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  2. Detecting mid-infrared light by molecular frequency upconversion in…

    https://www.np.phy.cam.ac.uk/files/science21_upconversion.pdf
    3 Dec 2021: Express 24, 3329–3364 (2016).20. R. Chikkaraddy, A. Xomalis, L. A. Jakob, J. ... Rev. X 8, 011016 (2018).23. F. Benz et al., Science 354, 726–729 (2016).24.
  3. Large-scale fabrication of structurally coloured cellulose…

    https://www.np.phy.cam.ac.uk/files/naturemat21_r2rcellulosev.pdf
    12 Nov 2021: d at. 60. C in. 20. min. 2.24 4.36 6.44. a b. ... J. Pulp Pap. Sci. 24, 146–149 (1998). 21. Gicquel, E., Bras, J., Rey, C. &
  4. Video Speed Switching of Plasmonic Structural Colors with High…

    https://www.np.phy.cam.ac.uk/files/advmat21_echromickunli.pdf
    21 Oct 2021: The spectral changes originate essentially only from the polymer switching, with contributions from surface effects[24] found to be negligible (Figure S12, Supporting Information). ... 24] A. B. Dahlin, R. Zahn, J. Voros, Nanoscale 2012, 4, 2339.[25] J.
  5. Resolving sub-angstrom ambient motion through reconstruction from…

    https://www.np.phy.cam.ac.uk/files/naturecomm21_bptcnpicocavities.pdf
    22 Nov 2021: We emphasise that such transient SERS peaksfrom adatom atomic features are pervasive in all nanogapnanocontructs19,24. ... 4,443–455 (2012). 24. Konishi, T. et al. Single molecule dynamics at a mechanically controllablebreak junction in solution at
  6. Plasmon-Induced Trap State Emission from Single Quantum Dots

    https://www.np.phy.cam.ac.uk/files/documents/PRL21_QDinNPoM.pdf
    23 Aug 2021: to be distinguished. [24] The large surface:volume ratio ofQDs can allow dense surface traps to emit as brightly as theband-edge excitons [22,25,26].While trap emission was initially ... Am.Chem. Soc. 134, 3804 (2012). [24] L. Biadala, B. Siebers, Y.
  7. Anisotropic Carbon Nanotube Structures with High Aspect Ratio…

    https://www.np.phy.cam.ac.uk/files/applnanomat21_cntbatterypores.pdf
    21 Oct 2021: Mater. 2012, 24, 16281674.(11) Pilgrim, G. A.; Leadbetter, J. W.; Qiu, F.; Siitonen, A. ... Opt. Express 2016, 24, No. 3663.(47) Karousis, N.; Tagmatarchis, N.; Tasis, D.
  8. Locating Single-Atom Optical Picocavities Using…

    https://www.np.phy.cam.ac.uk/files/acsphotonics21_2wlsers.pdf
    5 Oct 2021: 22. 24. 41. 22. 2 4 42. ψ λ δα ψ λ δ. ... J. Phys. Chem. Lett. 2016, 7,22642269.(24) Grzelczak, M.; Pérez-Juste, J.; Mulvaney, P.; Liz-Marzán, L.
  9. SERSbot: Revealing the Details of SERS Multianalyte Sensing Using…

    https://www.np.phy.cam.ac.uk/files/acssensors21_sersrobot.pdf
    10 Dec 2021: For the SERSbot, a total of eight fresh CB[5]:AuNP sampleswere measured on different days (24 days) using the sameAuNP stock suspension (Figure 2b, left). ... MV:CB7) = 7] with MV2+/d8-MV2+.24,25 Theprobed nanogaps thus compete with CB[7] in
  10. Quantum Tunneling Induced Optical Rectification and Plasmon-Enhanced…

    https://www.np.phy.cam.ac.uk/files/acsnano21_photocurrent.pdf
    8 Sep 2021: A nonzero I″ can originate from local nanoscaleasymmetries within the junction area, such as roughnessfeatures or protrusions.23,24,22 These asymmetries give rise topotential barriers of slightly different shapes in
  11. Plasmon-Induced Trap State Emission from Single Quantum Dots

    https://www.np.phy.cam.ac.uk/sites/www.np.phy.cam.ac.uk/files/documents/PRL21_QDinNPoM.pdf
    23 Aug 2021: to be distinguished. [24] The large surface:volume ratio ofQDs can allow dense surface traps to emit as brightly as theband-edge excitons [22,25,26].While trap emission was initially ... Am.Chem. Soc. 134, 3804 (2012). [24] L. Biadala, B. Siebers, Y.
  12. Materials 2021, 14, 5298. https://doi.org/10.3390/ma14185298…

