M. North, What Is CO2? Thermod namics, Basic Reactions and Ph sical Chemistr, 2014.

T. Cantat, C. Das-neves, C. Gomes, M. Villiers, P. Ephritikhine et al., Ange . Chem. Int. Ed, vol.51, pp.187-190, 2011.

R. Sanderson, Chem. Bond. Bond Energ, pp.177-191, 1976.

I. O. , Chemistry, Ind. Org. Chem, pp.1-13, 2008.

J. J. Pijpers, K. Sung, S. Y. Reece, D. G. Nocera, T. D. Jarvi et al., Science, vol.334, pp.645-648, 2011.

N. S. Lewis and D. G. Nocera, Proc. Natl. Acad. Sci, vol.103, pp.15729-15735, 2006.

K. Miyamoto, Rene able Biological S stems for Alternative Sustainable Energ Production, 1997.

M. Aresta, Carbon Dio ide: As Chemical Feedstock, 2010.

K. A. Andrianov, Organic Silicon Compounds, 1955.

F. Clarke, The Data of Geochemistr, 1924.

Y. Luo, Comprehensive Handbook of Chemical Bond Energies, 2007.

R. Walsh, Acc. Chem. Res, vol.14, pp.246-252, 1981.

C. Pape, Justus Liebigs Ann. Chem, vol.1872, p.35

H. C. Brown and B. C. Subba-rao, J. Am. Chem. Soc, vol.78, pp.5694-5695, 1956.

H. C. Brown and B. C. Rao, J. Am. Chem. Soc, vol.78, pp.2582-2588, 1956.

P. R. Rablen and J. F. Hartwig, J. Am. Chem. Soc, vol.118, pp.4648-4653, 1996.

R. Hofmann, M. Vlatkovi?, and F. Wiesbrock, Pol mers (Basel). 2017, 9, p.534

L. H. Sommer, E. W. Pietrusza, and F. C. Whitmore, J. Am. Chem. Soc, p.188, 1947.

J. L. Speier, R. Zimmerman, and J. Webster, J. Am. Chem. Soc, vol.78, pp.2278-2281, 1956.

A. J. Chalk and J. F. Harrod, J. Am. Chem. Soc, vol.87, pp.16-21, 1965.

F. De-angelis, N. Re, A. Sgamellotti, and G. Giorgi, Futur. Gener. Comput. S st, vol.20, pp.781-791, 2004.

A. Marinetti, Tetrahedron Lett, vol.35, pp.5861-5864, 1994.

J. L. Speier, J. A. Webster, and G. H. Barnes, J. Am. Chem. Soc, vol.79, pp.974-979, 1957.

H. Maciejewski, B. Marciniec, and I. Kownacki, J. Organomet. Chem, vol.597, pp.175-181, 2002.

R. Takeuchi and N. Tanouchi, J. Chem. Soc. Chem. Commun, vol.2, pp.1319-1320, 1993.

B. Marciniec, Coord. Chem. Rev, vol.249, pp.2374-2390, 2005.

J. Y. Corey and X. H. Zhu, Organometallics, vol.11, pp.672-683, 1992.

E. Barnea and M. S. Eisen, Coord. Chem. Rev, vol.250, pp.855-899, 2006.

Y. S. Song, B. R. Yoo, G. H. Lee, and I. N. Jung, Organometallics, vol.18, pp.3109-3115, 1999.

H. Steinberger, C. Bauch, T. Müller, and N. Auner, Can. J. Chem, vol.81, pp.1223-1227, 2003.

S. Amrein and A. Studer, Chem. Commun, vol.2, pp.1592-1593, 2002.

J. C. Walton and A. Studer, Acc. Chem. Res, vol.38, pp.794-802, 2005.

M. Zaranek and P. Pawluc, ACS Catal, vol.8, pp.9865-9876, 2018.

E. W. Bennett and P. J. Orenski, J. Organomet. Chem, vol.28, pp.137-144, 1971.

N. Komine, M. Abe, R. Suda, and M. Hirano, Organometallics, vol.34, pp.432-437, 2015.

B. M. Trost and Z. T. Ball, S nthesis (Stuttg), pp.853-887, 2005.

I. Fleming, H. E. Plaut, D. C. Parker, P. E. Sanderson, and R. Henning, J. Chem. Soc, pp.317-337, 1995.

M. Fujita and T. Hiyama, J. Am. Chem. Soc, vol.106, pp.4629-4630, 1984.

J. M. Blackwell, E. R. Sonmor, T. Scoccitti, and W. E. Piers, Org. Lett, vol.2, pp.3921-3923, 2002.

N. Gandhamsetty, J. Jeong, J. Park, S. Park, and S. Chang, J. Org. Chem, vol.80, pp.7281-7287, 2015.

H. C. Wu, J. Q. Yu, and J. B. Spencer, Org. Lett, vol.6, pp.4675-4678, 2004.

B. Marciniec, J. Gulinski, W. Urbaniak, and Z. W. Kormetka, Comprehensive Handbook on H drosil lation, 1992.

S. Díez-gonzález and S. P. Nolan, Acc. Chem. Res, vol.41, pp.349-358, 2008.

S. Rendler and M. Oestreich, Ange . Chem. Int. Ed, vol.46, pp.498-504, 2007.

J. Carpentier and V. Bette, Curr. Org. Chem, vol.6, pp.913-936, 2005.

O. Riant, N. Mostefaï, and J. Courmarcel, S nthesis (Stuttg), pp.2943-2958, 2004.

T. Hiyama-;-f.-diederich and P. J. Stang, , pp.421-453, 1998.

H. Koinuma, F. Kawakami, H. Kato, and H. Hirai, J. Chem. Soc. Chem. Commun, pp.213-214, 1981.

T. C. Eisenschmid and R. Eisenberg, Organometallics, vol.8, pp.1822-1824, 1989.

