5 Covalent Assemblies of Metal Nanoparticles—Strategies …
189
38. Fontana L, Fratoddi I, Venditti I, Ksenzov D, Russo MV, Grigorian S (2016) Structural studies
on drop-cast film based on functionalized gold nanoparticles network: the effect of thermal
treatment. Appl Surf Sci 369:115–119
39. Yamanoi Y, Yamamoto Y, Miyachi M, Shimada M, Minoda A, Oshima S, Kobori Y, Nishihara
H (2013) Nanoparticle assemblies via coordination with a tetrakis(terpyridine) linker bearing
a rigid tetrahedral core. Langmuir 29:8768–8772
40. Boterashvili M, Shirman T, Popovitz-Biro R, Wen Q, Lahav M, van der Boom ME
(2016) Nanocrystallinity and direct cross-linkage as key-factors for the assembly of gold
nanoparticle-superlattices. Chem Commun 52:8079–8082
41. Leng F, Gerber IC, Lecante P, Bentaleb A, Muñoz A, Illescas BM, Martín N, Melinte G, Ersen
O, Martinez H, Axet MR, Serp P (2017) Hexakis [60]fullerene adduct-mediated covalent
assembly of ruthenium nanoparticles and their catalytic properties. Chem Eur J 23:13379–
13386
42. Richardson JJ, Cui J, Björnmalm M, Braunger JA, Ejima H, Caruso F (2016) Innovation in
layer-by-layer assembly. Chem Rev 116:14828–14867
43. Xiao F-X, Pagliaro M, Xu Y-J, Liu B (2016) Layer-by-layer assembly of versatile nanoarchitectures with diverse dimensionality: a new perspective for rational construction of multilayer
assemblies. Chem Soc Rev 45:3088–3121
44. Kariuki NN, Luo J, Hassan SA, Lim IIS, Wang L, Zhong CJ (2006) Assembly of bimetallic
gold–silver nanoparticles via selective interparticle dicarboxylate–silver linkages. Chem
Mater 18:123–132
45. Maye MM, Luo J, Han L, Kariuki NN, Zhong C-J (2003) Synthesis, processing, assembly
and activation of core-shell structured gold nanoparticle catalysts. Gold Bull 36:75–82
46. Wang W, Shi X, Kariuki NN, Schadt M, Wang GR, Rendeng Q, Choi J, Luo J, Lu S, Zhong
C-J (2007) Array of molecularly mediated thin film assemblies of nanoparticles: correlation
of vapor sensing with interparticle spatial properties. J Am Chem Soc 129:2161–2170
47. Zhou Q, Li X, Fan Q, Zhang X, Zheng J (2006) Charge transfer between metal nanoparticles interconnected with a functionalized molecule probed by surface-enhanced Raman
spectroscopy. Angew Chem Int Ed 45:3970–3973
48. Joseph Y, Besnard I, Rosenberger M, Guse B, Nothofer H-G, Wessels JM, Wild U, KnopGericke A, Su D, Schlögl R, Yasuda A, Vossmeyer T (2003) Self-assembled gold nanoparticle/alkanedithiol films: preparation, electron microscopy, XPS-analysis, charge transport,
and vapor-sensing properties†. J Phys Chem B 107:7406–7413
49. Joseph Y, Peic A, Chen X, Michl J, Vossmeyer T, Yasuda A (2007) Vapor sensitivity of
networked gold nanoparticle chemiresistors: importance of flexibility and resistivity of the
interlinkage. J Phys Chem C 111:12855–12859
50. Daskal Y, Tauchnitz T, Guth F, Dittrich R, Joseph Y (2017) Assembly behavior of organically
interlinked gold nanoparticle composite films: a quartz crystal microbalance investigation.
Langmuir 33:11869–11877
51. Ye J, Bonroy K, Nelis D, Frederix F, D’Haen J, Maes G, Borghs G (2008) Enhanced localized surface Plasmon resonance sensing on three-dimensional gold nanoparticles assemblies.
