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Trapping plasmonic nanoparticles with MHz electric fields
https://www.np.phy.cam.ac.uk/files/apl22_mhzdielectrophoresis.pdf18 May 2022: The electric field distribution is analytically approximatedas that from two symmetrical hyperbolic 2D conductors,24 allowingthe total potential to be extracted for different separations of NPs[Figs. ... Mater. 24, OP305 (2012). Applied Physics Letters -
Enhanced excitation and readout of plasmonic cavity modes in NPoM via …
https://www.np.phy.cam.ac.uk/files/optexp22_npomwaveguidesims.pdf28 Jan 2022: Phys. Chem. Lett. 9(24), 7146–7151 (2018). 16. F. J. Rodríguez-Fortuño, A. ... 24. N. Turk, A. Raza, P. Wuytens, H. Demol, M. Van Daele, C. -
Optical suppression of energy barriers in single molecule-metal…
https://www.np.phy.cam.ac.uk/files/sciadv22_optpico.pdf27 Jun 2022: 8, eabp9285 (2022) 24 June 2022. S C I E N C E A D V A N C E S | R E S E A R C H A R ... 411, 186–202 (1998). 24. J. Takano, O. Takai, Y. Kogure, M. -
Mid-infrared-perturbed molecular vibrational signatures in plasmonic…
https://www.np.phy.cam.ac.uk/files/lsa22_irperturbednpom.pdf19 Jan 2022: modified by irradiating with MIR light across a widespectral bandwidth from 5.8 to 12 μm (24–51 THz,800–1700 cm–1). ... ACS Photonics 7,1676–1688 (2020). 24. Neuman, T. et al. Quantum description of surface-enhanced resonant Ramanscattering -
Picocavities: a Primer
https://www.np.phy.cam.ac.uk/files/nanolett22_picocavprimer.pdf7 Jul 2022: 24. Different dynamics control the wandering of picocavity SERSlines of 4 cm1/s. ... Chem. Lett. 2018, 9 (24),71467151.(32) Peng, J.; Jeong, H.-H.; Lin, Q.; Cormier, S.; Liang, H.-L.; DeVolder, M. -
Vibrational Stark Effects: Ionic Influence on Local Fields
https://www.np.phy.cam.ac.uk/files/jpcl22_vseonmbn.pdf30 May 2022: Received: April 11, 2022Accepted: May 24, 2022. Letterpubs.acs.org/JPCL. XXXX The Authors. ... previous works report experimental changes to ν(C=C) withpotential.6,15,19,24 Previous authors working with MBN pass nocomment on this mode, even when -
Nanophotonics 2022; aop Research Article Marie S. Rider*, Rakesh ...
https://www.np.phy.cam.ac.uk/files/nanophotonics22_gratingmodes.pdf14 Aug 2022: c†e. i((kxq)x), (24). where c†,kx, c,kx are the bosonic creation and annihilationoperators for the 𝜔+(kx) and 𝜔(kx) SPs, respectively. ... Rev. B, vol. 103, no. 24, p. L241407, 2021. SupplementaryMaterial: -
Collective Mid-Infrared Vibrations in Surface-Enhanced Raman…
https://www.np.phy.cam.ac.uk/files/nanolett22_collectiveir.pdf29 Aug 2022: Langmuir 1996, 12 (21), 50835086.(24) Nielsen, J. U.; Esplandiu, M. J.; Kolb, D. ... Environ. Sci.Technol. 2006, 40 (24), 77107716.(34) Wang, R.; Li, J.; Rigor, J.; Large, N.; El-Khoury, P. -
Fingerprinting the Hidden Facets of Plasmonic Nanocavities
https://www.np.phy.cam.ac.uk/files/acsphotonics22_fingerprintingfacets.pdf27 Jul 2022: The antenna frequency regime isconsistent with previous analytical models analyzing theNPoM in terms of its equivalent circuit (Figure 3e)24 (seeSupporting Information, Figure S5). ... solution in anhydrous ethanol (Sigma-Aldrich, <0.003% H2O) for 24 h, -
Giant mid-IR resonant coupling to molecular vibrations in sub-nm gaps …
