A. Henglein, Chem. Rev, vol.89, pp.1861-1873, 1989.

S. Suresh, . Nanosci, and . Nanotechno, , vol.3, pp.62-74, 2013.

M. L. Steigerwald and L. E. Brus, Acc. Chem. Res, vol.23, pp.183-188, 1990.

M. G. Bawendi, M. L. Steigerwald, and L. E. Brus, Annu. Rev. Phy. Chem, vol.41, pp.477-496, 1990.

A. P. Alivisatos, J. Phys. Chem, vol.100, pp.13226-13239, 1996.

J. A. Stroscio and D. M. Eigler, Science, vol.254, pp.1319-1326, 1991.

S. Saliba, , 2011.

M. Fernández-garcía and J. A. Rodriguez, Metal oxide nanoparticles, Encyclopedia of Inorganic and Bioinorganic Chemistry, 2011.

H. C. Ong and T. G. Du, J. Cryst. Growth, vol.265, pp.471-175, 2004.

R. B. Lauer, J. Phys. Chem. Solids, vol.34, pp.249-253, 1973.

Z. Feng, R. Jia, B. Dou, H. Li, Z. Jin et al., Sol. Energy, vol.115, pp.770-776, 2015.

S. Pearton and F. Ren, Int. Mater. Rev, vol.59, pp.61-83, 2014.

M. C. Carotta, A. Cervi, V. Di-natale, S. Gherardi, A. Giberti et al., Sens. Actuators B, vol.137, pp.164-169, 2009.

Y. Zhang, J. Xu, Q. Xiang, H. Li, Q. Pan et al., J. Phys. Chem. C, vol.113, pp.3430-3435, 2009.

J. Xu, Q. Pan, Y. Shun, and Z. Tian, Sens. Actuators B, vol.66, pp.277-279, 2000.

S. C. Minne, S. R. Manalis, and C. F. Quate, Appl. Phys. Lett, p.3918, 1995.

X. , W. , Y. Fang, Q. Pang, C. Yang et al., J. Phys. Chem. B, vol.109, pp.15303-15308, 2005.

T. Shibata, K. Unno, E. Makino, Y. Ito, and S. Shimada, Sens. Actuators A, vol.102, pp.106-113, 2002.

M. Ul-islam, W. A. Khattak, M. W. Ullah, A. Kahn, and J. K. Park, Literature Review and Project Objectives, vol.21, pp.433-447, 2014.

