Search Results - "Valev, Ventsislav K."

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  1. 1

    Raman Techniques: Fundamentals and Frontiers by Jones, Robin R., Hooper, David C., Zhang, Liwu, Wolverson, Daniel, Valev, Ventsislav K.

    Published in Nanoscale research letters (12-07-2019)
    “…Driven by applications in chemical sensing, biological imaging and material characterisation, Raman spectroscopies are attracting growing interest from a…”
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  2. 2

    Chirality and Chiroptical Effects in Plasmonic Nanostructures: Fundamentals, Recent Progress, and Outlook by Valev, Ventsislav K., Baumberg, Jeremy J., Sibilia, Concita, Verbiest, Thierry

    Published in Advanced materials (Weinheim) (14-05-2013)
    “…Strong chiroptical effects recently reported result from the interaction of light with chiral plasmonic nanostructures. Such nanostructures can be used to…”
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  3. 3

    Chirality and Chiroptical Effects in Metal Nanostructures: Fundamentals and Current Trends by Collins, Joel T., Kuppe, Christian, Hooper, David C., Sibilia, Concita, Centini, Marco, Valev, Ventsislav K.

    Published in Advanced optical materials (16-08-2017)
    “…Throughout the 19th and 20th century, chirality has mostly been associated with chemistry. However, while chirality can be very useful for understanding…”
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  4. 4

    Second Harmonic Spectroscopy of Surface Lattice Resonances by Hooper, David C, Kuppe, Christian, Wang, Danqing, Wang, Weijia, Guan, Jun, Odom, Teri W, Valev, Ventsislav K

    Published in Nano letters (09-01-2019)
    “…Because of their large figures of merit, surface lattice resonances (SLRs) in metal nanoparticle arrays are very promising for chemical and biomolecular…”
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  5. 5

    Light-induced actuating nanotransducers by Ding, Tao, Valev, Ventsislav K., Salmon, Andrew R., Forman, Chris J., Smoukov, Stoyan K., Scherman, Oren A., Frenkel, Daan, Baumberg, Jeremy J.

    “…Nanoactuators and nanomachines have long been sought after, but key bottlenecks remain. Forces at submicrometer scales are weak and slow, control is hard to…”
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  6. 6

    “Hot” in Plasmonics: Temperature‐Related Concepts and Applications of Metal Nanostructures by Kuppe, Christian, Rusimova, Kristina R., Ohnoutek, Lukas, Slavov, Dimitar, Valev, Ventsislav K.

    Published in Advanced optical materials (01-01-2020)
    “…Recent advances in nonlinear optics, hot electrons for renewable energy (e.g., solar cells and water‐splitting), acousto‐optics, nanometalworking,…”
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  7. 7

    Surface-Enhanced Raman Spectroscopy: A Facile and Rapid Method for the Chemical Component Study of Individual Atmospheric Aerosol by Fu, Yu, Kuppe, Christian, Valev, Ventsislav K, Fu, Hongbo, Zhang, Liwu, Chen, Jianmin

    Published in Environmental science & technology (06-06-2017)
    “…A simple and rapid method for detecting chemical components of individual aerosol particles on Klarite substrate with surface-enhanced Raman spectroscopy…”
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  8. 8

    Plasmonic Enhancement in BiVO4 Photonic Crystals for Efficient Water Splitting by Zhang, Liwu, Lin, Chia-Yu, Valev, Ventsislav K., Reisner, Erwin, Steiner, Ullrich, Baumberg, Jeremy J.

    “…Photo‐electrochemical water splitting is a very promising and environmentally friendly route for the conversion of solar energy into hydrogen. However, the…”
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  9. 9

    Second-Harmonic Generation Optical Rotation Solely Attributable to Chirality in Plasmonic Metasurfaces by Collins, Joel T, Hooper, David C, Mark, Andrew G, Kuppe, Christian, Valev, Ventsislav K

    Published in ACS nano (26-06-2018)
    “…Chiral plasmonic nanostructures, those lacking mirror symmetry, can be designed to manipulate the polarization of incident light resulting in chiroptical…”
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  10. 10

    Klarite as a label-free SERS-based assay: a promising approach for atmospheric bioaerosol detection by Tahir, Muhammad Ali, Zhang, Xinlian, Cheng, Hanyun, Xu, Dong, Feng, Yiqing, Sui, Guodong, Fu, Hongbo, Valev, Ventsislav K, Zhang, Liwu, Chen, Jianmin

    Published in Analyst (London) (01-01-2020)
    “…Detecting atmospheric bioaerosols in a quantitative way is highly desirable for public health and safety. This work demonstrates that surface-enhanced Raman…”
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  11. 11

