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Dissertations / Theses on the topic 'Monodentate and bidentate nitrogen'

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1

Woods, Rebecca J. "Bidentate nitrogen ligands for olefin polymerisation." Thesis, University of Manchester, 2001. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.488051.

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2

Sutcliffe, V. F. "Synthesis and mechanistic studies on organoplatinum complexes with bidentate heteroaromatic nitrogen-donor ligands." Thesis, Imperial College London, 1985. http://hdl.handle.net/10044/1/37869.

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3

Harding, Michael. "New concepts in asymmetric catalysis." Thesis, University of Sheffield, 1998. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.284768.

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4

Agbossou, Sénamé. "Ligands aminophosphonites et complexes de metaux des groupes 9 et 10 : syntheses et applications en oligomerisation, telomerisation et carbonatation." Toulouse 3, 1988. http://www.theses.fr/1988TOU30110.

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Preparation et caracterisation d'une serie de comples de palladium, de platine et de rhodium renfermant les ligands dioxa-1,3-phospha-2-aza-6 r-6 phenyl-2-cyclooctane (r=h,phn; r=me,pnme; r=methyl-2allyle, pnallyle)
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5

Brennan, Nicholas Frederick. "Synthesis and structural studies of N- and P-donor ligands in Chromium(III) complexes." Thesis, 2010. http://hdl.handle.net/2263/28960.

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The fundamental knowledge of Cr(III) chemistry has been enhanced via detailed structural and spectroscopic studies of largely novel compounds that may potentially be active tri- and tetramerisation precursors. The compounds are based on various monodentate and bidentate nitrogen and phosphorus ligands which have been coordinated to [CrCl3 (thf) 3]. The few compounds that have been synthesised previously have in this study been made via novel synthetic routes and incorporate a combination of new and more detailed analysis than was carried out previously. The eight structures determined, in addi
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6

Chou, Chia-Yin, and 周佳穎. "Effects of Monodentate and Bidentate Ligands on Adsorption Characteristics of Cu-Ion-Imprinted Polymers." Thesis, 2019. http://ndltd.ncl.edu.tw/handle/26vmw4.

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碩士<br>國立交通大學<br>環境工程系所<br>107<br>3-(2-aminoethylamino)propyl]trimethoxysilane (AATPS) and 3-aminopropyltriethoxysilane (APTES) were used as functional monomers to prepare Cu-imprinted-organic-inorganic polymers (IIP) while MEMO and TEOS were used as the organic and inorganic cross-linkers, respectively. Adsorption behaviors of the IIPs at different Cu(II)/amino-groups ratios were examined to investigate the complexation between the bidentate/monodentate ligands and the Cu(II) ions and the resulting imprinting extents in the IIPS. In addition, the keys controlling the selectivity of the IIPs we
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7

Lin, Chih-Wei, and 林志威. "Synthesis of the Monodentate and Bidentate Alkyl-S-chelating {Fe(NO)2}10 DNICs and their Properties." Thesis, 2012. http://ndltd.ncl.edu.tw/handle/56426051616841394429.

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8

ZHOU, ZHANG-GUAN, and 周張銓. "Molybdenum carbonyl derivatives of pyrazol-and phenyl-derived nitrogen bidentate." Thesis, 1989. http://ndltd.ncl.edu.tw/handle/00914072666519570427.

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9

Chiou, Yen-Tsai, and 邱雲才. "Synthesis and Reactions of Copper(Ⅰ) Complexes Containing Nitrogen Bidentate Ligands." Thesis, 1994. http://ndltd.ncl.edu.tw/handle/75447630872106005333.

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10

Shih, Hsien Chao, and 師憲超. "Syntheses and Reactions of Copper (II) Complexes Containing Nitrogen Bidentate Ligands." Thesis, 1996. http://ndltd.ncl.edu.tw/handle/61615994568587335026.

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11

Viens, Frédérick. "Étude de l’issue diastéréomérique impliquant la réduction radicalaire d’α-bromoesters adjacents à un tétrahydropyrane substitué". Thèse, 2011. http://hdl.handle.net/1866/6904.

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Cet ouvrage traite de la formation diastéréosélective de tétrahydropyranes 3,7-cis et 3,7-trans polysubstitués. Des méthodologies de cycloétherification et de C-glycosidation en tandem avec une réduction radicalaire y sont décrites (pyranes 3,7- trans) tandis qu’une haloéthérification en tandem avec le même processus radicalaire conduit aux pyranes 3,7-cis. Suite à des travaux antérieurs du laboratoire, des études ont été réalisées afin de comprendre l’influence de la stéréochimie des substituants en position C3, C6, C7 et C8 sur l’issue diastéréochimique lors d’un transfert d’hydrure sous con
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12

Lin, Ming-Feng, and 林明峰. "Reaction of iodine monobromide and iodine monochloride with molybdenum complexes derivatives of pyrazol-and pyridyl-derived nitrogen bidentate." Thesis, 1990. http://ndltd.ncl.edu.tw/handle/49770539429641679400.

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13

Guan, Shih-Hau, and 管仕豪. "Studies of Carbon-Carbon Bond Formation Reactions Based on Ni(II) and Pd(II) Catalysts Bearing Nitrogen-Containing Hetero-functional Bidentate Ligands." Thesis, 2007. http://ndltd.ncl.edu.tw/handle/64240078354258185606.

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博士<br>國立臺灣大學<br>化學研究所<br>95<br>In this thesis, carbon-carbon bond formations are studied through three kinds of reactions: styrene polymerization, cross-couplings and nucleophilic additions. A new series of Ni(II) complexes [(N,N'')NiBr2] bearing bidentate amino-oxazoline ligands have been synthesized and applied for polymerization of styrene. With cocatalyst, MAO, these Ni(II) complexes 4 are highly efficient catalysts for styrene polymerization with activities up to ~107 g / mol [Ni] × h under optimized conditions, which possess the best performance among the catalytic Ni systems now. Eff
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14

Guan, Shih-Hau. "Studies of Carbon-Carbon Bond Formation Reactions Based on Ni(II) and Pd(II) Catalysts Bearing Nitrogen-Containing Hetero-functional Bidentate Ligands." 2007. http://www.cetd.com.tw/ec/thesisdetail.aspx?etdun=U0001-1108200716185900.

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15

Baho, Natalie. "Synthesis, characterization and chromotropism properties of Ni(II) complexes featuring diphenyl(dipyrazolyl) methane." Thèse, 2007. http://hdl.handle.net/1866/7811.

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