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Chris Waddling

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Room S126C
Department of Biochemistry & Biophysics
University of California, San Francisco
Mission Bay, Genentech Hall
600 16th St.
San Francisco CA
94143-2140
(415) 476-8288 (Ph)
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"Kinetic and Spectroscopic Studies of Symmetrical and Asymmetrical Pentascyano(N-heterocycle)ferrate(II) Rotaxanes of a-CD," D.H. Macartney and C.A. Waddling, Inorg. Chem., 1994, 33(25), 5912.

24 Articles citing this article:

Taira, Toshiaki; Suzaki, Yuji; Osakada, Kohtaro. PdII and PtII complexes with amphiphilic ligands: formation of micelles and [5]rotaxanes with .alpha.-cyclodextrin in aqueous solution. Chemistry--An Asian Journal (2008), 3(5), 895-902.

Baer, Andrew J.; Macartney, Donal H. Orientational Isomers of Cyclodextrin Semirotaxanes and Rotaxanes With Organic and Transition Metal Complex Stoppers. Supramolecular Chemistry (2007), 19(7), 537-546.

Liu, Yi. Self-assembled ring-in-ring complexes from metal-ligand coordination macrocycles and .beta.-cyclodextrin. Tetrahedron Letters (2007), 48(22), 3871-3874.

Suzaki, Yuji; Osakada, Kohtaro. Formation, dynamic behavior, and chemical transformation of Pt complexes with a rotaxane-like structure. Chemistry--An Asian Journal (2006), 1(3), 331-343.

Suzaki, Yuji; Taira, Toshiaki; Osakada, Kohtaro. Irreversible and reversible formation of a [2]rotaxane containing platinum(ii) complex with an N-alkyl bipyridinium ligand as the axis component. Dalton Transactions (2006), (45), 5345-5351.

Blight, Barry A.; Wisner, James A.; Jennings, Michael C. Synthesis of a [2]rotaxane through first- and second-sphere coordination. Chemical Communications (Cambridge, United Kingdom) (2006), (44), 4593-4595.

Jin, Victor X.; Macartney, Donal H.; Buncel, Erwin. Kinetic and spectroscopic studies on a- and b-cyclodextrin rotaxanes with (m-N,N'-bis(4-pyridinylmethylene)-a,w-alkanediimine)bis[pentacyanoferrate(II)] threads. Canadian Journal of Chemistry (2005), 83(3), 195-201.

Baer, Andrew J.; Macartney, Donal H. Orientational isomers of a-cyclodextrin [2]semi-rotaxanes with asymmetric dicationic threads. Organic & Biomolecular Chemistry (2005), 3(8), 1448-1452.

He, Xuyang; Li, Gang; Chen, Huilan. A new cucurbituril-based metallo-rotaxane. Inorganic Chemistry Communications (2002), 5(9), 633-636.

Liu, Lei; Guo, Qing-Xiang. The driving forces in the inclusion complexation of cyclodextrins. Journal of Inclusion Phenomena and Macrocyclic Chemistry (2002), 42(1-2), 1-14.

Kornysova, O.; Machtejevas, E.; Kudirkaite, V.; Pyell, U.; Maruska, A. Synthesis and characterization of polyrotaxane-based polymeric continuous beds for capillary electrochromatography. Journal of Biochemical and Biophysical Methods (2002), 50(2-3), 217-232.

Baraldo, L. M.; Forlano, P.; Parise, A. R.; Slep, L. D.; Olabe, J. A. Advances in the coordination chemistry of [M(CN)5L]n- ions (M=Fe, Ru, Os). Coordination Chemistry Reviews (2001), 219-221 881-921.

Agrawal, Y. K.; Pancholi, Y. A.; Menon, S. K.; Srivastava, P. Rotaxanes and their complexing abilities. Reviews in Inorganic Chemistry (2001), 21(1-2), 43-91.

Baer, A. J.; Jin, X.-H.; Macartney, D. H.; Suteir, U. J. Synthesis and kinetics of the self-assembly of transition metal complex stoppered cyclodextrin rotaxanes. Cyclodextrin: From Basic Research to Market, International Cyclodextrin Symposium, 10th, Ann Arbor, MI, United States, May 21-24, 2000 (2000), 659-664.

Kim, Kimoon. Self-assembly of interlocked structures with cucurbituril, metal ions and metal complexes. Perspectives in Supramolecular Chemistry (1999), 5(Transition Metals in Supramolecular Chemistry), 371-402.

Hwang, Hee Jung; Lee, Sanghyuk; Park, Joon Woo. Complexation of naphthalene-viologen linked compounds with a-cyclodextrin: effect of linkage length on thermodynamic parameters and complex structures. Bulletin of the Korean Chemical Society (2000), 21(2), 245-250.

Sieklucka, Barbara. Reactivity and photoreactivity of cyanocomplexes of the transition metals. Progress in Reaction Kinetics and Mechanism (1999), 24(3), 165-221.

Reuter, Carin; Wienand, Wolfgang; Hubner, Gosia M.; Seel, Christian; Vogtle, Fritz. High-yield synthesis of ester, carbonate, and acetal rotaxanes by anion template assistance and their hydrolytic dethreading. Chemistry--A European Journal (1999), 5(9), 2692-2697.

Park, Joon Woo; Lee, Bi Ah; Lee, Soo Yeon. Linkage length dependence of intramolecular photoinduced electron transfer reactions in aromatic donor-viologen acceptor molecules linked by polymethylene bridges. Journal of Physical Chemistry B (1998), 102(42), 8209-8215.

Lincoln, Stephen F.; Easton, Christopher J. Inclusion complexes of the cyclodextrins. Polysaccharides (1998), 473-521.

Nepogodiev, Sergey A.; Stoddart, J. Fraser. Cyclodextrin-Based Catenanes and Rotaxanes. Chemical Reviews (Washington, D. C.) (1998), 98(5), 1959-1976.

Lyon, Angela P.; Macartney, Donal H. Kinetic and Spectroscopic Studies on a-Cyclodextrin Rotaxanes with Pentacyano(cyanopyridinium)ferrate(II) Stoppers. Inorganic Chemistry (1997), 36(4), 729-736.

Schulte, Joerg L.; Lalschat, Sabine; Kotila, Sirpa; Hecht, Juergen; Froehlich, Roland; Wibbeling, Birgit. Synthesis of h6-(octahydroacridine)chromium tricarbonyl complexes with nonpolar tails via molecular sieves-catalyzed cyclization of N-arylimines and subsequent diastereoselective complexation. Heterocycles (1996), 43(12), 2713-2724.

Luo, Lai Bin; Chen, Hui Lan; Tang, Wen Xia; Zhang, Ze Ying; Mak, Thomas C. W. Formation and structure of inclusion complexes involving a-cyclodextrin and alkyl(aqua)cobaloxime. Journal of the Chemical Society, Dalton Transactions: Inorganic Chemistry (1996), (23), 4425-4430.

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