A. L. Rogach, Semiconductor nanocrystal quantum dots

A. M. Smith and S. Nie, Semiconductor Nanocrystals: Structure, Properties, and Band Gap Engineering, vol.43, pp.190-200, 2010.

V. I. Klimov, Semiconductor and Metal Nanocrystals: Synthesis and Electronic and Optical Properties, 2003.

L. Cornejo, El porqué las diferentes propiedades de las nano partículas, 2018.

A. Majid and M. Bibi, Cadmium based II-VI Semiconducting Nanomaterials, 2018.

E. Cassette, , 2012.

C. B. Murray, D. J. Norris, and M. G. Bawendi, Synthesis and characterization of nearly monodisperse CdE (E = sulfur, selenium, tellurium) semiconductor nanocrystallites, J. Am. Chem. Soc, vol.115, pp.8706-8715, 1993.

S. Kar and S. Chaudhuri, Shape Selective Growth of CdS One-Dimensional Nanostructures by a Thermal Evaporation Process, J. Phys. Chem. B, vol.110, pp.4542-4547, 2006.

, Formation of ZnS nanostructures by a simple way of thermal evaporation, J. Cryst. Growth, vol.258, pp.225-231, 2003.

J. Xu, J. Ge, and Y. Li, Solvothermal Synthesis of Monodisperse PbSe Nanocrystals, J. Phys. Chem. B, vol.110, pp.2497-2501, 2006.

Y. Li, H. Liao, Y. Ding, Y. Fan, Y. Zhang et al., Te) Semiconductor Nanorod, Inorg. Chem, vol.38, pp.1382-1387, 1999.

Y. Xie, D. Kocaefe, C. Chen, and Y. Kocaefe, Review of Research on Template Methods in Preparation of Nanomaterials, J. Nanomater, pp.1-10, 2016.

M. Meyns, Metal-semiconductor hybrid nanoparticles: Halogen induced shape control, hybrid synthesis and electrical transport, 2014.

X. Peng and J. Thessing, Semiconductor Nanocrystals and Silicate Nanoparticles, pp.79-119

, via Alternative Routes: Nucleation and Growth, J. Am. Chem. Soc, vol.124, pp.3343-3353, 2002.

Z. A. Peng and X. Peng, Mechanisms of the Shape Evolution of CdSe Nanocrystals, J. Am. Chem. Soc, vol.123, pp.1389-1395, 2001.

M. S. Bakshi, How Surfactants Control Crystal Growth of Nanomaterials, Cryst. Growth Des, vol.16, pp.1104-1133, 2016.

X. Peng, L. Manna, W. Yang, J. Wickham, E. Scher et al., Shape control of CdSe nanocrystals, vol.404, pp.59-61, 2000.

A. Wolcott, R. C. Fitzmorris, O. Muzaffery, and J. Z. Zhang, CdSe Quantum Rod Formation Aided By In Situ TOPO Oxidation, vol.22, pp.2814-2821, 2010.

Q. Pang, L. Zhao, Y. Cai, D. P. Nguyen, N. Regnault et al.,

G. Ferreira, J. Bastard, and . Wang, CdSe Nano-tetrapods: Controllable Synthesis, Structure Analysis, and Electronic and Optical Properties, vol.17, pp.5263-5267, 2005.
URL : https://hal.archives-ouvertes.fr/hal-00018146

S. Ithurria and B. Dubertret, Quasi 2D Colloidal CdSe Platelets with Thicknesses Controlled at the Atomic Level, J. Am. Chem. Soc, vol.130, pp.16504-16505, 2008.

I. Fedin and D. V. Talapin, Colloidal CdSe Quantum Rings, J. Am. Chem. Soc, vol.138, pp.9771-9774, 2016.

Z. Li and X. Peng, Size/Shape-Controlled Synthesis of Colloidal CdSe Quantum Disks: Ligand and Temperature Effects, J. Am. Chem. Soc, vol.133, pp.6578-6586, 2011.

S. Ithurria, G. Bousquet, and B. Dubertret, Continuous Transition from 3D to 1D Confinement Observed during the Formation of CdSe Nanoplatelets, J. Am. Chem. Soc, vol.133, pp.3070-3077, 2011.

M. Olutas, B. Guzelturk, Y. Kelestemur, A. Yeltik, S. Delikanli et al., Lateral Size-Dependent Spontaneous and Stimulated Emission Properties in Colloidal CdSe Nanoplatelets, ACS Nano, vol.9, pp.5041-5050, 2015.