S. N. Riduan, Y. Zhang, and J. Y. Ying, Ange . Chem. Int. Ed, vol.48, pp.3322-3325, 2009.

X. Frogneux, O. Jacquet, and T. Cantat, Catal. Sci. Technol, vol.4, pp.1529-1533, 2014.

T. Fujihara, T. Xu, K. Semba, J. Terao, and Y. Tsuji, Ange . Chem. Int. Ed, vol.50, pp.523-527, 2011.

O. Jacquet, X. Frogneux, C. Das-neves, T. Gomes, and . Cantat, Chem. Sci, vol.4, pp.2127-2131, 2013.

O. Jacquet, C. Das-neves, M. Gomes, T. Ephritikhine, and . Cantat, J. Am. Chem. Soc, vol.134, pp.2934-2937, 2012.

H. Maciejewski, A. Wawrzy?czak, M. Dutkiewicz, and R. Fiedorow, J. Mol. Catal. A Chem, vol.257, pp.141-148, 2006.

J. W. Curry, J. Am. Chem. Soc, vol.78, pp.1686-1689, 1956.

J. W. Curry, J. Org. Chem, vol.26, pp.1308-1309, 1961.

R. J. Corriu, D. Leclercq, P. H. Mutin, J. M. Planeix, and A. Vioux, Organometallics, vol.12, pp.454-462, 1993.

B. Boury, R. J. Corriu, D. Leciercq, P. H. Mutin, J. M. Pianeix et al., Organometallics, vol.10, pp.1457-1461, 1991.

M. A. Brook, Chem. Eur. J, vol.24, pp.8458-8469, 2018.

D. Krzysik, Silicon Containing Care Cosmetic Composition, 1994.

D. Halloran and S. Daunheimer, Hair Treatment With Blended Silicones, 1994.

R. Thimineur, F. Traver, and V. Valkenburgh, Personal Care Compositions Containing Pol alk lsilo ane Copol mers, vol.5626857, 1997.

K. Lowrey, Laundr Detergent Composition, 2001.

J. Adams, C. Jones, and M. Maxwell, Fabric Softening Compositions, 2001.

I. H. Alberts and W. Grape, Lubricating Oil Preparations, 1987.

G. Koerner and D. Schaefer, Crude Oil With a Depressed Pour Point, 1990.

E. Groenhof, D. Romenesko, and R. Streu, Silicone Brake Fluid Having Reduced Air Solubilit, 1987.

R. Spiegler, M. Kreup, S. Sibler, and ;. De-4343235c1, Use of Organofunctionall Modified Pol silo anes for Defoaming Diesel Fuel, 1993.

H. C. Brown and P. A. Tierney, J. Am. Chem. Soc, vol.80, pp.1552-1558, 1958.

J. V. Obligacion and P. J. Chirik, Nat. Rev. Chem, vol.2, pp.15-34, 2018.

A. Suzuki, Heteroc cles 2010, vol.80, pp.15-43

C. C. Chong and R. Kinjo, , vol.5, pp.3238-3259, 2015.

V. L. Weidner, C. J. Barger, M. Delferro, T. L. Lohr, and T. J. Marks, , vol.7, pp.1244-1247, 2017.

D. Bézier, G. T. Venkanna, L. C. Castro, J. Zheng, T. Roisnel et al., Adv. S nth. Catal, vol.354, pp.1879-1884, 2012.

H. Nohira, T. Yamakawa, and M. Masaki, Bull. Chem. Soc. Jpn, vol.64, pp.2730-2734, 1991.

A. Bhanu-prassad, J. Bhaskar, and M. Periasamy, Tetrahedron, vol.48, pp.4628-4628, 1992.

P. G. Jessop, T. Ikariya, and R. Noyori, Chem. Rev, vol.95, pp.259-272, 1995.

S. Chakraborty, J. Zhang, J. A. Krause, and H. Guan, J. Am. Chem. Soc, vol.2, pp.8872-8873, 2010.

G. Ménard and D. W. Stephan, J. Am. Chem. Soc, vol.132, pp.1796-1797, 2010.

H. Stachowiak, J. Ka?mierczak, K. Kuci?ski, and G. Hreczycho, Green Chem, vol.20, pp.1738-1742, 2018.

J. L. Lortie, T. Dudding, B. M. Gabidullin, and G. I. Nikonov, , vol.7, pp.8454-8459, 2017.

P. Bujak, I. Kulszewicz-bajer, M. Zagorska, V. Maurel, I. Wielgus et al., Chem. Soc. Rev, vol.42, pp.8895-8999, 2013.

T. J. Barnes, K. L. Jarvis, and C. A. Prestidge, Ther. Deliv, vol.4, pp.811-823, 2013.

H. Moretto, M. Schulze, and G. Wagner, in Ullmann s Enc cl, Ind. Chem, pp.675-708, 2000.

B. A. Kamino and T. P. Bender, Chem. Soc. Rev, vol.42, pp.5119-5130, 2013.

W. J. Debenedetti and Y. J. , J. Vac. Sci. Technol. A Vacuum, Surfaces, Film, p.31, 2013.

S. Chatterjee, R. Carter, L. Oakes, W. R. Erwin, R. Bardhan et al., J. Ph s. Chem. C, vol.118, pp.10893-10902, 2014.

P. L. Timms, J. Chem. Soc. Dalton. Trans, pp.815-822, 1999.

P. Briend, B. Alban, H. Chevrel, and D. Jahan, Method For Rec cling Silane, 2011.

M. A. Kreiger, D. R. Shonnard, and J. M. Pearce, Resour. Conserv. Rec cl, vol.70, pp.44-49, 2013.

W. Jordan, H. Van-barneveld, O. Gerlich, M. Kleine-boymann, and J. Ullrich, Ullmann s Enc cl. Ind. Chem, pp.503-518, 2000.

