Since 2018, she has received national media coverage for working

    Audrey Moores

    Audrey Moores

    Audrey_Moores

  • Ulrike Woggon
  • German physicist

    low-dimensional quantum nanostructures, including quantum dots and plasmonic nanoparticles. She is a professor of nonlinear optics in the physics department

    Ulrike Woggon

    Ulrike_Woggon

  • Ashutosh Chilkoti
  • Indian biomedical engineer

    label-free plasmonic biosensor in a chip format. Furthermore, he identified several factors to improve the performance of immobilized metal nanoparticle sensors

    Ashutosh Chilkoti

    Ashutosh_Chilkoti

  • Fiveling
  • Five crystals arranged around a common axis

    fiveling, also known as a decahedral nanoparticle, a multiply-twinned particle (MTP), a pentagonal nanoparticle, a pentatwin, or a five-fold twin is a

    Fiveling

    Fiveling

    Fiveling

  • Gold nanocage
  • are gold nanoparticles of size 20–500 nm with a hollow cubic structure and porous walls. They can be synthesized by reacting silver nanoparticles with chloroauric

    Gold nanocage

    Gold_nanocage

  • Christy Landes
  • American physical chemist

    Christy F. (2015). "From tunable core-shell nanoparticles to plasmonic drawbridges: Active control of nanoparticle optical properties". Science Advances. 1

    Christy Landes

    Christy_Landes

  • Icosahedral twins
  • Structure found in atomic clusters and nanoparticles

    "Wulff-Based Approach to Modeling the Plasmonic Response of Single Crystal, Twinned, and Core–Shell Nanoparticles". The Journal of Physical Chemistry C

    Icosahedral twins

    Icosahedral twins

    Icosahedral_twins

  • Discrete dipole approximation codes
  • Software packages using DDA

    W. C. Chew (2011). "Optical design of organic solar cell with hybrid plasmonic system". Opt. Express. 19 (17): 15908–15918. Bibcode:2011OExpr..1915908S

    Discrete dipole approximation codes

    Discrete_dipole_approximation_codes

  • Zahra Fakhraai
  • Iranian-Canadian materials scientist

    Fakhraai does research focused on glass transition, nonlinear optics, nanoparticle plasmonics, and polymer physics. She studies the impact of nanoconfinement

    Zahra Fakhraai

    Zahra_Fakhraai

  • Chuanyi Wang
  • Environmental chemistry scientist

    silver nanoparticles and other nanoparticles. Discarded into the aquatic environment via waste or intentional release, the silver nanoparticles can lead

    Chuanyi Wang

    Chuanyi Wang

    Chuanyi_Wang

  • Nanochemistry
  • Combination of chemistry and nanoscience

    of plasmonics, photonics, and quantum communications. While there are many methods in assembling nanoparticles array, especially gold nanoparticles, they

    Nanochemistry

    Nanochemistry

    Nanochemistry

  • Gold cluster
  • of gold nanoparticle as building blocks for devices for data storage, ultrafast switching, and gas sensors. Whilst plasmonic gold nanoparticles only exhibit

    Gold cluster

    Gold_cluster

  • Laura Fabris
  • Materials scientist

    Faculty Research Award in 2012. Fabris research concentrates on plasmonic nanoparticles and their synthesis, functionalization, characterization and application

    Laura Fabris

    Laura_Fabris

  • Multi-parametric surface plasmon resonance
  • anti-reflective coatings, antimicrobial surfaces, self-cleaning glass, plasmonic metamaterials, electro-switching surfaces, layer-by-layer assembly, and

    Multi-parametric surface plasmon resonance

    Multi-parametric_surface_plasmon_resonance

  • Eugenia Kumacheva
  • Canadian chemist (born 1955)

    of Chiral Nematic Films of Cellulose Nanocrystals Loaded with Plasmonic Nanoparticles". ACS Nano. 9 (10): 10377–10385. doi:10.1021/acsnano.5b04552. ISSN 1936-0851

    Eugenia Kumacheva

    Eugenia Kumacheva

    Eugenia_Kumacheva

  • Nanolaser
  • Laser that has nanoscale dimensions

    can modify the surface of metal nanoparticles and impact the surface recombination velocity of gain medium of a plasmonic nanolaser, which contributes to

    Nanolaser

    Nanolaser

  • Janina Kneipp
  • German scientist

    Processes Using Plasmonics. As part of her work, Kneipp developed multi-functional nanosensors, which can be combined with plasmonic nanoparticles and provide

