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Detecting mid-infrared light by molecular frequency upconversion in…
https://www.np.phy.cam.ac.uk/files/science21_upconversion.pdf3 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. -
Large-scale fabrication of structurally coloured cellulose…
https://www.np.phy.cam.ac.uk/files/naturemat21_r2rcellulosev.pdf12 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. & -
Video Speed Switching of Plasmonic Structural Colors with High…
https://www.np.phy.cam.ac.uk/files/advmat21_echromickunli.pdf21 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. -
Resolving sub-angstrom ambient motion through reconstruction from…
https://www.np.phy.cam.ac.uk/files/naturecomm21_bptcnpicocavities.pdf22 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 -
Plasmon-Induced Trap State Emission from Single Quantum Dots
https://www.np.phy.cam.ac.uk/files/documents/PRL21_QDinNPoM.pdf23 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. -
Anisotropic Carbon Nanotube Structures with High Aspect Ratio…
https://www.np.phy.cam.ac.uk/files/applnanomat21_cntbatterypores.pdf21 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. -
Locating Single-Atom Optical Picocavities Using…
https://www.np.phy.cam.ac.uk/files/acsphotonics21_2wlsers.pdf5 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. -
SERSbot: Revealing the Details of SERS Multianalyte Sensing Using…
https://www.np.phy.cam.ac.uk/files/acssensors21_sersrobot.pdf10 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 -
Quantum Tunneling Induced Optical Rectification and Plasmon-Enhanced…
https://www.np.phy.cam.ac.uk/files/acsnano21_photocurrent.pdf8 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 -
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.pdf23 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.
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