S. Díez-gonzález and S. P. Nolan, Org. Prep. Proced. Int, vol.39, pp.523-559, 2007.

B. Kammermeier, Ullmann s Enc cl, Ind. Chem, pp.329-354, 2000.

A. Bauer, J. Teknol. Inf. Dan Komun. STMIK ProVisi Semarang, pp.209-270, 2016.

U. Wietelmann, M. Felderhoff, and P. Rittmeyer, Ullmann s Enc cl, Ind. Chem, pp.1-39, 2016.

R. J. Brotherton, C. J. Weber, C. R. Guibert, and J. L. Little, Ullmann s Enc cl. Ind. Chem, pp.237-255, 2000.

, Silane -Global Market Outlook, 2017.

L. Rösch, P. John, and R. Reitmeier, Ullmann s Enc cl, Ind. Chem, pp.637-669, 2000.

A. Boudin, G. Cerveau, C. Chuit, R. J. Corriu, and C. Reye, Organometallics, vol.7, pp.1165-1171, 1988.

J. M. Roberts, D. Eldred, and D. E. Katsoulis, Ind. Eng. Chem. Res, vol.55, pp.1813-1818, 2016.

N. Z. Burns, P. S. Baran, and R. W. Hoffmann, Ange . Chem. Int. Ed, vol.48, pp.2854-2867, 2009.

P. Ehrlich, Handbook of Preparative Inorganic Chemistr, 1963.

D. S. Matteson, , pp.307-409, 1987.

H. C. Brown, S. Krishnamurthy, and N. M. Yoon, J. Org. Chem, vol.41, pp.1778-1791, 1976.

S. Amrein, A. Timmermann, and A. Studer, Org. Lett, vol.3, pp.2357-2360, 2001.

A. Studer and S. Amrein, Ange . Chem. Int. Ed, vol.39, pp.3080-3082, 2000.

S. Amrein and A. Studer, Helv. Chim. Acta, vol.85, pp.3559-3574, 2002.

A. Simonneau and M. Oestreich, Ange . Chem. Int. Ed, vol.52, pp.11905-11907, 2013.

A. Simonneau and M. Oestreich, Nat. Chem, vol.7, pp.816-822, 2015.

S. Keess, A. Simonneau, and M. Oestreich, Organometallics, vol.34, pp.790-799, 2015.

A. Simonneau, J. Friebel, and M. Oestreich, Eur. J. Org. Chem, pp.2077-2083, 2014.

J. P. Mercier, P. Goddard, E. Maréchal, and C. Organique, , 2001.

W. Yuan, P. Orecchia, and M. Oestreich, Chem. Commun, vol.53, pp.10390-10393, 2017.

C. Chauvier, P. Thuéry, and T. Cantat, Ange . Chem. Int. Ed, vol.55, pp.14096-14100, 2016.

B. I. Podlovchenko, E. A. Kolyadko, and S. Lu, J. Electroanal. Chem, vol.373, pp.185-187, 1994.

X. Lu, D. Y. Leung, H. Wang, M. K. Leung, and J. Xuan, , vol.1, pp.836-849, 2014.

C. Chauvier, P. Thuéry, and T. Cantat, Chem. Sci, vol.7, pp.5680-5685, 2016.

C. Chauvier, A. Tlili, C. Das-neves, P. Gomes, T. Thuéry et al., Chem. Sci, vol.6, pp.2938-2942, 2015.

C. J. Brinker and G. W. Scherer, Sol-Gel Sci, pp.16-18, 1990.

C. J. Brinker and G. W. Scherer, Sol-Gel Sci, pp.96-233, 1990.

C. J. Brinker and G. W. Scherer, Sol-Gel Sci, pp.838-880, 1990.

T. W. Wuts and P. G. Greene, Greene s Prot. Groups Org. S nth, pp.16-366, 2007.

T. Maehara, K. Motoyama, T. Toma, S. Yokoshima, T. Fukuyama et al., , vol.56, pp.1549-1552, 2017.

A. W. Schuppe and T. R. Newhouse, J. Am. Chem. Soc, vol.139, pp.631-634, 2017.

J. M. Halket and V. G. Zaikin, Eur. J. Mass Spectrom, vol.9, pp.1-21, 2003.

E. J. Corey and A. Venkateswarlu, J. Am. Chem. Soc, vol.94, pp.6190-6191, 1972.

E. J. Corey, H. Cho, C. Rücker, and D. H. Hua, Tetrahedron Lett, vol.22, pp.3455-3458, 1981.

L. Birkofer and A. Ritter, Ange . Chem. Int. Ed, vol.4, pp.417-429, 1965.

J. F. Klebe, H. Finkbeiner, and D. M. White, J. Am. Chem. Soc, vol.88, pp.3390-3395, 1966.

X. L. Luo and R. H. Crabtree, J. Am. Chem. Soc, vol.111, pp.2527-2535, 1989.

D. E. Barber, Z. Lu, T. Richardson, and R. H. Crabtree, Inorg. Chem, vol.31, pp.4709-4711, 1992.

S. Chang, E. Scharrer, and M. Brookhart, J. Mol. Catal. A Chem, vol.130, pp.107-119, 1998.

H. Ito, A. Watanabe, and M. Sawamura, Org. Lett, vol.7, pp.1869-1871, 2005.

H. Ito, T. Saito, T. Miyahara, C. Zhong, and M. Sawamura, Organometallics, vol.28, pp.4829-4840, 2009.

D. Mukherjee, R. R. Thompson, A. Ellern, and A. D. Sadow, , vol.1, pp.698-702, 2011.

K. Garcés, F. J. Fernández-alvarez, V. Polo, R. Lalrempuia, J. J. Pérez-torrente et al., ChemCatChem, vol.6, pp.1691-1697, 2014.

