S. K. Narasimhan, X. Lu, and Y. Luk, Chiral molecules with Polyhedral T, O, or I Symmetry: Theoretical Solution to a Difficult Problem in Stereochemistry, Chirality, vol.20, pp.878-884, 2008.

N. Yan, N. Xia, L. Liao, M. Zhu, F. Jin et al., Unravelling the Long Pursued Au144 Structure by X-ray, Crystallography. Sci. Adv, 2018.
DOI : 10.1126/sciadv.aat7259

URL : https://advances.sciencemag.org/content/advances/4/10/eaat7259.full.pdf

Z. Lei, J. Li, X. Wan, and W. Zhang,

Q. Wang, Isolation and Total Structure Determination of an All-Alkynyl-Protected Gold Nanocluster Au144, Angew. Chem. Int. Ed, vol.57, pp.8639-8643, 2018.

N. T. Tran, D. R. Powell, and L. F. Dahl, Nanosized Pd145(CO)x(PEt3)30 Containing a Capped Three-Shell 145-Atom Metal-Core Geometry of Pseudo Icosahedral Symmetry, Angew. Chem., Int. Ed, vol.39, pp.4121-4125, 2000.
DOI : 10.1002/1521-3757(20001117)112:22<4287::aid-ange4287>3.0.co;2-1

T. G. Schaaff, M. N. Shafigullin, J. T. Khoury, I. Vezmar, and R. L. Whetten, Properties of a Ubiquitous 29 kDa Au:SR Cluster Compound, J. Phys. Chem. B, vol.105, pp.8785-8796, 2001.
DOI : 10.1021/jp011122w

S. Chen, R. S. Ingram, M. J. Hostetler, J. J. Pietron, R. W. Murray et al., Gold Nanoelectrodes of Varied Size: Transition to Molecule-Like Charging, Science, vol.280, pp.2098-2101, 1998.
DOI : 10.1126/science.280.5372.2098

S. Mullins, H. Weissker, R. Sinha-roy, J. J. Pelayo, I. L. Garzón et al.,

X. López-lozano, Chiral Symmetry Breaking Yields an I-Au60 Perfect Golden Shell of Singular Rigidity, Nat. Comm, vol.9, pp.1-9, 2018.

A. Tlahuice-flores, D. M. Black, S. B. Bach, M. Jose-yacaman, and R. L. Whetten,

, Structure & Bonding of the Gold-Subhalide Cluster I-Au144Cl60, Phys. Chem. Chem. Phys, vol.15, pp.19191-19195, 2013.

R. L. Whetten, J. T. Khoury, M. M. Alvarez, S. Murthy, I. Vezmar et al., Nanocrystal gold molecules, Adv. Mater, vol.8, pp.428-433, 1996.
DOI : 10.1007/978-94-015-8682-5_28

N. K. Chaki, Y. Negishi, H. Tsunoyama, Y. Shichibu, and . Tsukuda, , vol.8, p.29

. Gold, Alkanethiolate Cluster Compounds: Mass Spectrometric Determination of Molecular Formulas and Structural Implications, J. Am. Chem. Soc, vol.130, pp.8608-8610, 2008.

O. López-acevedo, J. Akola, R. L. Whetten, H. Grönbeck, and H. Häkkinen, Structure and Bonding in the Ubiquitous Icosahedral Metallic Gold Cluster Au144(SR)60, J. Phys. Chem, vol.113, pp.5035-5038, 2009.

J. J. Pelayo, R. L. Whetten, and I. L. Garzón, Geometric Quantification of Chirality in LigandProtected Metal Clusters, J. Phys. Chem. C, vol.119, pp.28666-28678, 2015.

P. D. Jadzinsky, G. Calero, C. J. Ackerson, D. A. Bushnell, and R. D. Kornberg, Structure of a

, Thiol Monolayer-Protected Gold Nanoparticle at 1.1 Å Resolution, Science, vol.318, pp.430-433, 2007.

I. Chakraborty and T. Pradeep, Atomically Precise Clusters of Noble Metals: Emerging Link between Atoms and Nanoparticles, Chem. Rev, vol.117, pp.8208-8271, 2017.

R. W. Murray and . Nanoelectrochemistry, Metal Nanoparticles, Nanoelectrodes, and Nanopores

, Chem. Rev, vol.108, pp.2688-2720, 2008.