J. Zhou, N. S. Xu, and Z. L. Wang, Adv. Mater, vol.18, pp.2432-2335, 2006.

H. Xiong, Y. Xu, Q. Ren, and Y. Xia, J. Am. Chem. Soc, vol.130, pp.7522-7523, 2008.

A. B. Djurisic and Y. H. Leung, Small, vol.2, pp.944-961, 2006.

Y. Idota, T. Kubota, A. Matsufuji, Y. Maekawa, and T. Miyasaka, Science, vol.276, pp.1395-1397, 1997.

G. Hodes, L. Thompson, J. Dubow, and K. Rajeshwar, J. Am. Chem. Soc, vol.105, pp.324-330, 1983.

A. Kolmakov, Y. Zhang, G. Cheng, and M. Moskovts, Adv. Mater, vol.15, pp.997-1000, 2003.

W. Du, Q. Wang, D. Saxner, N. A. Deskins, D. Su et al.,

X. Frenkel and . Teng, J. Am. Chem. Soc, vol.133, pp.15172-15183, 2011.

G. Wang, W. Lu, J. Li, J. Choi, Y. Jeong et al., Small, vol.2, pp.1436-1439, 2006.

R. Demir-cakan, Y. Hu, M. Antonietti, J. Maier, and M. Titirici, Chem. Mater, 1227.

Z. Wang, Adv. Mater, vol.14, p.1029, 2002.

H. Yang, J. Qian, Z. Chen, X. Ai, and Y. Cao, J. Phys. Chem. C, vol.111, p.14067, 2007.

J. Liu, Y. Wan, F. Meng, X. Huang, and J. Liu, J. Mater. Chem, p.2885, 2012.

A. Chen, X. Penng, K. Koczkur, and B. Miller, Chem. Commun, 1964.

S. Sun, G. Meng, Y. Wang, T. Gao, M. Zhang et al., Appl. Phys. A, vol.76, p.287, 2003.

D. Mohanta, M. Ahmaruzzaman, and . Adv, , vol.6, pp.110996-111015, 2016.

W. Wu, Q. He, and C. Jiang, Nanoscale Res. Lett, p.397, 2008.

N. Lee and T. Hyeon, Chem. Soc. Rev, p.2575, 2012.

W. Wu, Z. Wu, T. Yu, C. Jiang, and W. S. Kim, Sci. Technol. Adv. Mater, p.16, 2015.

M. Rajamathi and R. Seshadri, Curr. Opin. Solid State Mater. Sci, vol.6, pp.337-345, 2002.

N. R. Jana, L. Gearheart, and C. J. Murphy, Adv. Mater, vol.13, p.1389, 2001.

M. A. Correa-duarte, N. Sobal, L. M. Liz-marzán, and M. Giersig, Adv. Mater, vol.16, pp.2179-2184, 2004.

T. A. Crowley, K. J. Ziegler, D. M. Lyons, D. Erts, H. Olin et al., Chem. Mater, vol.15, pp.3518-2522, 2003.

Y. Yin, Y. Lu, B. Gates, and Y. Xia, J. Am. Chem. Soc, vol.123, pp.8718-8729, 2001.

J. Ohring, The Material Science of Thin Films, 1992.

M. Fernández-garcía and J. A. Rodriguez, Metal Oxide Nanoparticles. Encyclopedia of Inorganic and Bioinorganic Chemistry, 2011.

L. V. Interrante and M. J. Hampen-smith, Chemistry of Advanced Materials: An Overview', While-VCH, 1998.

A. E. Danks, S. R. Hall, and Z. Schnepp, Mater. Horizon, vol.3, pp.91-112, 2016.

M. Niederberger, Acc. Chem. Res, vol.40, pp.793-800, 2007.

J. Tang, F. Redl, Y. Zhu, T. Siegrist, L. E. Brus et al., Nano Lett, vol.5, issue.3, pp.543-548, 2005.

A. Grala, M. Wolska-pietkiewicz, W. Danowski, Z. Wróbel, J. Grzonka et al., Chem. Commun, vol.52, p.7340, 2016.

M. V. Pavliuk, A. M. Cie?lak, M. Abdellah, A. Budinská, S. Pullen et al.,

T. Hammarström, J. Edvinsson, J. Lewi?ski, and . Sá, Sustainable Energy Fuels, vol.1, pp.69-73, 2017.

P. Krupi?ski, A. Kornowicz, K. Sokolowski, A. M. Cie?lak, and J. Lewi?ski, Chem. Eur. J, vol.22, pp.7817-7823, 2016.

J. Paczesny, M. Wolska-pietkiewicz, I. Binkiewicz, Z. Wróbel, M. Wadowska et al.,

. Ho?yst, Chem. Eur. J, vol.21, pp.16941-16947, 2015.

