70
A. Hu et al.
159. W. Jie, Biased AC electro-osmosis for on-chip bioparticle processing. IEEE Trans.
Nanotechnol. 5, 84–89 (2006)
160. J. Wu, Y. Ben, D. Battigelli, H.-C. Chang, Long-range AC electroosmotic trapping and
detection of bioparticles. Ind. Eng. Chem. Res. 44, 2815–2822 (2005)
161. M. Lian, N. Islam, J. Wu, AC electrothermal manipulation of conductive fluids and particles
for lab-chip applications. IET Nanobiotechnol. 1, 36–43 (2007)
162. A. GonzÁLez, A. Ramos, H. Morgan, N.G. Green, A. Castellanos, Electrothermal flows
generated by alternating and rotating electric fields in microsystems. J. Fluid Mech. 564,
415–433 (2006)
163. M. Stubbe, J. Gimsa, A short review on AC electro-thermal micropumps based on smeared
structural polarizations in the presence of a temperature gradient. Colloids Surfaces A:
Physicochem. Eng. Aspects 376, 97–101 (2011)
164. G. Baysinger, L.I. Berger, R.N. Goldberg, H.V. Kehiaian, K. Kuchitsu, CRC Handbook of
Chemistry and Physics (National Institute of Standards and Technology, 2015)
165. J. Wu, Interactions of electrical fields with fluids: laboratory-on-a-chip applications. IET
Nanobiotechnol. 2, 14–27 (2008)
166. A. Salari, M. Navi, T. Lijnse, C. Dalton, AC electrothermal effect in microfluidics: a review.
Micromachines 10, 762 (2019)
167. A. Jamshidi, Optoelectronic manipulation, assembly, and patterning of nanoparticles (2009)
168. X. Xing, J. Zheng, C. Sun, F. Li, D. Zhu, L. Lei, X. Cai, T. Wu, Graphene oxide-deposited
microfiber: a new photothermal device for various microbubble generation. Opt. Express 21,
31862–31871 (2013)
169. L. Dai, Jiao, L. Liu, in Presented at 2016 IEEE 16th International Conference on
Nanotechnology (IEEE-NANO), 22–25 Aug. 2016 (2016)
170. L. Dai, Z. Ge, N. Jiao, L. Liu, 2D to 3D manipulation and assembly of microstructures using
optothermally generated surface bubble microrobots. Small 15, 1902815 (2019)
171. E.C.H. Ng, K.M. Chin, C.C. Wong, Controlling inplane orientation of a monolayer colloidal
crystal by meniscus pinning. Langmuir 27, 2244–2249 (2011)
172. W. Lu, C.M. Lieber, in Nanoscience and Technology: A Collection of Reviews from Nature
Journals (World Scientific 2010), pp. 137–146
173. H. Yan, H.S. Choe, S. Nam, Y. Hu, S. Das, J.F. Klemic, J.C. Ellenbogen, C.M. Lieber,
Programmable nanowire circuits for nanoprocessors. Nature 470, 240–244 (2011)
174. J. Kim, H.-C. Lee, K.-H. Kim, M.-S. Hwang, J.-S. Park, J.M. Lee, J.-P. So, J.-H. Choi, S.-H.
Kwon, C.J. Barrelet, H.-G. Park, Photon-triggered nanowire transistors. Nat. Nanotechnol.
12, 963–968 (2017)
175. C. Rewitz, G. Razinskas, P. Geisler, E. Krauss, S. Goetz, M. Pawłowska, B. Hecht, T. Brixner,
Coherent control of plasmon propagation in a nanocircuit. Phys. Rev. Appl. 1, 014007 (2014)
176. T. Gong, Y. Zhang, W. Liu, J. Wei, C. Li, K. Wang, D. Wu, M. Zhong, Connection of
macro-sized double-walled carbon nanotube strands by bandaging with double-walled carbon
nanotube films. Carbon 45, 2235–2240 (2007)
177. K.P. Yung, J. Wei, B.K. Tay, Formation and assembly of carbon nanotube bumps for
interconnection applications. Diamond Related Mater. 18, 1109–1113 (2009)
178. T. Tokuno, M. Nogi, M. Karakawa, J. Jiu, T.T. Nge, Y. Aso, K. Suganuma, Fabrication of
silver nanowire transparent electrodes at room temperature. Nano Res. 4, 1215–1222 (2011)
179. P. Peng, W. Guo, Y. Zhu, L. Liu, G. Zou, Y.N. Zhou, Nanoscale wire bonding of individual
ag nanowires on au substrate at room temperature. Nano-Micro Lett. 9, 26 (2017)
180. Z. Gu, Y. Chen, D.H. Gracias, Surface tension driven self-assembly of bundles and networks
of 200 nm diameter rods using a polymerizable adhesive. Langmuir 20, 11308–11311 (2004)
181. T. Gong, Y. Zhang, W. Liu, J. Wei, Y. Jia, K. Wang, D. Wu, M. Zhong, Reinforcing the
bandaged joint of double-walled carbon nanotube strands by intercalation of epoxy resin.
Mater. Lett. 62, 4431–4433 (2008)
182. H. Tohmyoh, S. Fukui, Self-completed Joule heat welding of ultrathin Pt wires. Phys. Rev. B
80, 155403 (2009)
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