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This month marks the tenth anniversary of Nature Nanotechnology. The cover shows a virtual cabinet displaying illustrations selected from our articles published during the past 10 years.
CREDIT: Wood for cabinet: Tim Messick / E+ / Getty Images. Illustrations: Lauritsen, J. et al. Nat. Nanotech.2, 5358 (2007); Comellas-AragonÈs, M. et al. Nat. Nanotech.2, 635639 (2007); Grill, L. et al. Nat. Nanotech.2, 687691 (2007); Zhu, J. et al. Nat. Nanotech.3, 477481 (2008); Bruns, O. et al. Nat. Nanotech.4, 193201 (2009); Röcker, C. et al. Nat. Nanotech.4, 577580 (2009); Bhaskaran, C. et al. Nat. Nanotech.5, 181185 (2010); Lu, J. et al. Nat. Nanotech.6, 247252 (2011); Zhang, H. et al. Nat. Nanotech.6, 277281 (2011); Ueno, K. et al. Nat. Nanotech.6, 408412 (2011); Villar, G. et al. Nat. Nanotech.6, 803808 (2011); Yang Lee, B. et al.Nat. Nanotech.7, 351356 (2012); Ge, J. et al.Nat. Nanotech.7, 428432 (2012); Natalio, F. et al. Nat. Nanotech.7, 530535 (2012); Kostiainen, M. et al. Nat. Nanotech.8, 5256 (2013); Liu, N. et al. Nat. Nanotech.9, 187192 (2014); Ndieyira, J. et al. Nat. Nanotech.9, 225232 (2014); Liu, J. et al. Nat. Nanotech.9, 285289 (2014); Lin, J. et al. Nat. Nanotech.9, 436442 (2014); Ragazzon, G. et al. Nat. Nanotech.10, 7075 (2015); Berger, O. et al. Nat. Nanotech.10, 353360 (2015); Atre, A. et al. Nat. Nanotech.10, 429436 (2015); Tian, Y. et al. Nat. Nanotech.10, 637644 (2015); Sun, J. et al. Nat. Nanotech.10, 980985 (2015); Chen, P. et al. Nat. Nanotech.10, 10771083 (2015).
A graphene transistor integrated on-chip on a hexagonal boron nitride-capped TaS2 layer provides a voltage-tunable, low-resistance load for controlling a TaS2 metal–insulator transition, enabling a compact voltage-controlled oscillator operating at room temperature.
Luminescence spectroscopy can be employed to investigate the Brownian motion of upconversion nanocrystals with high spatial resolution and thermal sensitivity.
Antiferromagnetic materials allow deterministic spin–orbit torque switching of perpendicular magnetization in ferromagnetic layers without external magnetic fields.
Synthetic nanoparticles containing rapamycin — a common immunosuppressant drug — when co-administered with any free antigen can induce immune tolerance, offering a way to rescue novel drugs that have failed in the clinic due to antidrug antibodies.