    Janina Kneipp

    Janina_Kneipp

  • Surface plasmon
  • Coherent delocalized electron oscillations

    Multi-parametric surface plasmon resonance Plasma oscillation Plasmonic lens Plasmonics (journal) Spinplasmonics Surface plasmon resonance microscopy

    Surface plasmon

    Surface plasmon

    Surface_plasmon

  • Brian T. Cunningham
  • American engineer, researcher and academic

    concept for coupling electromagnetic energy from the macro scale into plasmonic nanoantennas, the Cunningham group was the first to report a new form

    Brian T. Cunningham

    Brian_T._Cunningham

  • Ki Tae Nam
  • South Korean material scientist

    Nature study demonstrating amino-acid-directed synthesis of plasmonic gold nanoparticles with tailored chiral optical properties. In 2022, he developed

    Ki Tae Nam

    Ki Tae Nam

    Ki_Tae_Nam

  • ISSPIC
  • visibility of cluster science to neighboring areas of nanoparticle catalysis, interface chemistry, plasmonics, biological systems, and research on climate change

    ISSPIC

    ISSPIC

  • Vivek Polshettiwar
  • Indian chemist

    Chemical Research, 2022, 55, 1395–1410. Pt-Doped Ru Nanoparticles Loaded on ‘Black Gold’ Plasmonic Nanoreactors as Air Stable Reduction Catalysts. Gunjan

    Vivek Polshettiwar

    Vivek Polshettiwar

    Vivek_Polshettiwar

  • Optical microcavity
  • Structure formed by reflecting faces

    metal nanoparticles – which support confined surface plasmon states – have been termed 'plasmonic molecules." Finally, hybrid photonic-plasmonic (or opto-plasmonic)

    Optical microcavity

    Optical microcavity

    Optical_microcavity

  • Nanophotonic resonator
  • Optical Cavity

    Typical geometries include nanoparticle-on-mirror cavities, bowtie antennas, metallic nanogaps, patch antennas and plasmonic whispering-gallery cavities

    Nanophotonic resonator

    Nanophotonic_resonator

  • Photocatalysis
  • Acceleration of a photoreaction in the presence of a catalyst

    Photocatalysts belong to three main groups; heterogeneous, homogeneous, and plasmonic antenna-reactor catalysts. The use of each catalysts depends on the preferred

    Photocatalysis

    Photocatalysis

    Photocatalysis

  • CytoViva
  • Scientific imaging and instrumentation company

    Jinhui Shen; Thevenot, P.; Tong Cai; Zhibing Hu; Liping Tang Multimodal Plasmonic Nanosensor for the Detection of Pathogenic Bacteria. Li-Lin Tay, John

    CytoViva

    CytoViva

  • Nanoruler
  • complicated procedures, such as manipulating the properties of light (plasmonic) or DNA to determine distances. At the nanoscale, materials and devices

    Nanoruler

    Nanoruler

  • Bridget Carragher
  • American physicist

    (August 2015). "Multiplexed TEM Specimen Preparation and Analysis of Plasmonic Nanoparticles". Microscopy and Microanalysis. 21 (4): 1017–1025. Bibcode:2015MiMic

    Bridget Carragher

    Bridget Carragher

    Bridget_Carragher

  • April–June 2020 in science
  • Overview of the events of 2020 in science

    SARS-CoV-2 Mediated by N Gene Targeted Antisense Oligonucleotide Capped Plasmonic Nanoparticles". ACS Nano. 14 (6): 7617–7627. Bibcode:2020ACSNa..14.7617M. doi:10

    April–June 2020 in science

    April–June_2020_in_science

  • Energy applications of nanotechnology
  • example, by improving current collection in amorphous silicon devices, plasmonic enhancement in dye-sensitized solar cells, and improved light trapping

    Energy applications of nanotechnology

    Energy_applications_of_nanotechnology

  • Bose–Einstein condensation of quasiparticles
  • Occurrence in collective excitations

    exciton energy semiconductor device and in a polymer microcavity. BECs of plasmonic excitations (surface lattice resonances, SLRs) and their dye-coupled quasiparticles

    Bose–Einstein condensation of quasiparticles

    Bose–Einstein_condensation_of_quasiparticles

  • 5D optical data storage
  • Computer memory type used for data preservation

    to modulate data. By introducing gold or silver nanoparticles embedded in the material, their plasmonic properties can be exploited. According to the University

