1 Introduction to Laser Micro-to-Nano Manufacturing
73
232. M.S. Madani, M. Monajjemi, H. Aghaei, M. Giahi, Thin double wall boron nitride nanotube:
nano-cylindrical capacitor. Orient. J. Chem. 33, 1213–1222 (2017)
233. J.E. Green, J. Wook Choi, A. Boukai, Y. Bunimovich, E. Johnston-Halperin, E. DeIonno,
Y. Luo, B.A. Sheriff, K. Xu, Y. Shik Shin, H.-R. Tseng, J.F. Stoddart, J.R. Heath, A 160kilobit molecular electronic memory patterned at 1011 bits per square centimetre. Nature
445, 414–417 (2007)
234. J.R. Pinzon, A. Villalta-Cerdas, L. Echegoyen, in Unimolecular and Supramolecular
Electronics I (Springer 2011), pp. 127–174
235. G. Wang, Y. Kim, M. Choe, T.-W. Kim, T. Lee, A new approach for molecular electronic
junctions with a multilayer graphene electrode. Adv. Mater. 23, 755–760 (2011)
236. J. Liu, Z. Yin, X. Cao, F. Zhao, A. Lin, L. Xie, Q. Fan, F. Boey, H. Zhang, W. Huang, Bulk
heterojunction polymer memory devices with reduced graphene oxide as electrodes. ACS
Nano 4, 3987–3992 (2010)
237. X. Wang, L. Zhi, K. Müllen, Transparent, conductive graphene electrodes for dye-sensitized
solar cells. Nano Lett. 8, 323–327 (2008)
238. M. Freitag, M. Radosavljevic, Y. Zhou, A.T. Johnson, W.F. Smith, Controlled creation of a
carbon nanotube diode by a scanned gate. Appl. Phys. Lett. 79, 3326–3328 (2001)
239. M.A. Hughes, K.P. Homewood, R.J. Curry, Y. Ohno, T. Mizutani, An ultra-low leakage current
single carbon nanotube diode with split-gate and asymmetric contact geometry. Appl. Phys.
Lett. 103, 133508 (2013)
240. T. Tsuji, T. Kakita, M. Tsuji, Preparation of nano-size particles of silver with femtosecond
laser ablation in water. Appl. Surf. Sci. 206, 314–320 (2003)
241. M. Hörstmann-Jungemann, J. Gottmann, D. Wortmann, Nano-and microstructuring of SiO 2
and sapphire with fs-laser induced selective etching. J. Laser Micro/Nanoeng. 4, 135–140
(2009)
242. A. Maurice, L. Bodelot, B.K. Tay, B. Lebental, Controlled, low-temperature nanogap
propagation in graphene using femtosecond laser patterning. Small 14, 1801348 (2018)
243. F. Prins, A. Barreiro, J.W. Ruitenberg, J.S. Seldenthuis, N. Aliaga-Alcalde, L.M.K. Vandersypen, H.S.J. van der Zant, Room-temperature gating of molecular junctions using few-layer
graphene nanogap electrodes. Nano Lett. 11, 4607–4611 (2011)
244. Q. Xu, G. Scuri, C. Mathewson, P. Kim, C. Nuckolls, D. Bouilly, Single electron transistor
with single aromatic ring molecule covalently connected to graphene nanogaps. Nano Lett.
17, 5335–5341 (2017)
245. H.W.C. Postma, Rapid sequencing of individual DNA molecules in graphene nanogaps. Nano
Lett. 10, 420–425 (2010)
246. J. Prasongkit, A. Grigoriev, B. Pathak, R. Ahuja, R.H. Scheicher, Transverse conductance
of DNA nucleotides in a graphene nanogap from first principles. Nano Lett. 11, 1941–1945
(2011)
247. W. Kubo, S. Fujikawa, Au double nanopillars with nanogap for plasmonic sensor. Nano Lett.
11, 8–15 (2011)
248. E. Braun*, K. Keren, From DNA to transistors. Adv. Phys. 53, 441–496 (2004)
249. E. Braun, Y. Eichen, U. Sivan, G. Ben-Yoseph, DNA-templated assembly and electrode
attachment of a conducting silver wire. Nature 391, 775–778 (1998)
250. J. Richter, M. Mertig, W. Pompe, I. Mönch, H.K. Schackert, Construction of highly conductive
nanowires on a DNA template. Appl. Phys. Lett. 78, 536–538 (2001)
251. R. Seidel, M. Mertig, W. Pompe, Scanning force microscopy of DNA metallization. Surface
Interface Anal. 33, 151–154 (2002)
252. K. Keren, R.S. Berman, E. Braun, Patterned DNA metallization by sequence-specific
localization of a reducing agent. Nano Lett. 4, 323–326 (2004)
253. K. Keren, M. Krueger, R. Gilad, G. Ben-Yoseph, U. Sivan, E. Braun, Sequence-specific
molecular lithography on single DNA molecules. Science 297, 72–75 (2002)
254. K. Keren, R.S. Berman, E. Buchstab, U. Sivan, E. Braun, DNA-templated carbon nanotube
field-effect transistor. Science 302, 1380–1382 (2003)
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