Colloids Surf A 321:313–317
52. Dhar J, Patil S (2012) Self-assembly and catalytic activity of metal nanoparticles immobilized
in polymer membrane prepared via layer-by-layer approach. ACS Appl Mater Interfaces
4:1803–1812
53. Vitale F, Fratoddi I, Battocchio C, Piscopiello E, Tapfer L, Russo MV, Polzonetti G, Giannini
C (2011) Mono- and bi-functional arenethiols as surfactants for gold nanoparticles: synthesis
and characterization. Nanoscale Res Lett 6:103
54. Brust M, Schiffrin DJ, Bethell D, Kiely CJ (1995) Novel gold-dithiol nano-networks with
non-metallic electronic properties. Adv Mater 7:795–797
55. Maye MM, Chun SC, Han L, Rabinovich D, Zhong C-J (2002) Novel spherical assembly of
gold nanoparticles mediated by a tetradentate thioether. J Am Chem Soc 124:4958–4959
56. Lim I-IS, Zhong C-J (2007) Molecularly-mediated assembly of gold nanoparticles. Gold Bull
40:59–66
189
38. Fontana L, Fratoddi I, Venditti I, Ksenzov D, Russo MV, Grigorian S (2016) Structural studies
on drop-cast film based on functionalized gold nanoparticles network: the effect of thermal
treatment. Appl Surf Sci 369:115–119
39. Yamanoi Y, Yamamoto Y, Miyachi M, Shimada M, Minoda A, Oshima S, Kobori Y, Nishihara
H (2013) Nanoparticle assemblies via coordination with a tetrakis(terpyridine) linker bearing
a rigid tetrahedral core. Langmuir 29:8768–8772
40. Boterashvili M, Shirman T, Popovitz-Biro R, Wen Q, Lahav M, van der Boom ME
(2016) Nanocrystallinity and direct cross-linkage as key-factors for the assembly of gold
nanoparticle-superlattices. Chem Commun 52:8079–8082
41. Leng F, Gerber IC, Lecante P, Bentaleb A, Muñoz A, Illescas BM, Martín N, Melinte G, Ersen
O, Martinez H, Axet MR, Serp P (2017) Hexakis [60]fullerene adduct-mediated covalent
assembly of ruthenium nanoparticles and their catalytic properties. Chem Eur J 23:13379–
13386
42. Richardson JJ, Cui J, Björnmalm M, Braunger JA, Ejima H, Caruso F (2016) Innovation in
layer-by-layer assembly. Chem Rev 116:14828–14867
43. Xiao F-X, Pagliaro M, Xu Y-J, Liu B (2016) Layer-by-layer assembly of versatile nanoarchitectures with diverse dimensionality: a new perspective for rational construction of multilayer
assemblies. Chem Soc Rev 45:3088–3121
44. Kariuki NN, Luo J, Hassan SA, Lim IIS, Wang L, Zhong CJ (2006) Assembly of bimetallic
gold–silver nanoparticles via selective interparticle dicarboxylate–silver linkages. Chem
Mater 18:123–132
45. Maye MM, Luo J, Han L, Kariuki NN, Zhong C-J (2003) Synthesis, processing, assembly
and activation of core-shell structured gold nanoparticle catalysts. Gold Bull 36:75–82
46. Wang W, Shi X, Kariuki NN, Schadt M, Wang GR, Rendeng Q, Choi J, Luo J, Lu S, Zhong
C-J (2007) Array of molecularly mediated thin film assemblies of nanoparticles: correlation
of vapor sensing with interparticle spatial properties. J Am Chem Soc 129:2161–2170
47. Zhou Q, Li X, Fan Q, Zhang X, Zheng J (2006) Charge transfer between metal nanoparticles interconnected with a functionalized molecule probed by surface-enhanced Raman
spectroscopy. Angew Chem Int Ed 45:3970–3973
48. Joseph Y, Besnard I, Rosenberger M, Guse B, Nothofer H-G, Wessels JM, Wild U, KnopGericke A, Su D, Schlögl R, Yasuda A, Vossmeyer T (2003) Self-assembled gold nanoparticle/alkanedithiol films: preparation, electron microscopy, XPS-analysis, charge transport,
and vapor-sensing properties†. J Phys Chem B 107:7406–7413
49. Joseph Y, Peic A, Chen X, Michl J, Vossmeyer T, Yasuda A (2007) Vapor sensitivity of
networked gold nanoparticle chemiresistors: importance of flexibility and resistivity of the
interlinkage. J Phys Chem C 111:12855–12859
50. Daskal Y, Tauchnitz T, Guth F, Dittrich R, Joseph Y (2017) Assembly behavior of organically
interlinked gold nanoparticle composite films: a quartz crystal microbalance investigation.
Langmuir 33:11869–11877
51. Ye J, Bonroy K, Nelis D, Frederix F, D’Haen J, Maes G, Borghs G (2008) Enhanced localized surface Plasmon resonance sensing on three-dimensional gold nanoparticles assemblies.
Colloids Surf A 321:313–317
52. Dhar J, Patil S (2012) Self-assembly and catalytic activity of metal nanoparticles immobilized
in polymer membrane prepared via layer-by-layer approach. ACS Appl Mater Interfaces
4:1803–1812
53. Vitale F, Fratoddi I, Battocchio C, Piscopiello E, Tapfer L, Russo MV, Polzonetti G, Giannini
C (2011) Mono- and bi-functional arenethiols as surfactants for gold nanoparticles: synthesis
and characterization. Nanoscale Res Lett 6:103
54. Brust M, Schiffrin DJ, Bethell D, Kiely CJ (1995) Novel gold-dithiol nano-networks with
non-metallic electronic properties. Adv Mater 7:795–797
55. Maye MM, Chun SC, Han L, Rabinovich D, Zhong C-J (2002) Novel spherical assembly of
gold nanoparticles mediated by a tetradentate thioether. J Am Chem Soc 124:4958–4959
56. Lim I-IS, Zhong C-J (2007) Molecularly-mediated assembly of gold nanoparticles. Gold Bull
40:59–66