J. M. Cardoso, R. Lopes, and B. Royo, J. Organomet. Chem, vol.775, pp.173-177, 2015.

S. Vijjamarri, V. K. Chidara, J. Rousova, and G. Du, Catal. Sci. Technol, vol.6, pp.3886-3892, 2016.

J. Elsevier, , 1985.

J. M. Blackwell, K. L. Foster, V. H. Beck, and W. E. Piers, J. Org. Chem, vol.64, pp.4887-4892, 1999.

V. Gevorgyan, J. Liu, M. Rubin, S. Benson, and Y. Yamamoto, Tetrahedron Lett, vol.40, pp.8919-8922, 1999.

A. Weickgenannt and M. Oestreich, Chem. Asian J, vol.4, pp.406-410, 2009.

A. A. Toutov, K. N. Betz, M. C. Haibach, A. M. Romine, and R. H. Grubbs, Org. Lett, vol.18, pp.5776-5779, 2016.

D. Gao and C. Cui, Chem. Eur. J, vol.19, pp.11143-11147, 2013.

A. Simonneau, J. Friebel, and M. Oestreich, Eur. J. Org. Chem, pp.2077-2083, 2014.

A. Simonneau and M. Oestreich, Ange . Chem. Int. Ed, vol.52, pp.11905-11907, 2013.

J. M. Weinberg, S. P. Gitto, and K. L. Wooley, Macromolecules, vol.31, pp.15-21, 1998.

J. Tan, M. Akakura, and H. Yamamoto, Ange . Chem. Int. Ed, vol.52, pp.7198-7202, 2013.

G. Liu, H. Zhao, T. Thiemann, and . Nth, Commun, vol.37, pp.2717-2727, 2007.

Y. Ojima, K. Yamaguchi, and N. Mizuno, Adv. S nth. Catal, vol.351, pp.1405-1411, 2009.

M. Chauhan, B. P. Chauhan, and P. Boudjouk, Org. Lett, vol.2, pp.1027-1029, 2000.

A. Studer and S. Amrein, Ange . Chem. Int. Ed, vol.39, pp.3080-3082, 2000.

A. Boddien, D. Mellmann, F. Gartner, R. Jackstell, H. Junge et al., Science, vol.333, pp.1733-1736, 2011.

S. Oldenhof, B. De-bruin, M. Lutz, M. A. Siegler, F. W. Patureau et al., Chem. Eur. J, vol.19, pp.11507-11511, 2013.

S. Amrein, A. Timmermann, and A. Studer, Org. Lett, vol.3, pp.2357-2360, 2001.

M. Oestreich, Ange . Chem. Int. Ed, vol.55, pp.494-499, 2016.

C. Chauvier, P. Thuéry, and T. Cantat, Ange . Chem. Int. Ed, vol.55, pp.14096-14100, 2016.

W. Sattler and G. Parkin, J. Am. Chem. Soc, vol.134, pp.17462-17465, 2012.

K. Motokura, D. Kashiwame, N. Takahashi, A. Miyaji, and T. Baba, Chem. Eur. J, vol.19, pp.10030-10037, 2013.

R. Lalrempuia, M. Iglesias, V. Polo, P. J. Sanz-miguel, F. J. Fernández-alvarez et al., Ange . Chem. Int. Ed, vol.51, pp.12824-12827, 2012.

