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Host-guest catalyst

Table 3.1 Benzoylation/acetylation of anisole, i-propylatior of benzene and dismutation of CCI2F2 over host/guest catalysts (Data taken from [13] by permission of Elsevier Publishers)... Table 3.1 Benzoylation/acetylation of anisole, i-propylatior of benzene and dismutation of CCI2F2 over host/guest catalysts (Data taken from [13] by permission of Elsevier Publishers)...
Metalloboranes, 4 172 exopolyhedral, 4 208-210 main group element, 4 207-208 transition element, 4 205-207 Metallo-carbohedrene clusters, 4 648 Metallocarboranes, 4 170 as catalysts, 4 217-218 economic aspects, 4 229 exopolyhedral, 4 215-216 f-block element, 4 225-226 host-guest chemistry-carborane anticrowns, 4 216-217 structural systematics, 4 176-179 transition metal, 4 210-215 Metallocene catalysis, MAO in, 16 92-93. [Pg.567]

Elemans, J.A.A.W., Bijsterveld, E.J.A., Rowan, A.E. and Nolte, R.J.M. (2000) A host-guest epoxidation catalyst with enhanced activity and stability. Chem. Commun., 2443—2444. [Pg.163]

As discussed in this chapter, the fundamental host-guest chemistry of 1 has been elaborated to include both stoichiometric and catalytic reactions. The constrained interior and chirality of 1 allows for both size- and stereo-selectivity [31-35]. Additionally, 1 itself has been used as a catalyst for the sigmatropic rearrangement of enammonium cations [36,37] and the hydrolysis of acid-labile orthoformates and acetals [38,39]. Our approach to using 1 to mediate chemical reactivity has been twofold First, the chiral environment of 1 is explored as a source of asymmetry for encapsulated achiral catalysts. Second, the assembly itself is used to catalyze reactions that either require preorganization of the substrate or contain high energy intermediates or transition states that can be stabilized in 1. [Pg.167]


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Catalyst supramolecular host-guest

Host-guest

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