G. Maltzahn, J. Park, A. Agrawal, N. K. Bandaru, S. K. Das et al., Computationally Guided Photothermal Tumor Therapy Using Long-Circulating Gold Nanorod Antennas, Cancer Res, vol.69, pp.3982-3900, 2009.

C. Gui and D. Cui, Functionalized Gold Nanorods for Tumor Imaging and Targeted Therapy, Cancer Biology & Medicine, vol.9, pp.221-233, 2012.

X. Huang and M. A. El-sayed, Gold Nanoparticles: Optical Properties and Implementations in Cancer Diagnosis and Photothermal Therapy, Journal of Advanced Research, vol.1, pp.13-28, 2010.

A. Wei, A. P. Leonov, Q. G. Wei, and . Nanorods, Multifunctional Agents for Cancer Imaging and Therapy, Cancer Nanotechnology, vol.624, pp.119-130, 2010.

M. Sengani, A. M. Grumezescu, and V. D. Rajeswari, Recent Trends and Methodologies in Gold Nanoparticle Synthesis -A Prospective Review on Drug Delivery Aspect, vol.2, pp.37-46, 2017.

R. S. Riley, E. S. Day, and . Gold, NanoparticleMediated Photothermal Therapy: Applications and Opportunities for Multimodal Cancer Treatment, Nanomedicine and Nanobiotechnology, vol.9, p.1449, 2017.

M. Grzelczak, J. Perez-juste, P. Mulvaney, L. M. Liz-marzan, C. Burda et al., Shape Control in Gold Nanoparticle Synthesis, Chemistry and Properties of Nanocrystals of Different Shapes, vol.37, pp.1025-1102, 2005.

J. Pérez-juste, I. Pastoriza-santos, L. M. Liz-marzán, P. G. Mulvaney, and . Nanorods, Synthesis, Characterization and Applications. Coordination Chemistry Reviews, vol.249, pp.1870-1901, 2005.

S. E. Lohse and C. J. Murphy, The Quest for Shape Control: A History of Gold Nanorod Synthesis, Chem. Mater, vol.25, pp.1250-1261, 2013.

A. Gole and C. J. Murphy, Seed-Mediated Synthesis of Gold Nanorods: Role of the Size and Nature of the Seed, Chem. Mater, vol.16, pp.3633-3640, 2004.

C. J. Murphy, T. K. Sau, A. M. Gole, C. J. Orendorff, J. Gao et al., Anisotropic Metal Nanoparticles: Synthesis, Assembly, and Optical Applications, J. Phys. Chem. B, vol.109, pp.13857-13870, 2005.

J. Rodríguez-fernández, J. Pérez-juste, P. Mulvaney, and L. M. Liz-marzán, SpatiallyDirected Oxidation of Gold Nanoparticles by Au(III)?CTAB Complexes, J. Phys. Chem. B, vol.109, pp.14257-14261, 2005.

L. Scarabelli, A. Sánchez-iglesias, J. Pérez-juste, and L. M. Liz-marzán, Tips and Tricks" Practical Guide to the Synthesis of Gold Nanorods, J. Phys. Chem. Lett, vol.6, pp.4270-4279, 2015.

N. D. Burrows, A. M. Vartanian, N. S. Abadeer, E. M. Grzincic, L. M. Jacob et al., Anisotropic Nanoparticles and Anisotropic Surface Chemistry, J. Phys. Chem. Lett, vol.7, pp.632-641, 2016.

L. M. Liz-marzán and M. Grzelczak, Growing Anisotropic Crystals at the Nanoscale, vol.356, p.1120, 2017.

Z. L. Wang, M. B. Mohamed, S. Link, and M. A. El-sayed, Crystallographic Facets and Shapes of Gold Nanorods of Different Aspect Ratios, Surface Science, vol.440, pp.809-814, 1999.

N. D. Burrows, S. Harvey, F. A. Idesis, and C. J. Murphy, Understanding the Seed-Mediated Growth of Gold Nanorods through a Fractional Factorial Design of Experiments, Langmuir, vol.33, pp.1891-1907, 2017.

S. Gómez-graña, F. Hubert, F. Testard, A. Guerrero-martínez, I. Grillo et al., Surfactant (Bi)Layers on Gold Nanorods, Langmuir, vol.28, pp.1453-1459, 2012.

Y. Chen, Z. Fan, Z. Zhang, W. Niu, C. Li et al., Dimensional Metal Nanomaterials: Synthesis, Properties, and Applications, vol.118, pp.6409-6455, 2018.