C. Bouet, M. D. Tessier, S. Ithurria, B. Mahler, B. Nadal et al., Flat Colloidal Semiconductor Nanoplatelets, Chem. Mater, vol.25, pp.1262-1271, 2013.

C. She, I. Fedin, D. S. Dolzhnikov, P. D. Dahlberg, G. S. Engel et al.,

R. Talapin, . Yellow, . Green, and . Blue, Amplified Spontaneous Emission and Lasing Using Colloidal CdSe Nanoplatelets, ACS Nano, vol.9, pp.9475-9485, 2015.

S. Jana, T. N. Phan, C. Bouet, M. D. Tessier, P. Davidson et al.,

. Abécassis, Stacking and Colloidal Stability of CdSe Nanoplatelets, Langmuir, vol.31, pp.10532-10539, 2015.

E. Lhuillier, S. Pedetti, S. Ithurria, B. Nadal, H. Heuclin et al., Two-Dimensional Colloidal Metal Chalcogenides Semiconductors: Synthesis, Spectroscopy, and Applications, Accounts Chem. Res, vol.48, pp.22-30, 2015.

A. W. Achtstein, A. Antanovich, A. Prudnikau, R. Scott, U. Woggon et al., Linear Absorption in CdSe Nanoplates: Thickness and Lateral Size Dependency of the Intrinsic Absorption, J. Phys. Chem. C, vol.119, pp.20156-20161, 2015.

E. Lhuillier, S. Pedetti, S. Ithurria, B. Nadal, H. Heuclin et al., Two-Dimensional Colloidal Metal Chalcogenides Semiconductors: Synthesis, Spectroscopy, and Applications, Accounts Chem. Res, vol.48, pp.22-30, 2015.

A. Antanovich, A. W. Achtstein, A. Matsukovich, A. Prudnikau, P. Bhaskar et al., A strain-induced exciton transition energy shift in CdSe nanoplatelets: the impact of an organic ligand shell, Nanoscale, vol.9, pp.18042-18053, 2017.

B. Abécassis, M. D. Tessier, P. Davidson, and B. Dubertret, Self-Assembly of CdSe Nanoplatelets into Giant Micrometer-Scale Needles Emitting Polarized Light, Nano Lett, vol.14, pp.710-715, 2014.

A. Hassinen, I. Moreels, K. De-nolf, P. F. Smet, J. C. Martins et al., Short-Chain Alcohols Strip X-Type Ligands and Quench the Luminescence of PbSe and CdSe Quantum Dots, Acetonitrile Does Not, J. Am. Chem. Soc, vol.134, pp.20705-20712, 2012.

S. Jana, P. Davidson, and B. Abécassis, CdSe Nanoplatelets: Living Polymers, vol.55, pp.9371-9374, 2016.
URL : https://hal.archives-ouvertes.fr/hal-02308232

B. Guzelturk, O. Erdem, M. Olutas, Y. Kelestemur, and H. V. Demir, Stacking in Colloidal Nanoplatelets: Tuning Excitonic Properties, vol.8, pp.12524-12533, 2014.

A. Resnick, Introduction to Experimental Biophysics: Biological Methods for Physical Scientists, Contemp. Phys, vol.53, pp.379-379, 2012.

M. D. Tessier, C. Javaux, I. Maksimovic, V. Loriette, and B. Dubertret, Spectroscopy of Single CdSe Nanoplatelets, vol.6, pp.6751-6758, 2012.

M. D. Tessier, L. Biadala, C. Bouet, S. Ithurria, B. Abecassis et al., Phonon Line Emission Revealed by Self-Assembly of Colloidal Nanoplatelets, ACS Nano, issue.7, pp.3332-3340, 2013.
URL : https://hal.archives-ouvertes.fr/hal-01596104

M. Grzelczak, J. Vermant, E. M. Furst, and L. M. Liz-marzán, Directed Self-Assembly of Nanoparticles, vol.4, pp.3591-3605, 2010.