    Circular Dichroism and Isotropy – Polarity Reversal of Ellipticity in Molecular Films of 1,1’‐Bi‐2‐Naphtol by von Weber, Alexander, Hooper, David C., Jakob, Matthias, Valev, Ventsislav K., Kartouzian, Aras, Heiz, Ueli

    Published in Chemphyschem (07-01-2019)
    “…We have studied the circular dichroism (CD), in the ultraviolet and visible regions, of the transparent, chiral molecule 1,1’‐Bi‐2‐naphtol (BINOL) in 1.5 μm…”
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  12. 12

    Magnetic-plasmonic nanoparticles for the life sciences: calculated optical properties of hybrid structures by Brullot, Ward, MSc, Valev, Ventsislav K., PhD, Verbiest, Thierry, PhD

    Published in Nanomedicine (01-07-2012)
    “…Abstract Magnetic-plasmonic nanoparticles, combining magnetic and plasmonic components, are promising structures for use in life sciences. Optical properties…”
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  13. 13

    Mapping Magnetic Near-Field Distributions of Plasmonic Nanoantennas by Denkova, Denitza, Verellen, Niels, Silhanek, Alejandro V, Valev, Ventsislav K, Dorpe, Pol Van, Moshchalkov, Victor V

    Published in ACS nano (23-04-2013)
    “…We present direct experimental mapping of the lateral magnetic near-field distribution in plasmonic nanoantennas using aperture scanning near-field optical…”
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  14. 14

    Adsorption Kinetics of Ultrathin Polymer Films in the Melt Probed by Dielectric Spectroscopy and Second-Harmonic Generation by Rotella, Cinzia, Napolitano, Simone, Vandendriessche, Stefaan, Valev, Ventsislav K, Verbiest, Thierry, Larkowska, Maria, Kucharski, Stanislaw, Wübbenhorst, Michael

    Published in Langmuir (15-11-2011)
    “…We studied the adsorption kinetics of supported ultrathin films of dye-labeled polystyrene (l-PS) by combining dielectric spectroscopy (DS) and the…”
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  15. 15

    Atomic dispensers for thermoplasmonic control of alkali vapor pressure in quantum optical applications by Rusimova, Kristina R., Slavov, Dimitar, Pradaux-Caggiano, Fabienne, Collins, Joel T., Gordeev, Sergey N., Carbery, David R., Wadsworth, William J., Mosley, Peter J., Valev, Ventsislav K.

    Published in Nature communications (24-05-2019)
    “…Alkali metal vapors enable access to single electron systems, suitable for demonstrating fundamental light-matter interactions and promising for quantum logic…”
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  16. 16

    Plasmons Reveal the Direction of Magnetization in Nickel Nanostructures by Valev, Ventsislav K, Silhanek, Alejandro V, Gillijns, Werner, Jeyaram, Yogesh, Paddubrouskaya, Hanna, Volodin, Alexander, Biris, Claudiu G, Panoiu, Nicolae C, De Clercq, Ben, Ameloot, Marcel, Aktsipetrov, Oleg A, Moshchalkov, Victor V, Verbiest, Thierry

    Published in ACS nano (25-01-2011)
    “…We have applied the surface-sensitive nonlinear optical technique of magnetization-induced second harmonic generation (MSHG) to plasmonic, magnetic…”
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  17. 17

    Enantiomorphing Chiral Plasmonic Nanostructures: A Counterintuitive Sign Reversal of the Nonlinear Circular Dichroism by Collins, Joel T., Zheng, Xuezhi, Braz, Nuno V. S., Slenders, Eli, Zu, Shuai, Vandenbosch, Guy A. E., Moshchalkov, Victor V., Fang, Zheyu, Ameloot, Marcel, Warburton, Paul A., Valev, Ventsislav K.

    Published in Advanced optical materials (18-07-2018)
    “…Plasmonic nanostructures have demonstrated a remarkable ability to control light in ways never observed in nature, as the optical response is closely linked to…”
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  19. 19

    U-Shaped Switches for Optical Information Processing at the Nanoscale by Valev, Ventsislav K., Silhanek, Alejandro V., De Clercq, Ben, Gillijns, Werner, Jeyaram, Yogesh, Zheng, Xuezhi, Volskiy, Vladimir, Aktsipetrov, Oleg A., Vandenbosch, Guy A. E., Ameloot, Marcel, Moshchalkov, Victor V., Verbiest, Thierry

    “…Information is transmitted from a beam of light to the plasmonic outputs of U‐shaped nanostructures via four distinct logical states, depending on the…”
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  20. 20

    Plasmonic‐Pyroelectric Materials and Structures by Wang, Qingping, Bowen, Chris R., Valev, Ventsislav K.

    Published in Advanced functional materials (01-05-2024)
    “…With the growing global energy crisis, research into new energy materials that can potentially transfer heat into electricity has become a worldwide…”
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