1 Introduction to Laser Micro-to-Nano Manufacturing
67
93. A.O. Govorov, W. Zhang, T. Skeini, H. Richardson, J. Lee, N.A. Kotov, Gold nanoparticle
ensembles as heaters and actuators: melting and collective plasmon resonances. Nanoscale
Res. Lett. 1, 84 (2006)
94. E.C. Garnett, W. Cai, J.J. Cha, F. Mahmood, S.T. Connor, M. Greyson Christoforo, Y.
Cui, M.D. McGehee, M.L. Brongersma. Self-limited plasmonic welding of silver nanowire
junctions. Nat. Mat. 11, 241–249 (2012)
95. R.-Z. Li, A. Hu, D. Bridges, T. Zhang, K.D. Oakes, R. Peng, U. Tumuluri, Z. Wu, Z. Feng,
Robust Ag nanoplate ink for flexible electronics packaging. Nanoscale 7, 7368–7377 (2015)
96. J. Qiu, W.D. Wei, Surface plasmon-mediated photothermal chemistry. J. Phys. Chem. C 118,
20735–20749 (2014)
97. A. Csaki, F. Garwe, A. Steinbrück, G. Maubach, G. Festag, A. Weise, I. Riemann, K. König,
W. Fritzsche, A parallel approach for subwavelength molecular surgery using gene-specific
positioned metal nanoparticles as laser light antennas. Nano Lett. 7, 247–253 (2007)
98. R.Z. Li, R. Peng, K.D. Kihm, S. Bai, D. Bridges, U. Tumuluri, Z. Wu, T. Zhang, G.
Compagnini, Z. Feng, A. Hu, High-rate in-plane micro-supercapacitors scribed onto photo
paper using in situ femtolaser-reduced graphene oxide/Au nanoparticle microelectrodes.
Energy Environ. Sci. 9, 1458–1467 (2016)
99. L. Röntzsch, K.-H. Heinig, J.A. Schuller, M.L. Brongersma, Thin film patterning by surfaceplasmon-induced thermocapillarity. Appl. Phys. Lett. 90, 044105 (2007)
100. J.M. Stern, J. Stanfield, W. Kabbani, J.-T. Hsieh, J.A. Cadeddu, Selective Prostate cancer
thermal ablation with laser activated gold nanoshells. J. Urol. 179, 748–753 (2008)
101. R.-Z. Li, A. Hu, T. Zhang, K.D. Oakes, Direct writing on paper of foldable capacitive touch
pads with silver nanowire inks. ACS Appl. Mater. Interfaces. 6, 21721–21729 (2014)
102. Y. Huang, Y. Tian, C. Hang, Y. Liu, S. Wang, M. Qi, H. Zhang, J. Zhao, Self-limited nanosoldering of silver nanowires for high-performance flexible transparent heaters. ACS Appl. Mater.
Interfaces. 11, 21850–21858 (2019)
103. R.M. German, P. Suri, S.J. Park, Review: liquid phase sintering. J. Mater. Sci. 44, 1–39 (2009)
104. F.E. Kruis, K.A. Kusters, S.E. Pratsinis, B. Scarlett, A simple model for the evolution of
the characteristics of aggregate particles undergoing coagulation and sintering. Aerosol Sci.
Technol. 19, 514–526 (1993)
105. W.K. Lee, R.L. Eadie, G.C. Weatherly, K.T. Aust, A study of the sintering of spherical silver
powder—II. The initial stage. Acta Metall. 26, 1837–1843 (1978)
106. M.I. Alymov, E.I. Maltina, Y.N. Stepanov, Model of initial stage of ultrafine metal powder
sintering. Nanostruct. Mater. 4, 737–742 (1994)
107. H.A. Alarifi, M. Atis, Z. Ouml, C. Gbreve, A. Hu, M. Yavuz, Y. Zhou. Molecular dynamics
simulation of sintering and surface premelting of silver nanoparticles. Mater. Tran. 54, 884–
889 (2013)
108. H.A. Alarifi, M. Ati¸ s, C. Özdo˘ gan, A. Hu, M. Yavuz, Y. Zhou, Determination of complete
melting and surface premelting points of silver nanoparticles by molecular dynamics
simulation. J. Phys. Chem. C 117, 12289–12298 (2013)
109. W. Zhou, S. Bai, Y. Ma, D. Ma, T. Hou, X. Shi, A. Hu, Laser-direct writing of silver metal
electrodes on transparent flexible substrates with high-bonding strength. ACS Appl. Mater.
Interf. 8, 24887–24892 (2016)
110. H.-J. Hwang, K.-H. Oh, H.-S. Kim, All-photonic drying and sintering process via flash white
light combined with deep-UV and near-infrared irradiation for highly conductive copper
nano-ink. Sci. Rep. 6, 19696 (2016)
111. J.R. Greer, R.A. Street, Thermal cure effects on electrical performance of nanoparticle silver
inks. Acta Mater. 55, 6345–6349 (2007)
112. S. Mypati, S.R. Dhanushkodi, M. McLaren, A. Docoslis, B.A. Peppley, D.P.J. Barz, Optimized
inkjet-printed silver nanoparticle films: theoretical and experimental investigations. RSC Adv.