J. Eppinger and K. Huang, ACS Energ Lett, vol.2, pp.188-195, 2017.

R. Williams, R. S. Crandall, and A. Bloom, Appl. Ph s. Lett, vol.33, pp.381-383, 1978.

A. Boddien, C. Federsel, P. Sponholz, D. Mellmann, R. Jackstell et al., Energ Environ. Sci, vol.5, p.8907, 2012.

P. Ruelle, Chem. Ph s, vol.110, pp.263-274, 1986.

E. G. Graeber and D. S. Cryder, Ind. Eng. Chem, vol.27, pp.828-831, 1935.

M. Grasemann and G. Laurenczy, Energ Environ. Sci, vol.5, p.8171, 2012.

J. J. Baschuk and X. Li, Int. J. Energ Res, vol.25, pp.695-713, 2001.

R. S. Coffey, Chem. Commun, pp.923-924, 1967.

W. Leitner, E. Dinjus, and F. Gaßner, J. Organomet. Chem, vol.475, pp.257-266, 1994.

I. Jószai and F. Joó, J. Mol. Catal. A Chem, vol.224, pp.87-91, 2004.

Y. Gao, J. Kuncheria, R. J. Puddephatt, and G. P. Yap, Chem. Commun, pp.2365-2366, 1998.

A. Boddien, B. Loges, H. Junge, and M. Beller, ChemSusChem, vol.1, pp.751-758, 2008.

B. Loges, A. Boddien, H. Junge, and M. Beller, Ange . Chem. Int. Ed, vol.47, pp.3962-3965, 2008.

C. Fellay, P. J. Dyson, and G. Laurenczy, Ange . Chem. Int. Ed, vol.47, pp.3966-3968, 2008.

G. Papp, J. Csorba, G. Laurenczy, and F. Joó, Ange . Chem. Int. Ed, vol.50, pp.10433-10435, 2011.

A. Boddien, F. Gärtner, C. Federsel, P. Sponholz, D. Mellmann et al., Ange . Chem. Int. Ed, vol.50, pp.6411-6414, 2011.

J. F. Hull, Y. Himeda, W. Wang, B. Hashiguchi, R. Periana et al., Nat. Chem, vol.4, pp.383-388, 2012.

A. Boddien, B. Loges, F. Ga-rtner, C. Torborg, K. Fumino et al., J. Am. Chem. Soc, vol.132, pp.8924-8934, 2010.

A. Boddien, D. Mellmann, F. Gartner, R. Jackstell, H. Junge et al., Science, vol.333, pp.1733-1736, 2011.

D. Mellmann, E. Barsch, M. Bauer, K. Grabow, A. Boddien et al., Chem. Eur. J, vol.20, pp.13589-13602, 2014.

X. Yang and D. Trans, , p.11987, 2013.

R. Sánchez-de-armas, L. Xue, and M. S. Ahlquist, Chem. Eur. J, vol.19, pp.11869-11873, 2013.

T. Zell, B. Butschke, Y. Ben-david, and D. Milstein, Chem. Eur. J, vol.19, pp.8068-8072, 2013.

E. A. Bielinski, P. O. Lagaditis, Y. Zhang, B. Q. Mercado, C. Würtele et al., J. Am. Chem. Soc, vol.136, pp.10234-10237, 2014.

T. W. Myers and L. A. Berben, Chem. Sci, vol.5, pp.2771-2777, 2014.

C. Chauvier, A. Tlili, C. Das-neves, P. Gomes, T. Thuéry et al., Chem. Sci, vol.6, pp.2938-2942, 2015.

A. K. Singh, S. Singh, and A. Kumar, Catal. Sci. Technol, vol.6, pp.12-40, 2016.

D. Mellmann, P. Sponholz, H. Junge, and M. Beller, Chem. Soc. Rev, vol.45, pp.3954-3988, 2016.

G. Laurenczy and P. J. Dyson, J. Bra . Chem. Soc, vol.25, pp.2157-2163, 2014.

C. Chauvier, T. Godou, and T. Cantat, Chem. Commun, vol.53, pp.11697-11700, 2017.

J. Gomez, C. Gemel, C. Slugovc, E. Wozniak, R. Schmid et al., Monatsh. Chem./Chemical Mon, vol.132, pp.1137-1143, 2001.

F. Bertini, I. Mellone, A. Ienco, M. Peruzzini, and L. Gonsalvi, , vol.5, pp.1254-1265, 2015.

R. Marcos, F. Bertini, Z. Rinkevicius, M. Peruzzini, L. Gonsalvi et al., Chem. Eur. J, vol.24, pp.5366-5372, 2018.

S. Díez-gonzález, H. Kaur, F. K. Zinn, E. D. Stevens, and S. P. Nolan, J. Org. Chem, vol.70, pp.4784-4796, 2005.

T. Vergote, F. Nahra, A. Merschaert, O. Riant, D. Peeters et al., Organometallics, vol.33, pp.1953-1963, 2014.

E. Kirillov, J. Carpentier, E. Bunel, and D. Trans, , vol.44, pp.16212-16223, 2015.

T. Fujihara, T. Xu, K. Semba, J. Terao, and Y. Tsuji, Ange . Chem. Int. Ed, vol.50, pp.523-527, 2011.

Y. Zhao, Y. Liu, S. Bi, and Y. Liu, J. Organomet. Chem, pp.166-172, 2013.

T. Fan, F. K. Sheong, and Z. Lin, Organometallics, vol.32, pp.5224-5230, 2013.

L. Zhang, J. Cheng, and Z. Hou, Chem. Commun, vol.49, 2013.

B. Marciniec, J. Gulinski, W. Urbaniak, and Z. W. Kormetka, Comprehensive Handbook on H drosil lation, 1992.

S. Amrein, A. Timmermann, and A. Studer, Org. Lett, vol.3, pp.2357-2360, 2001.

A. Simonneau and M. Oestreich, Ange . Chem. Int. Ed, vol.52, pp.11905-11907, 2013.

C. Chauvier, P. Thuéry, and T. Cantat, Ange . Chem. Int. Ed, vol.55, pp.14096-14100, 2016.

C. Chauvier, T. Godou, and T. Cantat, Chem. Commun, vol.53, pp.11697-11700, 2017.

T. Godou, C. Chauvier, P. Thuéry, T. Cantat, and . Nlett, , vol.28, pp.2473-2477, 2017.

J. R. Khusnutdinova, D. Milstein, A. Chem, and . Int, , vol.54, pp.12236-12273, 2015.

G. A. Filonenko, M. P. Conley, C. Copéret, M. Lutz, E. J. Hensen et al., ACS Catal, vol.3, pp.2522-2526, 2013.

L. Monsigny, Catalyseurs d'hydrosilylation Pour La Réduction de Liaisons C-O Dans Les Polymères Oxygénés, Sous La Direction de T, Cantat et J.C. Berthet, 2019.