. Liu,

P. Guyot-sionnest, Mechanism of Silver(I)-Assisted Growth of Gold Nanorods and Bipyramids, J. Phys. Chem. B, vol.109, pp.22192-22200, 2005.

F. Hubert, F. Testard, and O. Spalla, Cetyltrimethylammonium Bromide Silver Bromide Complex as the Capping Agent of Gold Nanorods, Langmuir, vol.24, pp.9219-9222, 2008.
URL : https://hal.archives-ouvertes.fr/cea-02046698

S. Ghosh, L. Manna, and . Many, Facets" of Halide Ions in the Chemistry of Colloidal Inorganic Nanocrystals, Chem. Rev, vol.118, pp.7804-7864, 2018.

M. J. Walsh, W. Tong, H. Katz-boon, P. Mulvaney, J. Etheridge et al., A Mechanism for Symmetry Breaking and Shape Control in Single-Crystal Gold Nanorods, Acc. Chem. Res, vol.50, pp.2925-2935, 2017.

W. Niu, L. Zhang, and G. Xu, Seed-Mediated Growth of Noble Metal Nanocrystals: Crystal Growth and Shape Control, Nanoscale, vol.5, pp.3172-3181, 2013.

X. Huang, S. Neretina, M. A. El-sayed, and . Gold, Nanorods: From Synthesis and Properties to Biological and Biomedical Applications, Advanced Materials, vol.21, pp.4880-4910, 2009.

A. Halder, P. Kundu, B. Viswanath, and N. Ravishankar, Symmetry and Shape Issues in Nanostructure Growth, J. Mater. Chem, vol.20, pp.4763-4772, 2010.

M. M. Mariscal, J. J. Velazquez-salazar, and M. J. Yacaman, Growth Mechanism of Nanoparticles: Theoretical Calculations and Experimental Results, CrystEngComm, vol.14, pp.544-549, 2012.

C. J. Johnson, E. Dujardin, S. A. Davis, C. J. Murphy, and S. Mann, Growth and Form of Gold Nanorods Prepared by Seed-Mediated, Surfactant-Directed Synthesis, J. Mater. Chem, vol.12, pp.1765-1770, 2002.

B. Viswanath, P. Kundu, A. Halder, and N. Ravishankar, Mechanistic Aspects of Shape Selection and Symmetry Breaking during Nanostructure Growth by Wet Chemical Methods, J. Phys. Chem. C, vol.113, pp.16866-16883, 2009.

F. Hubert, F. Testard, G. Rizza, and O. Spalla, Nanorods versus Nanospheres: A Bifurcation Mechanism Revealed by Principal Component TEM Analysis, Langmuir, vol.26, pp.6887-6891, 2010.

Z. C. Canbek, R. Cortes-huerto, F. Testard, O. Spalla, S. Moldovan et al., Twinned Gold Nanoparticles under Growth: Bipyramids Shape Controlled by Environment, Crystal Growth & Design, vol.15, pp.3637-3644, 2015.
URL : https://hal.archives-ouvertes.fr/hal-01187806

Y. Xia, Y. Xiong, B. Lim, and S. E. Skrabalak, Shape-Controlled Synthesis of Metal Nanocrystals: Simple Chemistry Meets Complex Physics?, Angewandte Chemie International Edition, vol.48, pp.60-103, 2009.

B. Nikoobakht and M. A. El-sayed, Preparation and Growth Mechanism of Gold Nanorods (NRs) Using Seed-Mediated Growth Method, Chem. Mater, vol.15, pp.1957-1962, 2003.

T. Zemb, O. Taché, F. Né, and O. Spalla, Improving Sensitivity of a Small Angle X-Ray Scattering Camera with Pinhole Collimation Using Separated Optical Elements, Review of Scientific Instruments, vol.74, pp.2456-2462, 2003.
URL : https://hal.archives-ouvertes.fr/cea-00268837

F. Hubert, F. Testard, A. Thill, Q. Kong, O. Tache et al., Growth and Overgrowth of Concentrated Gold Nanorods: Time Resolved SAXS and XANES. Cryst. Growth Des, vol.12, pp.1548-1555, 2012.

H. Kang, J. T. Buchman, R. S. Rodriguez, H. L. Ring, J. He et al., Stabilization of Silver and Gold Nanoparticles: Preservation and Improvement of Plasmonic Functionalities, Chem. Rev, vol.119, pp.664-699, 2019.

Z. C. Canbek, Crystal Engineering of Anisotropic Gold Nanoparticles through Modulation of Seed Size and Crystal Structure, 2014.
URL : https://hal.archives-ouvertes.fr/tel-01231223

M. Grzelczak, J. Pérez-juste, P. Mulvaney, and L. M. Liz-marzán, Shape Control in Gold Nanoparticle Synthesis, Chem. Soc. Rev, vol.37, p.1783, 2008.