J. Paczesny, M. Wolska-pietkiewicz, I. Binkiewicz, M. Wadowska, and Z. Wróbel, Literature Review and Project Objectives

K. Matu?a, W. Nogala, J. Lewi?ski, and R. Ho?yst, ACS Appl. Mater. Interfaces, vol.8, pp.13532-13541, 2016.

K. Soko?owski, I. Justyniak, W. Bury, J. Grzonka, Z. Kaszkur et al.,

J. Kurzyd?owski and . Lewi?ski, Chem. Eur. J, vol.21, pp.5488-5495, 2015.

A. M. Cie?lak, M. V. Pavliuk, L. D'amario, M. Abdellah, K. Soko?owski et al.,

A. Föhlinger, M. Budinská, L. Wolska-pietkiewicz, J. Hammarström, J. Lewi?ski et al., Nano Energy, vol.30, p.187, 2016.

D. Prochowicz, K. Soko?owski, and J. Lewi?ski, Coordin. Chem. Rev, pp.112-126, 2014.

S. Polarz, A. Orlov, A. Hoffmann, M. R. Wagner, C. Rauch et al., Chem. Mater, p.3889, 2009.

D. Lehr, M. Luka, M. R. Wagner, M. Buelger, A. Hoffmann et al., Chem. Mater, vol.24, pp.1771-1778, 2012.

C. Lizandara-pueyo, M. C. Morant-minana, M. Wessig, M. Krumm, S. Mecking et al., , vol.2, pp.5298-5306, 2012.

M. A. Dreher, M. Krumm, C. Lizandara-pueyo, S. Polarz, and D. Trans, , vol.39, pp.2232-2238, 2010.

S. Dilger, C. Lizandara-pueyo, M. Krumm, and S. Polarz, Adv. Mater, vol.24, pp.543-548, 2012.

M. Gerigk, J. Bahner, T. Kollek, S. Helfrich, R. Rosenberg et al., Part. Part. Syst. Charact, vol.34, p.1600215, 2017.

K. Hagedorn, W. Li, Q. Liang, S. Dilger, M. Noebels et al., CrystEngComm, vol.16, pp.1525-1531, 2014.

C. Lizandara-pueyo, S. Siroky, M. R. Wagner, A. Hoffmann, J. S. Reparaz et al., Adv. Funct. Mater, vol.21, pp.295-304, 2011.

S. Polarz, F. Neues, M. W. Van-den-berg, W. Grünert, and L. Khodeir, J. Am. Chem. Soc, vol.127, pp.12028-12034, 2005.

C. L. Pueyo, S. Siroky, S. Landsmann, M. W. Van-den-berg, M. R. Wagner et al., Chem. Mater, vol.22, pp.4263-4270, 2010.

M. Krumm, C. L. Pueyo, and S. Polarz, Chem. Mater, vol.22, pp.5129-5136, 2010.

S. Dilger, M. Wessig, M. R. Wagner, J. S. Reparaz, C. M. Sotomayor-torres et al., Cryst. Growth Des, vol.14, pp.4593-4601, 2014.

M. Gerigk, P. Ehrenreich, M. R. Wagner, I. Wimmer, J. S. Reparaz et al., Nanoscale, vol.7, pp.16969-16982, 2015.

C. Lizandara-pueyo, M. W. Van-den-berg, A. De-toni, T. Goes, and S. Polarz, J. Am. Chem. Soc, vol.130, pp.16601-16610, 2008.

S. Polarz, A. V. Orlov, M. W. Van-den-berg, and M. Driess, Angew. Chem. Int. Ed, vol.44, pp.7892-7896, 2005.

S. Polarz, A. Roy, M. Merz, S. Halm, D. Schröder et al., Small, vol.1, pp.540-552, 2005.

S. Polarz, J. Strunk, V. Ischenko, M. W. Van-den-berg, O. Hinrichsen et al., Angew. Chem. Int. Ed, vol.45, pp.2965-2969, 2006.

S. Polarz, A. Roy, M. Lehmann, M. Driess, F. E. Kruis et al.,

. Zimmer, Adv. Funct. Mater, vol.17, pp.1385-1391, 2007.

S. Polarz, R. Regenspurger, and J. Hartmann, Angew. Chem. Int. Ed, vol.46, pp.2426-2430, 2007.

S. Polarz, A. V. Orlov, F. Schüth, and A. Lu, Chem. Eur. J, vol.13, pp.592-597, 2007.

M. Krumm, F. Pawlitzek, J. Weickert, L. Schmidt-mende, and S. Polarz, ACS Appl. Mater. Interfaces, vol.4, pp.6522-6529, 2012.

