190
Y. Min et al.
57. Lim IIS, Maye MM, Luo J, Zhong C-J (2005) Kinetic and thermodynamic assessments of the
mediator–template assembly of nanoparticles. J Phys Chem B 109:2578–2583
58. Shenhar R, Norsten TB, Rotello VM (2005) Polymer-mediated nanoparticle assembly:
structural control and applications. Adv Mater 17:657–669
59. Stemmler MP, Fogel Y, Müllen K, Kreiter M (2009) Bridging of gold nanoparticles by
functional polyphenylene dendrimers. Langmuir 25:11917–11922
60. Rossner C, Ebeling B, Vana P (2013) Spherical gold-nanoparticle assemblies with tunable
interparticle distances mediated by multifunctional RAFT polymers. ACS Macro Lett 2:1073–
1076
61. Rossner C, Ebeling B, Vana P (2015) Design strategies for the fabrication of tailored nanocomposites via RAFT polymerization. In: Controlled radical polymerization: materials (vol 1188).
American Chemical Society, pp 293–307
62. Dey P, Blakey I, Thurecht KJ, Fredericks PM (2014) Hyperbranched polymer-gold nanoparticle assemblies: role of polymer architecture in hybrid assembly formation and SERS activity.
Langmuir 30:2249–2258
63. Battocchio C, Fratoddi I, Fontana L, Bodo E, Porcaro F, Meneghini C, Pis I, Nappini S,
Mobilio S, Russo MV, Polzonetti G (2014) Silver nanoparticles linked by a Pt-containing
organometallic dithiol bridge: study of local structure and interface by XAFS and SR-XPS.
Phys Chem Chem Phys 16:11719–11728
64. Fratoddi I, Matassa R, Fontana L, Venditti I, Familiari G, Battocchio C, Magnano E, Nappini
S, Leahu G, Belardini A, Li Voti R, Sibilia C (2017) Electronic properties of a functionalized
noble metal nanoparticles covalent network. J Phys Chem C 121:18110–18119
65. Fontana L, Bassetti M, Battocchio C, Venditti I, Fratoddi I (2017) Synthesis of gold and silver
nanoparticles functionalized with organic dithiols. Colloids Surf A 532:282–289
66. Bearzotti A, Papa P, Macagnano A, Zampetti E, Venditti I, Fioravanti R, Fontana L, Matassa
R, Familiari G, Fratoddi I (2018) Environmental Hg vapours adsorption and detection by
using functionalized gold nanoparticles network. J Environ Chem Eng 6:4706–4713
67. Morsbach E, Kunz S, Bäumer M (2016) Novel nanoparticle catalysts for catalytic gas sensing.
Catal Sci Technol 6:339–348
68. Morsbach E, Spéder J, Arenz M, Brauns E, Lang W, Kunz S, Bäumer M (2014) Stabilizing
catalytically active nanoparticles by ligand linking: toward three-dimensional networks with
high catalytic surface area. Langmuir 30:5564–5573
69. Morsbach E, Brauns E, Kowalik T, Lang W, Kunz S, Bäumer M (2014) Ligand-stabilized Pt
nanoparticles (NPs) as novel materials for catalytic gas sensing: influence of the ligand on
important catalytic properties. Phys Chem Chem Phys 16:21243–21251
70. Maye MM, Lou Y, Zhong C-J (2000) Core − Shell Gold Nanoparticle Assembly as Novel
Electrocatalyst of CO Oxidation. Langmuir 16:7520–7523
71. Lou Y, Maye MM, Han L, Luo J, Zhong C-J (2001) Gold–platinum alloy nanoparticle
assembly as catalyst for methanol electrooxidation. Chem Commun 473–474
72. Hussain I, Brust M, Barauskas J, Cooper AI (2009) Controlled step growth of molecularly linked gold nanoparticles: from metallic monomers to dimers to polymeric nanoparticle
chains. Langmuir 25:1934–1939
73. Klajn R, Gray TP, Wesson PJ, Myers BD, Dravid VP, Smoukov SK, Grzybowski BA (2008)
Bulk synthesis and surface patterning of nanoporous metals and alloys from supra spherical
nanoparticle aggregates. Adv Funct Mater 18:2763–2769
74. Sakamoto M, Tanaka D, Teranishi T (2013) Rigid bidentate ligands focus the size of gold
nanoparticles. Chem Sci 4:824–828
75. Nayak S, Horst N, Zhang H, Wang W, Mallapragada S, Travesset A, Vaknin D (2018) Ordered
networks of gold nanoparticles crosslinked by dithiol-oligomers. Part Part Syst Charact 35:1–7