G. M. Whitesides, J. K. Kriebel, and B. T. Mayers, Nanoscale Assembly, pp.217-239, 2005.

G. M. Whitesides and B. Grzybowski, Self-Assembly at All Scales, vol.295, pp.2418-2421, 2002.

J. V. Timonen, M. Latikka, L. Leibler, R. H. Ras, and O. Ikkala, Switchable Static and Dynamic Self-Assembly of Magnetic Droplets on Superhydrophobic Surfaces, vol.341, pp.253-257, 2013.
URL : https://hal.archives-ouvertes.fr/hal-00979710

M. A. Boles, M. Engel, and D. V. Talapin, Self-Assembly of Colloidal Nanocrystals: From Intricate Structures to Functional Materials, Chem. Rev, vol.116, pp.11220-11289, 2016.

N. A. Kotov, Self-assembly of inorganic nanoparticles: Ab ovo, EPL Europhys. Lett, p.66008, 2017.

Y. Min, M. Akbulut, K. Kristiansen, Y. Golan, and J. Israelachvili, The role of interparticle and external forces in nanoparticle assembly, Nat. Mater, vol.7, p.527, 2008.

B. Abécassis, Three-Dimensional Self Assembly of Semiconducting Colloidal Nanocrystals: From Fundamental Forces to Collective Optical Properties, ChemPhysChem, vol.17, pp.618-631, 2016.

S. Jana, T. N. Phan, C. Bouet, M. D. Tessier, P. Davidson et al.,

. Abécassis, Stacking and Colloidal Stability of CdSe Nanoplatelets, Langmuir, vol.31, pp.10532-10539, 2015.

H. N. Lekkerkerker and R. Tuinier, Colloids and the depletion interaction, 2011.

R. Klajn, K. J. Bishop, and B. A. Grzybowski, Light-controlled self-assembly of reversible and irreversible nanoparticle suprastructures, Proc. Natl. Acad. Sci, vol.104, pp.10305-10309, 2007.

, Nano Lett, vol.14, pp.710-715, 2014.

A. Antanovich, A. W. Achtstein, A. Matsukovich, A. Prudnikau, P. Bhaskar et al., A strain-induced exciton transition energy shift in CdSe nanoplatelets: the impact of an organic ligand shell, Nanoscale, vol.9, pp.18042-18053, 2017.

M. Russew and S. Hecht, Photoswitches: From Molecules to Materials, Adv. Mater, vol.22, pp.3348-3360, 2010.

N. Withers, Molecular photoswitches: The worm that turned off, Nat. Chem, 2010.

A. A. Beharry and G. A. Woolley, Azobenzene photoswitches for biomolecules, Chem. Soc. Rev, p.4422, 2011.

D. Manna, T. Udayabhaskararao, H. Zhao, and R. Klajn, Orthogonal Light-Induced Self-Assembly of Nanoparticles using Differently Substituted Azobenzenes, vol.54, pp.12394-12397, 2015.

A. Eychmüller and A. L. Rogach, Chemistry and photophysics of thiol-stabilized II-VI semiconductor nanocrystals, Pure Appl. Chem, vol.72, pp.179-188, 2000.

A. C. Wisher, I. Bronstein, and V. Chechik,

, CdSe/ZnSe nanoparticles as protein transfection agents, Chem. Commun, p.1637, 2006.

R. R. Knauf, J. C. Lennox, and J. L. Dempsey, Quantifying Ligand Exchange Reactions at CdSe Nanocrystal Surfaces, Chem. Mater, vol.28, pp.4762-4770, 2016.

H. Akiyama, K. Tamada, J. Nagasawa, K. Abe, and T. Tamaki, Photoreactivity in Self-Assembled Monolayers Formed from Asymmetric Disulfides Having para-Substituted Azobenzenes, J. Phys. Chem. B, vol.107, pp.130-135, 2003.

. Bansal, Organic Reaction Mechanisms, Tata McGraw-Hill Education, 1998.

A. Yeltik, S. Delikanli, M. Olutas, Y. Kelestemur, B. Guzelturk et al., Experimental Determination of the Absorption Cross-Section and Molar Extinction Coefficient of Colloidal CdSe Nanoplatelets, J. Phys. Chem. C, vol.119, pp.26768-26775, 2015.

A. Antanovich, A. Prudnikau, A. Matsukovich, A. Achtstein, and M. Artemyev, Self-Assembly of CdSe Nanoplatelets into Stacks of Controlled Size Induced by Ligand Exchange, J. Phys. Chem. C, vol.120, pp.5764-5775, 2016.

B. Fritzinger, R. K. Capek, K. Lambert, J. C. Martins, and Z. Hens, Utilizing Self-Exchange To Address the Binding of Carboxylic Acid Ligands to CdSe Quantum Dots, J. Am. Chem. Soc, vol.132, pp.10195-10201, 2010.