M. Voggenreiter, P. Vöpel, B. Smarsly, and S. Polarz, Z. Anorg. Allg. Chem, vol.643, pp.93-100, 2017.

S. D. Pike, E. R. White, M. S. Shaffer, and C. K. Williams, Nat. Commun, 2016.

M. L. Kahn, A. Glaria, C. Pages, M. Monge, L. S. Macary et al., J. Mater. Chem, vol.19, pp.4044-4060, 2009.

F. Rataboul, C. Nayral, M. J. Casanove, A. Maisonnat, and B. Chaudret, J. Organomet. Chem, p.307, 2002.

M. Monge, M. L. Kahn, A. Maisonnat, and B. Chaudret, Angew. Chem. Int. Ed, vol.42, pp.5321-5324, 2003.

A. Glaria, M. L. Kahn, P. Lecante, B. Barbara, and B. Chaudret, ChemPhysChem, vol.9, pp.776-780, 2008.

M. L. Kahn, T. Cardinal, B. Bousquet, M. Monge, V. Jubera et al., ChemPhysChem, vol.7, pp.2392-2397, 2006.

J. Rubio-garcia, A. Dazzazi, Y. Coppel, P. Mascalchi, L. Salomé et al., J. Mater. Chem, vol.22, pp.14538-14545, 2012.

M. L. Kahn, M. Monge, V. Collière, F. Senocq, A. Maisonnat et al., Adv. Funct. Mater, vol.15, pp.458-468, 2005.

M. L. Kahn, M. Monge, E. Snoeck, A. Maisonnat, and B. Chaudret, Small, vol.1, pp.221-224, 2005.

Y. Champouret, Y. Coppel, and M. L. Kahn, J. Am. Chem. Soc, vol.138, pp.16322-16328, 2016.

Y. Coppel, G. Spataro, C. Pagès, B. Chaudret, A. Maisonnat et al., Chem. Eur. J, vol.18, pp.5384-5393, 2012.

S. Saliba, C. V. Serrano, J. Keilitz, M. L. Kahn, C. Mingotaud et al., Chem. Mater, vol.22, pp.6301-6309, 2010.

S. Saliba, P. Davidson, M. Impéror-clercd, C. Mingotaud, M. L. Kahn et al., J. Mater. Chem, 2011.

S. Saliba, Y. Coppel, P. Davidson, C. Mingotaud, B. Chaudret et al., J. Mater. Chem, 2011.

S. Saliba, C. Mingotaud, M. L. Kahn, and J. Marty, Nanoscale, issue.5, p.6641, 2013.

J. Jo?ca, J. Harmel, L. Joanny, A. Ryzhikov, M. L. Kahn et al., Sens. Actuators B, vol.249, pp.357-363, 2017.

S. Saliba and Y. Coppel,

M. L. Marty and . Kahn, Angew. Chem, vol.123, pp.12238-12241, 2011.

S. Saliba, Y. Coppel, C. Mingotaud, J. Marty, and M. L. Kahn, Chem. Eur. J, vol.18, pp.8084-8091, 2012.

Z. Zhao, Z. Zheng, C. Roux, C. Delmas, J. Marty et al., Chem. Eur. J, vol.22, pp.12424-12429, 2016.

G. Spataro, A. Dazzazi, S. Fortuny, Y. Champouret, Y. Coppel et al.,

A. Garcia, F. Bouhaouss, M. L. Gauffre, and . Kahn, Eur. J. Inorg. Chem, pp.2056-2062, 2016.

A. Glaria, M. L. Kahn, T. Cardinal, F. Senocq, V. Juberab et al., New J. Chem, vol.32, pp.662-669, 2008.

A. Dazzazi, Y. Coppel, M. In, C. Chassenieux, P. Mascalchi et al.,

A. Bouhaouss, M. L. Kahn, and F. Gauffre, J. Mater. Chem. C, vol.1, pp.2158-2165, 2013.

J. Rubio-garcia, Y. Coppel, P. Lecante, C. Mingotaud, B. Chaudret et al.,

M. L. Gauffre and . Kahn, Chem. Commun, vol.47, pp.988-990, 2011.

Z. Zheng, R. Butynska, C. V. Serrano, J. Marty, C. Mingotaud et al., Chem. Eur. J, vol.22, pp.15614-15618, 2016.

M. L. Kahn, T. Cardinal, B. Bousquet, M. Monge, V. Jubera et al.,

. Chaudret, , vol.7, pp.2392-2397, 2006.