https://www.np.phy.cam.ac.uk/files/lsa22_midirmultilayeragg.pdf23 Sep 2022: Chem.Phys. Lett. 452, 115–119 (2008). 24. Baia, M., Toderas, F., Baia, L., Maniu, D. & -
Nanofluidic Traps by Two-Photon Fabrication for Extended Detection of …
https://www.np.phy.cam.ac.uk/files/acsnanomat22_nanofluidics.pdf4 Feb 2022: Received: November 2, 2021Accepted: November 24, 2021. Articlewww.acsanm.org. XXXX The Authors. ... all aqueousenvironment.24 Mojarad and Krishnan25 demonstrated trap-ping of colloids and gold nanoparticles in nanofluidic silicadevices, which allowed -
In-Situ Spectro-Electrochemistry of Conductive Polymers Using…
https://www.np.phy.cam.ac.uk/files/acsnano22_echempolymers.pdf5 Dec 2022: C 2017, 121 (24), 1307813083.(13) Wright, D.; Lin, Q.; Berta, D.; Földes, T.; Wagner, A.; Griffiths,J.; Readman, C.; Rosta, E.; Reisner, E.; Baumberg, J. ... J. Electroanal. Chem.2012, 669, 7381.(24) Hillman, A. R.; Daisley, S. J.; Bruckenstein, S. -
Light‐Actuated Anisotropic Microactuators from CNT/Hydrogel…
https://www.np.phy.cam.ac.uk/files/advoptmat22_pnipam_cnt_actuators.pdf11 May 2022: Commun. 2013, 4, 1586. [24] S. Fusco, M. S. Sakar, S. -
Tracking water dimers in ambient nanocapsules by vibrational…
https://www.np.phy.cam.ac.uk/files/pnas22_waterdimersincb.pdf2 Dec 2022: Angew. Chem. Int. Ed. 53, 11158–11171 (2014). 24. D. Bardelang et al., Cucurbit[n]urils (n= 5–8): A comprehensive solid state study. -
Elucidating the Role of Antisolvents on the Surface Chemistry and…
https://www.np.phy.cam.ac.uk/files/jacs22_perovskiteraman.pdf28 Jun 2022: are. publ. ishe. d ar. ticle. s. OA) or oleylamine (OAm)) and dissolved in “good” solvents,such as toluene (εr = 2.24; relative polarity = 0.099), which aretypically non-polar and -
Hollow-core optical fibre sensors for operando Raman spectroscopy…
https://www.np.phy.cam.ac.uk/files/naturecomm22_batteryholeyfibre.pdf29 Mar 2022: To ensure complete sample exchange inthe fibre-core, a 24 µL volume micro-sample (ca. -
Self-Assembled Liposomes Enhance Electron Transfer for Efficient…
https://www.np.phy.cam.ac.uk/files/jacs22_liposomeco2.pdf10 Oct 2022: 20,23,33 andporphyrin21,24 ligands (hereinafter denoted as T and P,respectively), with no reports yet implementing them in self-assembled photocatalytic CO2 reduction liposome systems. ... transition-phase temperature of 24 C, and is used to form thebulk -
Microcavity-like exciton-polaritons can be the primary…
https://www.np.phy.cam.ac.uk/files/naturecomm22_excitonpropagation.pdf11 Feb 2022: ARTICLE. Microcavity-like exciton-polaritons can be theprimary photoexcitation in bare organicsemiconductorsRaj Pandya1, Richard Y. S. Chen1, Qifei Gu1, Jooyoung Sung1, Christoph Schnedermann 1,. Oluwafemi S. Ojambati 1, Rohit Chikkaraddy 1, Jeffrey -
Molecular Optomechanics Approach to Surface-Enhanced Raman Scattering
https://www.np.phy.cam.ac.uk/files/accchemres22_molecularoptomechanics.pdf12 Jul 2022: d) Comparison of optomechanicalcoupling g0 and vibrational frequency ωvib characterizing different typesof optomechanical systems,24 including SERS configurations. ... strong coupling,24,52 g0 κ.
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