8, 19679–19689 (2018)
113. M. Kaganov, E. Lifshitz, L. Tanatarov, Relaxation between electrons and the crystalline lattice.
Soviet Phys.-JETP 4, 173–178 (1957)
67
93. A.O. Govorov, W. Zhang, T. Skeini, H. Richardson, J. Lee, N.A. Kotov, Gold nanoparticle
ensembles as heaters and actuators: melting and collective plasmon resonances. Nanoscale
Res. Lett. 1, 84 (2006)
94. E.C. Garnett, W. Cai, J.J. Cha, F. Mahmood, S.T. Connor, M. Greyson Christoforo, Y.
Cui, M.D. McGehee, M.L. Brongersma. Self-limited plasmonic welding of silver nanowire
junctions. Nat. Mat. 11, 241–249 (2012)
95. R.-Z. Li, A. Hu, D. Bridges, T. Zhang, K.D. Oakes, R. Peng, U. Tumuluri, Z. Wu, Z. Feng,
Robust Ag nanoplate ink for flexible electronics packaging. Nanoscale 7, 7368–7377 (2015)
96. J. Qiu, W.D. Wei, Surface plasmon-mediated photothermal chemistry. J. Phys. Chem. C 118,
20735–20749 (2014)
97. A. Csaki, F. Garwe, A. Steinbrück, G. Maubach, G. Festag, A. Weise, I. Riemann, K. König,
W. Fritzsche, A parallel approach for subwavelength molecular surgery using gene-specific
positioned metal nanoparticles as laser light antennas. Nano Lett. 7, 247–253 (2007)
98. R.Z. Li, R. Peng, K.D. Kihm, S. Bai, D. Bridges, U. Tumuluri, Z. Wu, T. Zhang, G.
Compagnini, Z. Feng, A. Hu, High-rate in-plane micro-supercapacitors scribed onto photo
paper using in situ femtolaser-reduced graphene oxide/Au nanoparticle microelectrodes.
Energy Environ. Sci. 9, 1458–1467 (2016)
99. L. Röntzsch, K.-H. Heinig, J.A. Schuller, M.L. Brongersma, Thin film patterning by surfaceplasmon-induced thermocapillarity. Appl. Phys. Lett. 90, 044105 (2007)
100. J.M. Stern, J. Stanfield, W. Kabbani, J.-T. Hsieh, J.A. Cadeddu, Selective Prostate cancer
thermal ablation with laser activated gold nanoshells. J. Urol. 179, 748–753 (2008)
101. R.-Z. Li, A. Hu, T. Zhang, K.D. Oakes, Direct writing on paper of foldable capacitive touch
pads with silver nanowire inks. ACS Appl. Mater. Interfaces. 6, 21721–21729 (2014)
102. Y. Huang, Y. Tian, C. Hang, Y. Liu, S. Wang, M. Qi, H. Zhang, J. Zhao, Self-limited nanosoldering of silver nanowires for high-performance flexible transparent heaters. ACS Appl. Mater.
Interfaces. 11, 21850–21858 (2019)
103. R.M. German, P. Suri, S.J. Park, Review: liquid phase sintering. J. Mater. Sci. 44, 1–39 (2009)
104. F.E. Kruis, K.A. Kusters, S.E. Pratsinis, B. Scarlett, A simple model for the evolution of
the characteristics of aggregate particles undergoing coagulation and sintering. Aerosol Sci.
Technol. 19, 514–526 (1993)
105. W.K. Lee, R.L. Eadie, G.C. Weatherly, K.T. Aust, A study of the sintering of spherical silver
powder—II. The initial stage. Acta Metall. 26, 1837–1843 (1978)
106. M.I. Alymov, E.I. Maltina, Y.N. Stepanov, Model of initial stage of ultrafine metal powder
sintering. Nanostruct. Mater. 4, 737–742 (1994)
107. H.A. Alarifi, M. Atis, Z. Ouml, C. Gbreve, A. Hu, M. Yavuz, Y. Zhou. Molecular dynamics
simulation of sintering and surface premelting of silver nanoparticles. Mater. Tran. 54, 884–
889 (2013)
108. H.A. Alarifi, M. Ati¸ s, C. Özdo˘ gan, A. Hu, M. Yavuz, Y. Zhou, Determination of complete
melting and surface premelting points of silver nanoparticles by molecular dynamics
simulation. J. Phys. Chem. C 117, 12289–12298 (2013)
109. W. Zhou, S. Bai, Y. Ma, D. Ma, T. Hou, X. Shi, A. Hu, Laser-direct writing of silver metal
electrodes on transparent flexible substrates with high-bonding strength. ACS Appl. Mater.
Interf. 8, 24887–24892 (2016)
110. H.-J. Hwang, K.-H. Oh, H.-S. Kim, All-photonic drying and sintering process via flash white
light combined with deep-UV and near-infrared irradiation for highly conductive copper
nano-ink. Sci. Rep. 6, 19696 (2016)
111. J.R. Greer, R.A. Street, Thermal cure effects on electrical performance of nanoparticle silver
inks. Acta Mater. 55, 6345–6349 (2007)
112. S. Mypati, S.R. Dhanushkodi, M. McLaren, A. Docoslis, B.A. Peppley, D.P.J. Barz, Optimized
inkjet-printed silver nanoparticle films: theoretical and experimental investigations. RSC Adv.
8, 19679–19689 (2018)
113. M. Kaganov, E. Lifshitz, L. Tanatarov, Relaxation between electrons and the crystalline lattice.
Soviet Phys.-JETP 4, 173–178 (1957)