C. Amiens, B. Chaudret, D. Ciuculescu-pradines, V. Collière, and K. ,

P. Fajerwerg, M. L. Fau, A. Kahn, K. Maisonnat, K. Soulanticac et al., New J. Chem, vol.37, pp.3374-3401, 2013.

J. Carrey1, H. Carrère, M. L. Kahn, B. Chaudret, X. Marie et al.,

. Respaud, Semicond. Sci. Technol, vol.23, p.25003, 2008.

J. Massaad, Y. Coppel, M. Sliwa, M. L. Kahn, C. Coudret et al., Phys. Chem. Chem. Phys, p.22775, 2014.

F. Güell, P. R. Martínez-alanis, S. Khachadorian, J. Rubio-garcía, and A. ,

A. Franke, G. Hoffmann, and . Santana, Phys. Status Solidi B, issue.5, pp.883-888, 2016.

C. Pagès, Y. Coppel, M. L. Kahn, A. Maisonnat, and B. Chaudret, ChemPhysChem, vol.10, pp.2334-2344, 2009.

Y. Coppel, G. Spataro, V. Collière, B. Chaudret, C. Mingotaud et al.,

M. L. Maisonnat and . Kahn, Eur. J. Inorg. Chem, pp.2691-2699, 2012.

L. S. Macary, M. L. Kahn, C. Estournès, P. Fau, D. Trémouilles et al.,

P. Bafleur, B. Renaud, and . Chaudret, Adv. Funct. Mater, vol.19, pp.1775-1783, 2009.

J. Rubio-garcia, A. Dazzazi, Y. Coppel, P. Mascalchi, L. Salomé et al.,

M. L. Bouhaouss, F. Kahn, and . Gauffre, J. Mater. Chem, vol.22, pp.14538-14545, 2012.

C. Nayral, T. Ould-ely, A. Maisonnat, B. Chaudret, P. Fau et al., Adv. Mater, vol.11, pp.61-63, 1999.

C. Nayral, E. Viala, V. Collière, P. Fau, F. Senocq et al.,

. Chaudret, Appl. Surf. Sci, vol.164, pp.219-226, 2000.

P. Fau, M. Sauvan, S. Trautweiler, C. Nayral, L. Erades et al.,

. Chaudret, Sens. Actuators B, vol.78, issue.1-3, pp.83-88, 2001.

J. M. Ducéré, A. Hemeryck, A. Estève, M. D. Rouhani, G. Landa et al.,

C. Ménini, A. Tropis, P. Maisonnat, B. Fau, and . Chaudret, J. Comput. Chem, vol.33, pp.247-258, 2011.

C. Nayral, E. Viala, P. Fau, F. Senocq, J. Jumas et al.,

. Chaudret, Chem. Eur. J, vol.6, pp.4082-4090, 2000.

J. Jo?ca, A. Ryzhikov, M. L. Kahn, K. Fajerwerg, A. Chapelle et al.,

. , Applications de l'analysis par représentation 2D

. .. Conclusion,

. .. Références,

, Chapter II Shape analysis of anisotropic nanoparticles

). P. Wojcik, How to measure nanoparticle size distribution using SEM pic

M. J. Walsh, S. J. Barrow, W. Tong, A. M. Funston, and J. Etheridge, Symmetry Breaking and Silver in Gold Nanorod Growth, ACS Nano, vol.9, pp.715-724, 2015.