R. L. Chowdhury and J. Bäckvall, J. Chem. Soc., Chem. Commun, pp.1063-1064, 1991.

J. Takehara, S. Hashiguchi, A. Fujii, S. Inoue, T. Ikariya et al., Chem. Commun, vol.27, pp.233-234, 1996.

R. Noyori and S. Hashiguchi, Acc. Chem. Res, vol.30, pp.97-102, 1997.

S. Hashiguchi, A. Fujii, J. Takehara, T. Ikariya, and R. Noyori, J. Am. Chem. Soc, vol.117, pp.7562-7563, 1995.

R. Noyori, M. Koizumi, D. Ishii, and T. Ohkuma, Pure Appl. Chem, vol.73, pp.227-232, 2001.

C. A. Sandoval, T. Ohkuma, K. Muñiz, and R. Noyori, J. Am. Chem. Soc, vol.125, pp.13490-13503, 2003.

K. Muñiz, Ange . Chem. Int. Ed, vol.44, pp.6622-6627, 2005.

T. Li, I. Bergner, F. N. Haque, M. Zimmer-de-iuliis, D. Song et al., Organometallics, vol.26, pp.5940-5949, 2007.

A. A. Mikhailine, M. I. Maishan, A. J. Lough, and R. H. Morris, J. Am. Chem. Soc, vol.134, pp.12266-12280, 2012.

W. Zuo, S. Tauer, D. E. Prokopchuk, and R. H. Morris, Organometallics, vol.33, pp.5791-5801, 2014.

W. Zuo, A. J. Lough, Y. F. Li, and R. H. Morris, Science, vol.342, pp.1080-1083, 2013.

M. D. Fryzuk and P. A. Macneil, Organometallics, vol.2, pp.682-684, 1983.

M. D. Fryzuk, P. A. Macneil, and S. J. Rettig, Organometallics, vol.4, pp.1145-1147, 1985.

M. D. Fryzuk, P. A. Macneil, and S. J. Rettig, J. Am. Chem. Soc, vol.109, pp.2803-2812, 1987.

M. D. Fryzuk, C. D. Montgomery, and S. J. Rettig, Organometallics, vol.10, pp.467-473, 1991.

T. Zell and D. Milstein, Acc. Chem. Res, vol.48, pp.1979-1994, 2015.

S. Werkmeister, K. Junge, B. Wendt, E. Alberico, H. Jiao et al., Ange . Chem. Int. Ed, vol.53, pp.8722-8726, 2014.

D. Spasyuk, C. Vicent, and D. G. Gusev, J. Am. Chem. Soc, vol.137, pp.3743-3746, 2015.

D. G. Gusev, , vol.6, pp.6967-6981, 2016.

J. Zhang, G. Leitus, Y. Ben-david, and D. Milstein, Ange . Chem. Int. Ed, vol.45, pp.1113-1115, 2006.

V. Papa, J. R. Cabrero-antonino, E. Alberico, A. Spanneberg, K. Junge et al., Chem. Sci, vol.8, pp.3576-3585, 2017.

Z. E. Clarke, P. T. Maragh, T. P. Dasgupta, D. G. Gusev, A. J. Lough et al., Organometallics, vol.25, pp.4113-4117, 2006.

J. O. Bauer, S. Chakraborty, and D. Milstein, , vol.7, pp.4462-4466, 2017.

B. Askevold, H. W. Roesky, and S. Schneider, ChemCatChem, vol.2012, pp.307-320

S. Schneider, J. Meiners, and B. Askevold, Eur. J. Inorg. Chem, pp.412-429, 2012.

S. Chakraborty, W. W. Brennessel, and W. D. Jones, J. Am. Chem. Soc, vol.136, pp.8564-8567, 2014.

S. Chakraborty, H. Dai, P. Bhattacharya, N. T. Fairweather, M. S. Gibson et al., J. Am. Chem. Soc, vol.136, pp.7869-7872, 2014.

T. Zell, Y. Ben-david, and D. Milstein, Ange . Chem. Int. Ed, vol.53, pp.4685-4689, 2014.

E. Habraken, A. Jupp, M. Brands, M. Nieger, A. Ehlers et al., Eur. J. Inorg. Chem, 2019.

D. Peng, Y. Zhang, X. Du, L. Zhang, X. Leng et al., J. Am. Chem. Soc, vol.135, pp.19154-19166, 2013.

A. M. Tondreau, E. Lobkovsky, and P. J. Chirik, Org. Lett, vol.10, pp.2789-2792, 2008.

J. Yang and T. D. Tilley, Ange . Chem. Int. Ed, vol.49, pp.10186-10188, 2010.

M. L. Scheuermann, S. P. Semproni, I. Pappas, and P. J. Chirik, Inorg. Chem, vol.53, pp.9463-9465, 2014.

A. Imberdis, Réactions d'interconversion Catalytiques Entre Composés C1 : CO2, CO, Acide Formique, Méthanol, Méthane et Dérivés, Sous La Direction de T. Cantat, 2019.