    https://www.np.phy.cam.ac.uk/files/materials21_opalshear2.pdf
    14 Sep 2021: smart materials [16–24]. These mass-produced particles, constructed of rigid polystyrene. sphere cores with a grated-on softer ethyl-acrylate shell, may be permanently shear-as-. ... 75 11.6 (0.1) 142.0 0.05 52.5 2.6 (0.1) 37.5 24.9 (1.1).
  13. Mechanistic study of an immobilized molecular electrocatalyst by in…

    https://www.np.phy.cam.ac.uk/sites/www.np.phy.cam.ac.uk/files/documents/NatCatalysis21_bisNiS.pdf
    23 Aug 2021: Electrode designs such as confined environments22 and layered geometries23,24 advance catalysis by enhancing nanoscale mass transport and elec-trode dynamics compared to conventional electrodes. ... ACS Sustain. Chem. Eng. 5, 4771–4777 (2017). 24. Yang,
  14. Interfering Plasmons in Coupled Nanoresonators to Boost Light…

    https://www.np.phy.cam.ac.uk/sites/www.np.phy.cam.ac.uk/files/documents/NanoLett21_NPoR.pdf
    23 Aug 2021: Nat. Commun. 2019, 10, 4476.(24) Rodríguez-Cantó, P. J.; Martínez-Marco, M.; Rodríguez-Fortuño, F.
  15. Accessing Plasmonic Hotspots Using Nanoparticle-on-Foil Constructs

    https://www.np.phy.cam.ac.uk/files/acsphotonics21_npof_d.pdf
    23 Aug 2021: While the thinnest metalsheets have reached t 3 nm,2123 it has been possible usingTMD or molecular spacers to routinely achieve d < 1 nm gaps.24. ... J. Plasmonics in Atomically Thin Crystalline SilverFilms. ACS Nano 2019, 13 (7), 77717779.(24) Dias, E.
  16. Mark Stockman: Evangelist for Plasmonics

    https://www.np.phy.cam.ac.uk/files/documents/ACSphotonics21_Stockman.pdf
    23 Aug 2021: For instance, the selection rules ofemitters are completely changed in such nanogaps.24,25.
  17. Science Journals — AAAS

    https://www.np.phy.cam.ac.uk/sites/www.np.phy.cam.ac.uk/files/documents/ScienceAdv21_singlemoleculepH.pdf
    23 Aug 2021: It can therefore serve as a powerful. technique for in situ in operando tracking of interfacial chemical reactions (24–27). ... Nat. Nanotechnol. 15, 207–211 (2020). 24. E. A. Sprague-Klein, B. Negru, L.
  18. Nanoparticle surfactants for kinetically arrested photoactive…

    https://www.np.phy.cam.ac.uk/files/naturenano21_cbqdnp.pdf
    21 Oct 2021: 5)24. Stable colloids of 1:CB[7] (several weeks) are observed when the CB[7]:1 ratio NCB[7]/N1 = χ < 18 (where NCB[7] is the number of ... 5c and Supplementary Figs. 24–39). On the removal of pump light, the system is switched from an
  19. Mechanistic study of an immobilized molecular electrocatalyst by in…

    https://www.np.phy.cam.ac.uk/files/documents/NatCatalysis21_bisNiS.pdf
    23 Aug 2021: Electrode designs such as confined environments22 and layered geometries23,24 advance catalysis by enhancing nanoscale mass transport and elec-trode dynamics compared to conventional electrodes. ... ACS Sustain. Chem. Eng. 5, 4771–4777 (2017). 24. Yang,
  20. Molecular Screening for Terahertz Detection with…

    https://www.np.phy.cam.ac.uk/files/physrevx21_thzmolecules.pdf
    22 Nov 2021: accessing vibrational spectroscopic properties in molecular-dynamics calculations [22,23], including methods specifi-cally for SERS applications [24]. ... 0.9–5.4 THz) and600–800 cm1 (18–24 THz), where transitions are moredense—and apply peak
  21. Mark Stockman: Evangelist for Plasmonics

    https://www.np.phy.cam.ac.uk/sites/www.np.phy.cam.ac.uk/files/documents/ACSphotonics21_Stockman.pdf
    23 Aug 2021: For instance, the selection rules ofemitters are completely changed in such nanogaps.24,25.

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