    5D optical data storage

    5D optical data storage

    5D_optical_data_storage

  • Harry Atwater
  • Professor of applied physics / materials science

    Atwater was an early pioneer in nanophotonics and plasmonics; he gave the name to the field of plasmonics in 2001.  Atwater is a Member of US National Academy

    Harry Atwater

    Harry Atwater

    Harry_Atwater

  • Jennifer Dionne
  • American physicist and materials scientist

    Si field effect plasmonic modulator Quantum converting nanoparticles as electrical field sensors Method and structure for plasmonic optical trapping

    Jennifer Dionne

    Jennifer Dionne

    Jennifer_Dionne

  • Photonic crystal sensor
  • Kind of nanostructure

    such structures ranging from inorganic, organic as well as plasmonic metal nanoparticles makes these structures highly customizable and versatile. In

    Photonic crystal sensor

    Photonic_crystal_sensor

  • Surface plasmon resonance
  • Physical phenomenon of electron resonance

    wavelength. This field is highly localized at the nanoparticle and decays rapidly away from the nanoparticle/dielectric interface into the dielectric background

    Surface plasmon resonance

    Surface plasmon resonance

    Surface_plasmon_resonance

  • Photonic topological insulator
  • Mostafa; Yousefi, Leila (2019). "Topological plasmonic edge states in a planar array of metallic nanoparticles". Nanophotonics. 8 (5): 799–806. Bibcode:2019Nanop

    Photonic topological insulator

    Photonic_topological_insulator

  • Luke Pyungse Lee
  • American bioengineer (born 1959)

    P. (2009-09-06). "Selective and sensitive detection of metal ions by plasmonic resonance energy transfer-based nanospectroscopy". Nature Nanotechnology

    Luke Pyungse Lee

    Luke_Pyungse_Lee

  • Dynamic toroidal dipole
  • is now massively influencing research in metamaterials, nanoparticles, plasmonics, sensors, lasers and spectroscopy Note: The terminology of dynamic "electric"

    Dynamic toroidal dipole

    Dynamic toroidal dipole

    Dynamic_toroidal_dipole

  • Nanosensor
  • Extremely small sensors

    determined as the sensor signal. Other examples include electromagnetic or plasmonic nanosensors, spectroscopic nanosensors such as surface-enhanced Raman

    Nanosensor

    Nanosensor

  • Younan Xia
  • Chinese-American nanomedicine researcher

    shape-controlled synthesis of colloidal nanocrystals and their applications in plasmonics, spectroscopy, heterogeneous catalysis, and electrocatalysis, invention

    Younan Xia

    Younan Xia

    Younan_Xia

  • Nanobottle
  • two-dimensional arrays of metallic nanobottles may find applications in plasmonic devices, whose resonant frequency depends on the nanobottle geometry.

    Nanobottle

    Nanobottle

    Nanobottle

  • Hybrid solar cell
  • photoactive layer can be created by mixing nanoparticles into a polymer matrix. Solar devices based on polymer-nanoparticle composites most resemble polymer solar

    Hybrid solar cell

    Hybrid_solar_cell

  • Maria Ibáñez
  • Spanish materials scientist and academic

    Gil; et al. (6 May 2013). "CuTe nanocrystals: shape and size control, plasmonic properties, and use as SERS probes and photothermal agents". Journal of

    Maria Ibáñez

    Maria_Ibáñez

  • Luis Liz-Marzán
  • Spanish chemist specializing in nanoscience (born 1965)

    chemist who has worked in nanoscience, specialized in the synthesis of nanoparticles with special optical properties and their applications in biomedicine

    Luis Liz-Marzán

    Luis_Liz-Marzán

  • Electrochromic device
  • Controls optical properties on application of voltage

    than that of regular WO3 since new ligand formation promotes plasmonic tuning in nanoparticle electrochemistry. They can also produce less glare than fritted

    Electrochromic device

    Electrochromic_device

  • Applications of nanotechnology
  • Uses for technology on very small scales

    grant access to less physically accessible areas of the body. Because nanoparticles and nanodevices are highly versatile through modification of their physiochemical

    Applications of nanotechnology

    Applications_of_nanotechnology

  • Hyper–Rayleigh scattering
  • Optical phenomenon

    light-scattering materials; including molecules, plasmonic metal nanoparticles and semiconductor nanoparticles. Hyper Rayleigh scattering optical activity

    Hyper–Rayleigh scattering

    Hyper–Rayleigh scattering

    Hyper–Rayleigh_scattering

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