S. H. Yau, O. Varnavski, and T. Goodson, An Ultrafast Look at Au Nanoclusters, Acc. Chem. Res, vol.46, pp.1506-1516, 2013.

R. L. Whetten, M. N. Shafigullin, J. T. Khoury, T. G. Schaaff, I. Vezmar et al.,

M. Wilkinson and A. , Crystal Structures of Molecular Gold Nanocrystal Arrays, Acc. Chem. Res, vol.32, pp.397-406, 1999.

R. L. Whetten, J. T. Khoury, M. M. Alvarez, S. Murthy, I. Vezmar et al.,

C. L. Cleveland, W. D. Luedtke, and U. Landman, Nanocrystal Gold Molecules, The Chemical Physics of Fullerenes: 10 (and 5) Years Later, 1996.

I. Varenna, , pp.475-490

M. Brust, M. Walker, D. Bethell, D. J. Schiffrin, R. Whyman et al.,

, Derivatised Gold Nanoparticles in a Two-Phase Liquid-Liquid System, J. Chem. Soc., Chem. Commun, pp.801-802, 1994.

T. G. Schaaff, M. N. Shafigullin, J. T. Khoury, I. Vezmar, R. L. Whetten et al., Isolation of Smaller Nanocrystal Au Molecules: Robust Quantum Effects in Optical Spectra, J. Phys. Chem. B, vol.101, pp.7885-7891, 1997.

E. G. Mednikov, L. F. Dahl, and . Syntheses, Structures and Properties of Primarily Nanosized Homo/Heterometallic Palladium CO/PR3-ligated Clusters, Phil. Trans. R. Soc. A, vol.368, pp.1301-1332, 2010.

J. F. Parker, C. A. Fields-zinna, and R. W. Murray, The Story of a Monodisperse Gold Nanoparticle: Au25L18, Acc. Chem. Res, vol.43, pp.1289-1296, 2010.

Y. Negishi, K. Nobusada, and T. Tsukuda, Glutathione-Protected Gold Clusters Revisited: Bridging the Gap between Gold(I)?Thiolate Complexes and Thiolate-Protected Gold Nanocrystals, J. Am. Chem. Soc, vol.127, pp.5261-5270, 2005.

C. A. Fields-zinna, R. Sardar, C. A. Beasley, and R. W. Murray, ESI-MS of Intrinsically Cationized Nanoparticles

, J. Am. Chem. Soc, vol.131, pp.16266-16271, 2009.

H. Qian and R. Jin, Controlling Nanoparticles with Atomic Precision: The Case of Au144(SCH2CH2Ph)60, Nano Lett, vol.9, pp.4083-4087, 2009.

C. Kumara and A. Dass, AuAg)144(SR)60 Alloy Nanomolecules, Nanoscale, vol.3, pp.3064-3067, 2011.

S. Yamazoe, S. Takano, W. Kurashige, T. Yokoyama, K. Nitta et al., Tsukuda, T. Hierarchy of bond stiffnesses within icosahedral-based gold clusters protected by thiolates, Nat. Commun, vol.7, pp.10414-10415, 2016.

Y. Negishi, T. Nakazaki, S. Malola, S. Takano, Y. Niihori et al.,

T. Tsukuda and H. Häkkinen, A Critical Size for Emergence of Nonbulk Electronic and Geometric Structures in Dodecanethiolate-Protected Au Clusters, J. Am. Chem. Soc, vol.137, pp.1206-1212, 2015.

H. Weissker, H. Escobar, V. D. Thanthirige, K. Kwak, D. Lee et al., Information on Quantum States Pervades the Visible Spectrum of the Ubiquitous Au144(SR)60 Gold Nanocluster, Nat. Comm, vol.5, pp.1-8, 2014.
URL : https://hal.archives-ouvertes.fr/hal-00992927

D. Bahena, N. Bhattarai, U. Santiago, A. Tlahuice, A. Ponce et al., Jose-Yacaman, M. STEM Electron Diffraction and HighResolution Images

, J. Phys. Chem. Lett, vol.4, pp.975-981, 2013.

G. Barcaro, L. Sementa, A. Fortunelli, and M. Stener, Comment on "(Au-Ag)144(SR)60 Alloy Nanomolecules, Nanoscale, vol.7, pp.8166-8167, 2011.