G. A. Olah, A. Goeppert, and G. K. Prakash, J. Org. Chem, vol.74, pp.487-498, 2009.

G. A. Olah, Ange . Chem. Int. Ed, vol.44, pp.2636-2639, 2005.

A. J. Miller, D. M. Heinekey, J. M. Mayer, and K. I. Goldberg, Ange . Chem. Int. Ed, vol.52, pp.3981-3984, 2013.

S. Savourey, G. Lefèvre, J. Berthet, P. Thuéry, C. Genre et al., Ange . Chem. Int. Ed, vol.53, pp.10466-10470, 2014.

M. C. Neary and G. Parkin, Chem. Sci, vol.6, pp.1859-1865, 2015.

K. Sordakis, A. Tsurusaki, M. Iguchi, H. Kawanami, Y. Himeda et al., , vol.19, pp.2371-2378, 2017.

J. Wang, R. Qin, H. Fu, J. Chen, J. Feng et al., Tetrahedron: As mmetr, vol.18, pp.847-851, 2007.

G. Z. Zheng and T. H. Chan, Organometallics, vol.14, pp.70-79, 1995.

Y. Sumida, H. Yorimitsu, and K. Oshima, J. Org. Chem, vol.74, pp.7986-7989, 2009.

N. Ikeda and T. Konno, J. Fluor. Chem, vol.173, pp.69-76, 2015.

M. Rubio, J. Campos, and E. Carmona, Org. Lett, vol.13, pp.5236-5239, 2011.

C. Chauvier, A. Imberdis, and T. Cantat,

M. G. Mazzotta, M. Xiong, and M. M. Abu-omar, Organometallics, vol.36, pp.1688-1691, 2017.

M. Janeta and S. Szafert, J. Organomet. Chem, vol.847, pp.173-183, 2017.

B. Marciniec, H drosil lation, 2009.

T. K. Meister, K. Riener, P. Gigler, J. Stohrer, W. A. Herrmann et al., , vol.6, pp.1274-1284, 2016.

A. M. Tondreau, C. C. Atienza, K. J. Weller, S. A. Nye, K. M. Lewis et al., Science, vol.335, pp.567-570, 2012.

P. R. Rablen and J. F. Hartwig, J. Am. Chem. Soc, vol.118, pp.4648-4653, 1996.

C. C. Chong and R. Kinjo, , vol.5, pp.3238-3259, 2015.

V. L. Weidner, C. J. Barger, M. Delferro, T. L. Lohr, and T. J. Marks, , vol.7, pp.1244-1247, 2017.

H. C. Brown, J. V. Kanth, and M. Zaidlewicz, J. Org. Chem, vol.63, pp.5154-5163, 1998.

H. Nohira, T. Yamakawa, and M. Masaki, Bull. Chem. Soc. Jpn, vol.64, pp.2730-2734, 1991.

A. Bhanu-prassad, J. Bhaskar, and M. Periasamy, Tetrahedron, vol.48, pp.4628-4628, 1992.

S. Chakraborty, J. Zhang, J. A. Krause, and H. Guan, J. Am. Chem. Soc, vol.132, pp.8872-8873, 2010.

A. S. Prasad, J. V. Kanth, and M. Periasamy, Tetrahedron, vol.48, pp.4623-4628, 1992.

C. Chauvier, P. Thuéry, and T. Cantat, Chem. Sci, vol.7, pp.5680-5685, 2016.

C. Chauvier, A. Tlili, C. Das-neves, P. Gomes, T. Thuéry et al., Chem. Sci, vol.6, pp.2938-2942, 2015.

I. P. Oliveri, G. Maccarrone, and S. D. Bella, J. Org. Chem, vol.76, pp.8879-8884, 2011.

H. Defrancesco, J. Dudley, and A. Coca, ACS S mp. Ser, pp.1-25, 2016.

J. Gomez, C. Gemel, C. Slugovc, E. Wozniak, R. Schmid et al., Monatsh. Chem./Chemical Mon, vol.132, pp.1137-1143, 2001.

H. Adkins, R. M. Elofson, A. G. Rossow, and C. C. Robinson, J. Am. Chem. Soc, vol.71, pp.3622-3629, 1949.

E. Podyacheva, E. Kuchuk, and D. Chusov, Tetrahedron Lett, vol.60, pp.575-582, 2019.

C. Chauvier, P. Thuéry, and T. Cantat, Ange . Chem. Int. Ed, vol.55, pp.14096-14100, 2016.

R. J. Brotherton, C. J. Weber, C. R. Guibert, and J. L. Little, Ullmann s Enc cl. Ind. Chem, p.139, 2000.

E. L. Gamble, P. Gilmont, and J. F. Stiff, J. Am. Chem. Soc, vol.62, pp.1257-1258, 1940.

H. J. Becher, Handb. Prep. Inorg. Chem, pp.770-804, 1963.

H. Matsumoto, Y. Hoshino, J. Nakabayashi, T. Nakano, and Y. Nagai, Chem. Lett, vol.9, pp.1475-1478, 1980.

M. Periasamy, M. Seenivasaperumal, and S. Sivakumar, , pp.301-320, 2005.

R. E. Deright, J. Am. Chem. Soc, vol.55, pp.4761-4764, 1933.

I. V. Pa-ie, CONCLUSION GENERALE ET PERSPECTIVES 3. R f e ce

E. W. Bennett and P. J. Orenski, J. Organomet. Chem, vol.28, pp.137-144, 1971.

B. Marciniec, Coord. Chem. Rev, vol.249, pp.2374-2390, 2005.

M. Zaranek and P. Pawluc, ACS Catal, vol.8, pp.9865-9876, 2018.

S. Díez-gonzález and S. P. Nolan, Acc. Chem. Res, vol.41, pp.349-358, 2008.

J. Carpentier and V. Bette, Curr. Org. Chem, vol.6, pp.913-936, 2005.

H. Stachowiak, J. Ka?mierczak, K. Kuci?ski, and G. Hreczycho, Green Chem, vol.20, pp.1738-1742, 2018.

H. Nohira, T. Yamakawa, and M. Masaki, Bull. Chem. Soc. Jpn, vol.64, pp.2730-2734, 1991.

H. C. Wu, J. Q. Yu, and J. B. Spencer, Org. Lett, vol.6, pp.4675-4678, 2004.

E. Podyacheva, E. Kuchuk, and D. Chusov, Tetrahedron Lett, vol.60, pp.575-582, 2019.

E. Blondiaux and T. Cantat, Chem. Commun, vol.50, pp.9349-9352, 2014.

A. Bhanu-prassad, J. Bhaskar, and M. Periasamy, Tetrahedron, vol.48, pp.4628-4628, 1992.

A. Bauer, J. Teknol. Inf. Dan Komun. STMIK ProVisi Semarang, pp.209-270, 2016.

A. A. Toutov, M. Salata, A. Fedorov, Y. Yang, Y. Liang et al., , vol.2, p.17008, 2017.

R. J. Brotherton, C. J. Weber, C. R. Guibert, and J. L. Little, Ullmann s Enc cl. Ind. Chem, pp.237-255, 2000.

, Energy Units converter, 2019.