76. Chen S (2001) Langmuir–Blodgett fabrication of two-dimensional robust cross-linked
nanoparticle assemblies. Langmuir 17:2878–2884
77. Sidhaye DS, Kashyap S, Sastry M, Hotha S, Prasad BLV (2005) Gold nanoparticle networks
with photoresponsive interparticle spacings. Langmuir 21:7979–7984
Y. Min et al.
57. Lim IIS, Maye MM, Luo J, Zhong C-J (2005) Kinetic and thermodynamic assessments of the
mediator–template assembly of nanoparticles. J Phys Chem B 109:2578–2583
58. Shenhar R, Norsten TB, Rotello VM (2005) Polymer-mediated nanoparticle assembly:
structural control and applications. Adv Mater 17:657–669
59. Stemmler MP, Fogel Y, Müllen K, Kreiter M (2009) Bridging of gold nanoparticles by
functional polyphenylene dendrimers. Langmuir 25:11917–11922
60. Rossner C, Ebeling B, Vana P (2013) Spherical gold-nanoparticle assemblies with tunable
interparticle distances mediated by multifunctional RAFT polymers. ACS Macro Lett 2:1073–
1076
61. Rossner C, Ebeling B, Vana P (2015) Design strategies for the fabrication of tailored nanocomposites via RAFT polymerization. In: Controlled radical polymerization: materials (vol 1188).
American Chemical Society, pp 293–307
62. Dey P, Blakey I, Thurecht KJ, Fredericks PM (2014) Hyperbranched polymer-gold nanoparticle assemblies: role of polymer architecture in hybrid assembly formation and SERS activity.
Langmuir 30:2249–2258
63. Battocchio C, Fratoddi I, Fontana L, Bodo E, Porcaro F, Meneghini C, Pis I, Nappini S,
Mobilio S, Russo MV, Polzonetti G (2014) Silver nanoparticles linked by a Pt-containing
organometallic dithiol bridge: study of local structure and interface by XAFS and SR-XPS.
Phys Chem Chem Phys 16:11719–11728
64. Fratoddi I, Matassa R, Fontana L, Venditti I, Familiari G, Battocchio C, Magnano E, Nappini
S, Leahu G, Belardini A, Li Voti R, Sibilia C (2017) Electronic properties of a functionalized
noble metal nanoparticles covalent network. J Phys Chem C 121:18110–18119
65. Fontana L, Bassetti M, Battocchio C, Venditti I, Fratoddi I (2017) Synthesis of gold and silver
nanoparticles functionalized with organic dithiols. Colloids Surf A 532:282–289
66. Bearzotti A, Papa P, Macagnano A, Zampetti E, Venditti I, Fioravanti R, Fontana L, Matassa
R, Familiari G, Fratoddi I (2018) Environmental Hg vapours adsorption and detection by
using functionalized gold nanoparticles network. J Environ Chem Eng 6:4706–4713
67. Morsbach E, Kunz S, Bäumer M (2016) Novel nanoparticle catalysts for catalytic gas sensing.
Catal Sci Technol 6:339–348
68. Morsbach E, Spéder J, Arenz M, Brauns E, Lang W, Kunz S, Bäumer M (2014) Stabilizing
catalytically active nanoparticles by ligand linking: toward three-dimensional networks with
high catalytic surface area. Langmuir 30:5564–5573
69. Morsbach E, Brauns E, Kowalik T, Lang W, Kunz S, Bäumer M (2014) Ligand-stabilized Pt
nanoparticles (NPs) as novel materials for catalytic gas sensing: influence of the ligand on
important catalytic properties. Phys Chem Chem Phys 16:21243–21251
70. Maye MM, Lou Y, Zhong C-J (2000) Core − Shell Gold Nanoparticle Assembly as Novel
Electrocatalyst of CO Oxidation. Langmuir 16:7520–7523
71. Lou Y, Maye MM, Han L, Luo J, Zhong C-J (2001) Gold–platinum alloy nanoparticle
assembly as catalyst for methanol electrooxidation. Chem Commun 473–474
72. Hussain I, Brust M, Barauskas J, Cooper AI (2009) Controlled step growth of molecularly linked gold nanoparticles: from metallic monomers to dimers to polymeric nanoparticle
chains. Langmuir 25:1934–1939
73. Klajn R, Gray TP, Wesson PJ, Myers BD, Dravid VP, Smoukov SK, Grzybowski BA (2008)
Bulk synthesis and surface patterning of nanoporous metals and alloys from supra spherical
nanoparticle aggregates. Adv Funct Mater 18:2763–2769
74. Sakamoto M, Tanaka D, Teranishi T (2013) Rigid bidentate ligands focus the size of gold
nanoparticles. Chem Sci 4:824–828
75. Nayak S, Horst N, Zhang H, Wang W, Mallapragada S, Travesset A, Vaknin D (2018) Ordered
networks of gold nanoparticles crosslinked by dithiol-oligomers. Part Part Syst Charact 35:1–7
76. Chen S (2001) Langmuir–Blodgett fabrication of two-dimensional robust cross-linked
nanoparticle assemblies. Langmuir 17:2878–2884
77. Sidhaye DS, Kashyap S, Sastry M, Hotha S, Prasad BLV (2005) Gold nanoparticle networks
with photoresponsive interparticle spacings. Langmuir 21:7979–7984