F. Gomez-grana, F. Hubert, A. Testard, I. Guerrero-martinez, L. M. Grillo et al.,

O. Spalla, Surfactant (Bi)Layers on Gold Nanorods, Langmuir, vol.28, pp.1453-1459, 2012.

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.

P. Giraudeau, Quantitative 2D liquid-state NMR, Magn. Reson. Chem, vol.52, pp.259-272, 2014.

C. Igathinathane, L. O. Pordesimo, E. P. Columbus, W. D. Batchelor, and S. R. Methuku, Shape identification and particles size distribution from basic shape parameters using

, ImageJ. Comput. Electron. Agr, vol.63, issue.2, pp.168-182, 2008.

O. Riou, B. Lonetti, P. Davidson, R. P. Tan, B. Cormary et al., Liquid Crystalline Polymer-Co Nanorod Hybrids: Structural Analysis and Response to a Magnetic Field
URL : https://hal.archives-ouvertes.fr/hal-02025975

, J. Phys. Chem. B, issue.11, pp.3218-3225, 2014.

J. Bomm, A. Buchtemann, A. Fiore, L. Manna, J. H. Nelson et al., Fabrication and spectroscopic studies on highly luminescent CdSe/CdS nanorod polymer composites, Beilstein J. Nanotechnol, vol.1, pp.94-100, 2010.

K. C. Ng and W. L. Cheng, Fine-tuning longitudinal plasmon resonances of nanorods by thermal reshaping in aqueous media, Nanotechnology, vol.23, p.105602, 2012.

R. C. Wadams, L. Fabris, R. A. Vaia, and K. Park, Time-Dependent Susceptibility of the Growth of Gold Nanorods to the Addition of a Cosurfactant, Chem. Mater, vol.25, pp.4772-4780, 2013.

M. Monge, M. L. Kahn, A. Maisonnat, and B. Chaudret, Angew. Chem. Inter. Ed, vol.42, pp.5321-5324, 2003.

M. L. Kahn, M. Monge, V. Collière, F. Senocq, A. Maisonnat et al., Adv. Funct. Mater, vol.15, pp.458-468, 2005.

M. L. Kahn, A. Glaria, C. Pages, M. Monge, L. Saint-macary et al., J. Mater. Chem, vol.19, pp.4044-4060, 2009.

Z. Zheng, R. Butynska, C. Valverde, J. D. Serrano, C. Marty et al., Chem. Eur. J, vol.22, pp.15614-15618, 2016.

. , Diffusion des rayons-X aux grand angles (WAXS)

. .. Conclusion,

. .. Références,

, Nanoparticles: From Theory to Application, 2006.

A. K. Ganguli, A. Ganguly, and S. Vaidya, Chem. Soc. Rev, p.474, 2010.

Z. Zhuang, Q. Peng, and Y. Li, Chem. Soc. Rev, vol.40, p.5492, 2011.

M. R. Langille, M. L. Personick, and C. A. Mirkin, Angew. Chem. Int. Ed, vol.52, p.13910, 2013.

H. Duan, D. Wang, and Y. Li, Chem. Soc. Rev, vol.44, p.5778, 2015.

S. Diodati, P. Dolcet, M. Casarin, and S. Gross, Chem. Rev, vol.115, p.11449, 2015.

C. Dhand, N. Dwivedi, X. J. Loh, A. N. Ying, N. K. Verma et al., , vol.5, p.105003, 2015.

A. Feinle, M. S. Elsaesser, and N. Husing, Chem. Soc. Rev, vol.45, p.3377, 2016.

D. Gu and F. Schuth, Chem. Soc. Rev, vol.43, p.313, 2014.

A. E. Danks and S. R. Hall, Z. Schnepp, Mater. Horizon, vol.3, p.91, 2016.

A. Carretero-genevrier, G. L. Drisko, D. Grosso, C. Boissiere, and C. Sanchez, Nanoscale, vol.6, p.14025, 2014.

S. Wu, C. Mou, and H. Lin, Chem. Soc. Rev, vol.42, p.3862, 2013.

M. P. Pechini, Method of preparing lead and alkaline earth titanates and niobates and coating method using the same to form a capacitor. US patent US3330697 A, 1967.