X. Lu, D. Y. Leung, H. Wang, M. K. Leung, and J. Xuan, , vol.1, pp.836-849, 2014.

C. Chauvier, P. Thuéry, and T. Cantat, Ange . Chem. Int. Ed, vol.55, pp.14096-14100, 2016.

C. Chauvier, P. Thuéry, and T. Cantat, Chem. Sci, vol.7, pp.5680-5685, 2016.

M. Janeta and S. Szafert, J. Organomet. Chem, vol.847, pp.173-183, 2017.

B. Marciniec, H drosil lation, 2009.

T. K. Meister, K. Riener, P. Gigler, J. Stohrer, W. A. Herrmann et al., , vol.6, pp.1274-1284, 2016.

A. M. Tondreau, C. C. Atienza, K. J. Weller, S. A. Nye, K. M. Lewis et al., Science, vol.335, pp.567-570, 2012.

T. V. Rajanbabu, P. C. Bulman-page, and B. R. Buckley, Enc cl. Reagents Org. S nth, 2004.

H. Nmr, MH , d8-THF) ? 8.06 (s, 2H), 0.50 (s, 9H)

C. Nmr, , p.50

. Ele, A al i : calcd (%) for C4H8O4Si (148.2 g.mol -1 ): C 32.42, H 5.44, found: C 32.63, H 5.56. Partie V : Partie expérimentale Colorless oil 95 % isolated yield

H. Nmr, MH , C6D6) ? 3.74 -3.49 (m, 1H), 1.92 -1.58 (m, 4H), vol.1

C. Nmr, , p.50

C. Chauvier, P. Thuéry, and T. Cantat, Ange . Chem. Int. Ed, vol.55, pp.14096-14100, 2016.

M. Perez, C. B. Caputo, R. Dobrovetsky, and D. W. Stephan, Proc. Natl. Acad. Sci, vol.111, pp.10917-10921, 2014.

G. Rajagopal, H. Lee, and S. S. Kim, Tetrahedron, vol.65, pp.4735-4741, 2009.

H. J. Shirley and C. D. Bray, Eur. J. Org. Chem, pp.1504-1507, 2016.

C. Lohre, T. Dröge, C. Wang, F. Glorius, . Chem et al., , vol.17, pp.6052-6055, 2011.

P. Magnus, N. Sane, B. P. Fauber, and V. Lynch, J. Am. Chem. Soc, vol.131, pp.16045-16047, 2009.

S. Park and M. Brookhart, Organometallics, vol.29, pp.6057-6064, 2010.

A. Simonneau, J. Friebel, and M. Oestreich, Eur. J. Org. Chem, pp.2077-2083, 2014.

A. C. Fernandes, R. Fernandes, C. C. Romão, and B. Royo, Chem. Commun, pp.213-214, 2005.

V. Gevorgyan, M. Rubin, J. Liu, and Y. Yamamoto, J. Org. Chem, vol.66, pp.1672-1675, 2001.

B. Chatterjee and C. Gunanathan, Chem. Commun, vol.50, pp.888-890, 2014.

J. S. Davies, C. L. Higginbotham, E. J. Tremeer, C. Brown, and R. C. Treadgold, J. Chem. Soc. Perkin Trans. 1, p.3043, 1992.

E. Feghali and T. Cantat, Chem. Commun, vol.50, pp.862-865, 2014.

R. Bourhis, E. Frainnet, and F. Moulines, J. Organomet. Chem, vol.141, pp.157-171, 1977.

B. A. Omotowa, M. R. Judd, B. Twamley, and J. M. Shreeve, J. Org. Chem, vol.67, pp.1588-1594, 2002.

L. D. Field, B. A. Messerle, M. Rehr, L. P. Soler, and T. W. Hambley, Organometallics, vol.22, pp.2387-2395, 2003.

M. Mehta, M. H. Holthausen, I. Mallov, M. Pérez, Z. Qu et al., Ange . Chem. Int. Ed, vol.54, pp.8250-8254, 2015.

T. Saito, Y. Nishimoto, M. Yasuda, and A. Baba, J. Org. Chem, vol.72, pp.8588-8590, 2007.

Y. Ojima, K. Yamaguchi, and N. Mizuno, Adv. S nth. Catal, vol.351, pp.1405-1411, 2009.

A. Schäfer, W. Saak, D. Haase, and T. Müller, Ange . Chem. Int. Ed, vol.51, pp.2981-2984, 2012.

A. Steinreiber, I. Osprian, S. F. Mayer, R. V. Orru, and K. Faber, Eur. J. Org. Chem, pp.3703-3711, 2000.

L. D. Field, B. A. Messerle, R. J. Smernik, T. W. Hambley, and P. Turner, Inorg. Chem, vol.36, pp.2884-2892, 1997.

L. D. Field, B. A. Messerle, and R. J. Smernik, Inorg. Chem, vol.36, pp.5984-5990, 1997.

R. W. Hooft, . Collect, and B. V. Nonius, , 1998.

Z. Otwinowski and W. Minor, Methods En mol, pp.307-326, 1997.

G. M. Sheldrick, Acta Cr stallogr. Sect. A Found. Adv, vol.71, pp.3-8, 2015.

G. M. Sheldrick, Acta Cr stallogr. Sect. C Struct. Chem, vol.71, pp.3-8, 2015.

L. J. Farrugia, J. Appl. Cr stallogr, vol.30, pp.565-565, 1997.

M. Pérez, Z. Qu, C. B. Caputo, V. Podgorny, L. J. Hounjet et al., Chem. Eur. J, vol.21, pp.6491-6500, 2015.

G. Du and M. M. Abu-omar, Organometallics, vol.25, pp.4920-4923, 2006.

B. L. Tran, M. Pink, and D. J. Mindiola, Organometallics, vol.28, pp.2234-2243, 2009.

T. Godou, C. Chauvier, P. Thuéry, T. Cantat, and . Nlett, , vol.28, pp.2473-2477, 2017.

C. Chauvier, A. Imberdis, and T. Cantat,

A. Millán, J. R. Smith, J. L. Chen, and V. K. Aggarwal, Ange . Chem. Int. Ed, vol.55, pp.2498-2502, 2016.

R. Noyori, M. Koizumi, D. Ishii, and T. Ohkuma, Pure Appl. Chem, vol.73, pp.227-232, 2001.