K. Park, M. Hsiao, H. Koerner, A. Jawaid, J. Che et al., Optimizing Seed Aging for Single Crystal Gold Nanorod Growth: The Critical Role of Gold Nanocluster Crystal Structure, J. Phys. Chem. C, vol.120, pp.28235-28245, 2016.

G. Wulff and . Zeitschrift-fur-krishtallographie, , pp.449-530

J. L. Elechiguerra, J. Reyes-gasga, and M. J. Yacaman, The Role of Twinning in Shape Evolution of Anisotropic Noble Metal Nanostructures, J. Mater. Chem, vol.16, pp.3906-3919, 2006.

R. Cortes-huerto, J. Goniakowski, and C. Noguera, Role of the Environment in the Stability of Anisotropic Gold Particles, Phys. Chem. Chem. Phys, vol.2015, issue.9, pp.6305-6313
URL : https://hal.archives-ouvertes.fr/hal-01121841

A. Gulati, H. Liao, and J. H. Hafner, Monitoring Gold Nanorod Synthesis by Localized Surface Plasmon Resonance, J. Phys. Chem. B, vol.110, pp.22323-22327, 2006.

T. Hendel, M. Wuithschick, F. Kettemann, A. Birnbaum, K. Rademann et al., Situ Determination of Colloidal Gold Concentrations with UV-Vis Spectroscopy: Limitations and Perspectives, vol.86, pp.11115-11124, 2014.

A. Brioude, X. C. Jiang, and M. P. Pileni, Optical Properties of Gold Nanorods: DDA Simulations Supported by Experiments, J. Phys. Chem. B, vol.109, pp.13138-13142, 2005.
URL : https://hal.archives-ouvertes.fr/hal-01597237

H. Omi, Determination of Aspect-Ratio Distribution in Gold Nanowires Using Absorption Spectra and Transmission Electron Microscopy Techniques, The Transmission Electron Microscope, 2012.

S. Link and M. A. El-sayed, Simulation of the Optical Absorption Spectra of Gold Nanorods as a Function of Their Aspect Ratio and the Effect of the Medium Dielectric Constant, J. Phys. Chem. B, vol.109, pp.10531-10532, 2005.

N. R. Jana, L. Gearheart, and C. J. Murphy, Seed-Mediated Growth Approach for ShapeControlled Synthesis of Spheroidal and Rod-like Gold Nanoparticles Using a Surfactant Template, Adv. Mater, vol.13, pp.1389-1393, 2001.

C. Lofton and W. Sigmund, Mechanisms Controlling Crystal Habits of Gold and Silver Colloids, Adv. Funct. Mater, vol.15, pp.1197-1208, 2005.

C. Bullen, P. Zijlstra, E. Bakker, M. Gu, and C. Raston, Chemical Kinetics of Gold Nanorod Growth in Aqueous CTAB Solutions. Crystal Growth & Design, p.11, 2011.

J. Becker, A. Trügler, A. Jakab, U. Hohenester, and C. Sönnichsen, The Optimal Aspect Ratio of Gold Nanorods for Plasmonic Bio-Sensing, Plasmonics, vol.5, pp.161-167, 2010.

Z. Zhao, Z. Zheng, C. Roux, C. Delmas, J. Marty et al., Importance of the Correlation between Width and Length in the Shape Analysis of Nanorods: Use of a 2D Size Plot To Probe Such a Correlation, Chemistry -A European Journal, vol.22, pp.12424-12429, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01936037

J. Lee, K. J. Gibson, G. Chen, and Y. Weizmann, Bipyramid-Templated Synthesis of Monodisperse Anisotropic Gold Nanocrystals, Nature Communications, vol.6, p.7571, 2015.

B. Wiley, T. Herricks, Y. Sun, and Y. Xia, Polyol Synthesis of Silver Nanoparticles: Use of Chloride and Oxygen to Promote the Formation of Single-Crystal, Truncated Cubes and Tetrahedrons, Nano Lett, vol.4, pp.1733-1739, 2004.

B. Fleury, R. Cortes-huerto, O. Taché, F. Testard, N. Menguy et al., Gold Nanoparticle Internal Structure and Symmetry Probed by Unified Small-Angle X-Ray Scattering and X-Ray Diffraction Coupled with Molecular Dynamics Analysis, Nano Lett, vol.15, pp.6088-6094, 2015.

. Toc-graphic,