M. L. Kahn, A. Glaria, C. Pages, M. Monge, L. Saint-macary et al., J. Mat. Chem, vol.19, p.4044, 2009.

C. Amiens, B. Chaudret, D. Ciuculescu-pradines, V. Colliere, K. Fajerwerg et al., New J. Chem, p.3374, 2013.

M. Monge, M. L. Kahn, A. Maisonnat, and B. Chaudret, Angew. Chem. Int. Ed, vol.42, p.5321, 2003.

A. Ponton, S. Warlus, and P. Griesmar, J Colloid Interface Sci, p.209, 2002.

Y. Tanaka, , 2012.

Z. Zheng, R. Butynska, C. V. Serrano, J. Marty, C. Mingotaud et al., Chem. Eur. J, vol.22, p.15614, 2016.

Y. Coppel, G. Spataro, C. Pagès, B. Chaudret, A. Maisonnat et al., Chem. Eur. J, vol.18, p.5384, 2012.

M. Westerhausen, T. Bollwein, A. Pfitzner, T. Nilges, and H. Deiseroth, Inorg. Chim. Acta, p.239, 2001.

S. D. Cosham, M. S. Hill, A. L. Johnson, and K. C. Molloy, Dalton Trans, p.859, 2014.

Z. Zheng, R. Butynska, C. V. Serrano, J. Marty, C. Mingotaud et al., Chem. Eur. J, vol.22, p.15614, 2016.

A. Nowacka, P. C. Mohr, J. Norrman, R. W. Martin, and D. Topgaard, , 2010.

S. Grimme, Wiley Interdisciplinary Reviews: Computational Molecular Science, 2011.

A. D. Pajerski, G. L. Bergstresser, M. Parvez, and H. G. Richey, J.Am. Chem. Soc, vol.110, p.6063, 1988.

N. A. Bell, H. M. Shearer, and C. B. Spencer, Acta Crystallographica Section C, p.1182, 1983.

J. G. Noltes and J. Boersma, J. Organomet. Chem, p.345, 1969.

G. E. Coates and D. Ridley, J. Chem. Soc, p.1870, 1965.

M. L. Kahn, A. Glaria, C. Pages, M. Monge, L. Saint-macary et al., J. Mater. Chem, vol.19, p.4044, 2009.

Z. H. Zhao, Z. Q. Zheng, C. Roux, C. Delmas, J. D. Marty et al., Chem.-Eur. J, vol.22, p.12424, 2016.

. .. Méthodes-de-synthèse,

. Synthèses and I. .. Chapter,

. Synthèses and I. .. Chapter,

. Synthèses and I. .. Chapter,

. .. Méthodes-de-caractérisation,

, Microscopie électronique à balayage à émission de champ (FE-SEM), p.163

. , Analyse calorimétrique différentielle (DSC)

. .. Microscopie-optique-polarisée-;-pom),

. .. Spectroscopie-de-photoluminscence,

R. .. Spectroscopie,

. .. Rhéologie,

. .. Mesures-de-photocourant,

. .. Tests-sous-gaz,

. .. Analysis-statisitque,

R. .. Programme,

. .. Produits-chimiques,

. .. Références,

P. M. Chassaing, Surface optical phonons as a probe of organic ligands on ZnO nanoparticles: An investigation using a dielectric continuum model and Raman spectrometry, Physical Review B, vol.77, p.153306, 2008.

P. J. Wojcik and . Video, How to measure nanoparticle size distribution using SEM pic

C. Igathinathane, L. O. Pordesimo, E. P. Columbus, W. D. Batchelor, and S. R. Methuku, Shape identification and particles size distribution from basic shape parameters using ImageJ. Computers and Electronics in Agriculture, vol.63, pp.168-182, 2008.