B. C. Sih and M. O. Wolf, CdSe Nanorods Functionalized with Thiol-Anchored Oligothiophenes, J. Phys. Chem. C, vol.111, pp.17184-17192, 2007.

R. R. Knauf, J. C. Lennox, and J. L. Dempsey, Quantifying Ligand Exchange Reactions at CdSe Nanocrystal Surfaces, Chem. Mater, vol.28, pp.4762-4770, 2016.

R. S. Koster, C. Fang, A. Van-blaaderen, M. Dijkstra, and M. A. Van-huis, Acetate ligands determine the crystal structure of CdSe nanoplatelets -a density functional theory study, Phys. Chem. Chem. Phys, vol.18, pp.22021-22024, 2016.

M. D. Tessier, L. Biadala, C. Bouet, S. Ithurria, B. Abecassis et al., Phonon Line Emission Revealed by Self-Assembly of Colloidal Nanoplatelets, ACS Nano, issue.7, pp.3332-3340, 2013.
URL : https://hal.archives-ouvertes.fr/hal-01596104

A. P. Alivisatos, Semiconductor Clusters, Nanocrystals, and Quantum Dots, vol.271, pp.933-937, 1996.

S. Arslan, Phthalocyanines: Structure, Synthesis, Purification and Applications

C. G. Claessens, U. Hahn, and T. Torres, Phthalocyanines: From outstanding electronic properties to emerging applications, Chem. Rec, vol.8, pp.75-97, 2008.

H. Isago, Optical Spectra of Phthalocyanines and Related Compounds, 2015.

G. Löbbert, Ullmann's Encyclopedia of Industrial Chemistry, 2000.

F. Ghani, J. Kristen, and H. Riegler, Solubility Properties of Unsubstituted Metal Phthalocyanines in Different Types of Solvents, J. Chem. Eng. Data, vol.57, pp.439-449, 2012.

T. Nyokong, Equilibrium and kinetic studies of the reaction between pyridine and cobalt(II) phthalocyanine in DMSO, Polyhedron, vol.14, pp.2325-2329, 1995.

I. Ponce, J. F. Silva, R. Oñate, S. Miranda-rojas, A. Muñoz-castro et al., Theoretical and Experimental Study of Bonding and Optical Properties of Self-Assembly Metallophthalocyanines Complexes on a Gold Surface. A Survey of the Substrate-Surface Interaction, J. Phys. Chem. C, vol.115, pp.23512-23518, 2011.

M. Liao and S. Scheiner, Electronic structure and bonding in metal phthalocyanines, J. Chem. Phys, vol.114, pp.9780-9791, 2001.

D. R. Tackley, G. Dent, and W. E. Smith, Phthalocyanines: structure and vibrations, Phys. Chem. Chem. Phys, vol.3, pp.1419-1426, 2001.

G. Dent and F. Farrell, NIR FT Raman examination of phthalocyanines at 1064 nm, Spectrochim. Acta. A. Mol. Biomol. Spectrosc, vol.53, pp.21-23, 1997.

S. Jana, P. Davidson, and B. Abécassis, CdSe Nanoplatelets: Living Polymers, vol.55, pp.9371-9374, 2016.
URL : https://hal.archives-ouvertes.fr/hal-02308232

B. Guzelturk, O. Erdem, M. Olutas, Y. Kelestemur, and H. V. Demir, Stacking in Colloidal Nanoplatelets: Tuning Excitonic Properties, vol.8, pp.12524-12533, 2014.

M. D. Tessier, C. Javaux, I. Maksimovic, V. Loriette, and B. Dubertret, Spectroscopy of Single CdSe Nanoplatelets, vol.6, pp.6751-6758, 2012.

Y. P. Varshni, Temperature dependence of the energy gap in semiconductors, Physica, vol.34, pp.149-154, 1967.

, Rev B, vol.61, pp.12639-12642, 2000.

A. V. Khaetskii and Y. V. Nazarov, Spin-flip transitions between Zeeman sublevels in semiconductor quantum dots, Phys Rev B, vol.64, p.125316, 2001.

V. N. Golovach, A. Khaetskii, and D. Loss, Phonon-Induced Decay of the Electron Spin in Quantum Dots, Phys Rev Lett, p.16601, 2004.