S. Malola, L. Lehtovaara, J. Enkovaara, and . Häkkinen, Birth of the Localized Surface Plasmon Resonance in Monolayer-Protected Gold Nanoclusters, ACS Nano, vol.7, pp.10263-10270, 2013.

M. Walter, J. Akola, O. Lopez-acevedo, P. D. Jadzinsky, G. Calero et al.,

R. L. Whetten, H. Grönbeck, and H. Häkkinen, A Unified View of Ligand-Protected Gold Clusters as Superatom Complexes, Proc. Natl. Acad. Sci, vol.105, pp.9157-9162, 2008.

H. Weissker, . -ch, O. Lopez-acevedo, R. L. Whetten, and X. López-lozano, Optical Spectra of the Special Au144 Gold-Cluster Compounds: Sensitivity to Structure and Symmetry, J. Phys. Chem. C, vol.119, pp.11250-11259, 2015.
URL : https://hal.archives-ouvertes.fr/hal-01171377

S. Vergara, D. A. Lukes, M. W. Martynowycz, U. Santiago, G. Plascencia-villa et al., Micro ED Structure of Au146(p-MBA)57 at Subatomic Resolution Reveals a Twinned FCC Cluster, J. Phys. Chem

. Lett, , vol.8, pp.5523-5530, 2017.

R. Sinha-roy, X. López-lozano, R. L. Whetten, P. García-gonzález, and H. Weissker, In Search of the Quantum-Electronic Origin of Color Change: Elucidation of the Subtle Effects of Alloying with Copper on ? 1.8 nm Gold Nanoclusters, J. Phys. Chem. C, vol.121, pp.5753-5760, 2017.
URL : https://hal.archives-ouvertes.fr/hal-01720730

X. López-lozano, G. Plascencia-villa, G. Calero, R. L. Whetten, and . H. Weissker, Is the Largest Aqueous Gold cluster a Superatom Complex? Electronic Structure & Optical Response of the Structurally Determined Au146, vol.57, pp.18629-18634, 2017.

T. G. Schaaff, G. Knight, M. N. Shafigullin, R. F. Borkman, and R. L. Whetten, Isolation and Selected Properties of a 10.4 kDa Gold:Glutathione Cluster Compound, J. Phys. Chem B, vol.102, pp.10643-10646, 1998.

T. G. Schaaff and R. L. Whetten, Giant Gold-Glutathione Cluster Compounds: Intense Optical Activity in Metal-Based Transitions, J. Phys. Chem. B, vol.104, pp.2630-2641, 2000.
DOI : 10.1021/jp993691y

I. L. Garzón, J. A. Reyes-nava, J. I. Rodríguez-hernández, I. Sigal, and M. R. Beltrán,

K. Michaelian, Chirality in Bare and Passivated Gold Nanoclusters, Physical Review B, vol.66, pp.73403-73404, 2002.

I. L. Garzón, M. R. Beltrán, G. González, I. Gutiérrez-gonzález, and K. Michaelian,

J. A. Nava and J. I. Rodríguez-hernández, Chirality, Defects, and Disorder in Gold Clusters, Eur. Phys. J. D, vol.24, pp.105-109, 2003.

J. J. Pelayo, I. Valencia, A. P. García, L. Chang, M. López et al.,

A. Fortunelli and I. L. Garzón, Chirality in Bare and Ligand-Protected Metal Nanoclusters, Adv. Phys. X, vol.3, pp.964-997, 2018.

H. Häkkinen, M. Walter, and H. Grönbeck, Divide and Protect: Capping Gold Nanoclusters with Molecular Gold-Thiolate Rings, J. Phys. Chem. B, vol.110, pp.9927-9931, 2006.

C. Zeng and R. Jin, Chiral Gold Nanoclusters: Atomic Level Origins of Chirality, Chem. Asian J, vol.12, pp.1839-1850, 2017.

O. A. Wong, C. L. Heinecke, A. R. Simone, R. L. Whetten, and C. J. Ackerson, LigandSymmetry-Equivalence on Thiolate Protected Gold Nanoclusters determined by NMR Spectroscopy, Nanoscale, vol.4, pp.4099-4102, 2012.
DOI : 10.1039/c2nr30259d