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54 Publications
2025 | Published | Journal Article | IST-REx-ID: 19026 |
Puglia D, Odessey RH, Burns P, Luhmann N, Schmid S, Higginbotham AP. Room temperature, cavity-free capacitive strong coupling to mechanical motion. Nano Letters. 2025;25(7):2749-2755. doi:10.1021/acs.nanolett.4c05796
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2025 | Published | Journal Article | IST-REx-ID: 20221 |
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Shi W, Wang M, Venkataraman L, Tovar JD. Single-molecule conductance through hybrid radially and linearly π-conjugated macromolecules reveals an unusual intramolecular π-interaction. Nano Letters. 2025;25(31):12101-12106. doi:10.1021/acs.nanolett.5c03693
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2025 | Epub ahead of print | Journal Article | IST-REx-ID: 20331 |
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York E, Stone I, Shi W, Roy X, Venkataraman L. Tuning conductance in BODIPY-based single-molecule junctions. Nano Letters. 2025. doi:10.1021/acs.nanolett.5c03764
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2025 | Published | Journal Article | IST-REx-ID: 20528
Lee W, Prindle CR, Shi W, Louie S, Steigerwald ML, Venkataraman L. Formation of metallocene single-molecule junctions via metal–metal bonds. Nano Letters. 2025;25(8):3316-3322. doi:10.1021/acs.nanolett.4c06450
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2024 | Published | Journal Article | IST-REx-ID: 17857
Dalmieda J, Shi W, Li L, Venkataraman L. Solvent-mediated modulation of the Au–S bond in dithiol molecular junctions. Nano Letters. 2024;24(2):703-707. doi:10.1021/acs.nanolett.3c04058
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2024 | Published | Journal Article | IST-REx-ID: 17859
Shi W, Greenwald JE, Venkataraman L. Impact of solvent electrostatic environment on molecular junctions probed via electrochemical impedance spectroscopy. Nano Letters. 2024;24(30):9283-9288. doi:10.1021/acs.nanolett.4c02103
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2023 | Published | Journal Article | IST-REx-ID: 17865
Wei Y, Li L, Greenwald JE, Venkataraman L. Voltage-modulated van der waals interaction in single-molecule junctions. Nano Letters. 2023;23(2):567-572. doi:10.1021/acs.nanolett.2c04098
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2023 | Published | Journal Article | IST-REx-ID: 13094 |
Azadbakht A, Meadowcroft B, Varkevisser T, Šarić A, Kraft DJ. Wrapping pathways of anisotropic dumbbell particles by Giant Unilamellar Vesicles. Nano Letters. 2023;23(10):4267–4273. doi:10.1021/acs.nanolett.3c00375
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2022 | Published | Journal Article | IST-REx-ID: 17872
Lee W, Louie S, Evans AM, et al. Increased molecular conductance in Oligo[n]phenylene wires by thermally enhanced dihedral planarization. Nano Letters. 2022;22(12):4919-4924. doi:10.1021/acs.nanolett.2c01549
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2022 | Published | Journal Article | IST-REx-ID: 11379 |
Winterer F, Seiler AM, Ghazaryan A, et al. Spontaneous gully-polarized quantum hall states in ABA trilayer graphene. Nano Letters. 2022;22(8):3317-3322. doi:10.1021/acs.nanolett.2c00435
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2021 | Published | Journal Article | IST-REx-ID: 13996 |
Baykusheva DR, Chacón A, Lu J, et al. All-optical probe of three-dimensional topological insulators based on high-harmonic generation by circularly polarized laser fields. Nano Letters. 2021;21(21):8970-8978. doi:10.1021/acs.nanolett.1c02145
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| arXiv
2020 | Published | Journal Article | IST-REx-ID: 10866 |
Duan J, Capote-Robayna N, Taboada-Gutiérrez J, et al. Twisted nano-optics: Manipulating light at the nanoscale with twisted phonon polaritonic slabs. Nano Letters. 2020;20(7):5323-5329. doi:10.1021/acs.nanolett.0c01673
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2020 | Published | Journal Article | IST-REx-ID: 7166 |
Ucar MC, Lipowsky R. Collective force generation by molecular motors is determined by strain-induced unbinding. Nano Letters. 2020;20(1):669-676. doi:10.1021/acs.nanolett.9b04445
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2020 | Published | Journal Article | IST-REx-ID: 17902
Zang Y, Fung E-D, Fu T, et al. Voltage-induced single-molecule junction planarization. Nano Letters. 2020;21(1):673-679. doi:10.1021/acs.nanolett.0c04260
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2020 | Published | Journal Article | IST-REx-ID: 17903
Fung E-D, Venkataraman L. Too cool for blackbody radiation: Overbias photon emission in ambient STM due to multielectron processes. Nano Letters. 2020;20(12):8912-8918. doi:10.1021/acs.nanolett.0c03994
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2020 | Published | Journal Article | IST-REx-ID: 17908 |
Camarasa-Gómez M, Hernangómez-Pérez D, Inkpen MS, et al. Mechanically tunable quantum interference in ferrocene-based single-molecule junctions. Nano Letters. 2020;20(9):6381-6386. doi:10.1021/acs.nanolett.0c01956
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2020 | Published | Journal Article | IST-REx-ID: 17906
Zang Y, Fu T, Zou Q, et al. Cumulene wires display increasing conductance with increasing length. Nano Letters. 2020;20(11):8415-8419. doi:10.1021/acs.nanolett.0c03794
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2020 | Published | Journal Article | IST-REx-ID: 17910
Fu T, Zang Y, Zou Q, Nuckolls C, Venkataraman L. Using deep learning to identify molecular junction characteristics. Nano Letters. 2020;20(5):3320-3325. doi:10.1021/acs.nanolett.0c00198
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2020 | Published | Journal Article | IST-REx-ID: 17914
Hernangómez-Pérez D, Gunasekaran S, Venkataraman L, Evers F. Solitonics with polyacetylenes. Nano Letters. 2020;20(4):2615-2619. doi:10.1021/acs.nanolett.0c00136
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2020 | Published | Journal Article | IST-REx-ID: 17913
Gunasekaran S, Greenwald JE, Venkataraman L. Visualizing quantum interference in molecular junctions. Nano Letters. 2020;20(4):2843-2848. doi:10.1021/acs.nanolett.0c00605
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