Ritmejeris, J., Chen, X. & Dekker, C. Single-molecule protein sequencing with nanopores. Nat. Rev. Bioeng. 3, 303–316 (2024).
Tripathi, P., Firouzbakht, A., Gruebele, M. & Wanunu, M. Threading single proteins via pores to check their vitality landscapes. Proc. Natl Acad. Sci. USA 119, e2202779119 (2022).
Lomovtsev, D., He, L., Waugh, M., St-Gelais, R. & Tabard-Cossa, V. A platform for high-bandwidth nanopore sensing with thermal management and low electrical noise. Rev. Sci. Instrum. 96, 085202 (2025).
Lu, C., Bonini, A., Viel, J. H. & Maglia, G. Towards single-molecule protein sequencing utilizing nanopores. Nat. Biotechnol. 43, 312–322 (2025).
Zhang, M. et al. Thermophoresis-controlled size-dependent DNA translocation via an array of nanopores. ACS Nano 12, 4574–4582 (2018).
Braun, D. & Libchaber, A. Trapping of DNA by thermophoretic depletion and convection. Phys. Rev. Lett. 89, 188103 (2002).
Li, Y. et al. Peltier-based temperature management permits high-bandwidth and low-noise measurements with solid-state nanopores. J. Anal. Check. https://doi.org/10.1007/s41664-026-00462-6 (2026).
Lin, M., Zhan, L. & Ding, M. Temperature-dependent transport of charged amino acids in gold plasmonic nanopores. J. Phys. Chem. B 129, 13009–13017 (2025).
Bhatti, H. et al. Current advances in organic nanopores for nanopore sequencing, sensing and comparability of purposeful variations in MspA mutants. RSC Adv. 11, 28996–29014 (2021).
Sajeer, P. M., Keerthi, A. & Varma, M. Stable-state nanopore conductance modulation utilizing built-in microheaters. Nanotechnology 36, 265301 (2025).
Douaki, A. et al. Modular plasmonic nanopore for opto‐thermal gating. Adv. Decide. Mater. 13, 2402189 (2025).