Regioselective intramolecular bridging of p-tert-butylcalix[10]arene

Author:

Li Haibing,Zhan Junyan

Publisher

Springer Science and Business Media LLC

Subject

Condensed Matter Physics,General Chemistry,Food Science

Reference11 articles.

1. Jin, C.M., Lu, X.F., Lu, G.Y., Li, Y., You, X.Z.: Liquid-liquid extraction of alkali metal cations by calix[4]crowns with pendant groups. Solvent. Extr. Ion. Exch. 22, 681–693 (2004)

2. Ji, H.F., Xu, H., Xu, X.H.: High concentration levelling effect on 1:2 stoichiometry complexation between 1,3-alternate calix[4]arene-bis benzocrown-6 and Cs+. Chem. Phys. Lett. 343, 325–331 (2001)

3. For some selected examples of calix[4]crowns, see: (a) Arduini, A., Domiano, L., Pochini, A., Secchi, A., Ungaro, R., Ugozzoli, F., Struck, O., Verboom, W., Reinhoudt, D.N.: Synthesis of 1,2-bridged calix[4]arene-biscrowns in the 1,2-alternate conformation. Tetrahedron 53, 3767–3776 (1997); (b) Ferguson, G., Lough, A.J., Notti, A., Papalardo, S., Parisi, M.F., Petringa, A.: 1,2-Bridged calix[4]arene monocrowns and biscrowns in the 1,2-alternate conformation. J. Org. Chem. 63, 9703–9710 (1998); (c) Kim, S.K., Vicens, J., Park, K.M., Lee, S.S., Kim, J.S.: Complexation chemistry double- and multi-1,3-alternate-calixcrowns. Tetrahedron Lett. 44, 993–997 (2003)

4. For some selected examples of calix[6]crowns, see: (a) Saiki, T., Goto, K., Tokitoh, N., Goto, M., Okazaki, R.: Structures of bridged calix[6]arenes bearing a bromide functionality in the cavity. Tetrahedron Lett. 37, 4039–4042 (1996); (b) Li, J.S., Chen, Y.Y., Lu, X.R.: Selective bridging of p-tert-butyicalix[6]arene with polyethylene glycol ditosylates. Tetrahedron 55, 10365–10374 (1999); (c) Chen, Y.Y., Li, H.B.: Syntheses of novel types of calix[6]bis-crowns and related compounds. New. J. Chem. 25, 340–343 (2001); (d) Chen, Y.Y., Li, H.B.: Synthesis and characterization of p-tert-butylcalix[6]-1,4-crown-4-2,6-crown-5, p-tert-butylcalix[6]-1,4-benzocrown-4-2,3-crown-5. Chem. Lett. 1208–1209 (2000); (e) Li, H.B., Chen, Y.Y.: The sol–gel technique to prepare calix[6]crown-containing organosilicon resins and their adsorption properties towards metal ions. React. Funct. Polym. 55, 171–178 (2003); (f) Guan, B., Gong, S.L., Wu , X.J., Chen, Y.Y.: Stereoisomerism and complexation behaviour of functionalized p-tert-calix[6]-1,4-2,5-biscrown-4. Tetrahedron Lett. 46, 6041–6044 (2005); (g) Blanda, M., Edwards, L., Salazar, R., Boswell, M.: Synthesis and characterization of an inherently chiral calix[6]arene in the 1,4-alternate conformation. Tetrahedron Lett. 47, 7081–7084 (2006)

5. For some selected examples of calix[8]crowns, see: (a) Geraci, C., Piattelli, M., Neri, P.: Regioselective synthesis of calix[8]crowns by direct alkylation of p-tert-butylcalix[8]arene. Tetrahedron Lett. 37, 3899–3902 (1996); (b) Geraci, C., Piattelli, M., Chessari, G., Neri, P.: Singly bridged calix[8]crowns. J. Org. Chem. 65, 5143–5151 (2000); (c) Gregoli, L., Russo, L., Stefio, I., Gaeta, C., Arnaud, N.F., Hubscher, B.V., Khazaeli, P.P., Geraci, C., Neri, P.: Synthesis and complexing properties of 1,5:3,7-doubly bridged calix[8]arenes with mixed spanning elements. Tetrahedron Lett. 45, 6277–6281 (2004)

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3. Large Calixarenes: Synthesis and Properties;Reference Module in Chemistry, Molecular Sciences and Chemical Engineering;2015

4. Synthesis, characterization, and conformational analysis of new perfunctionalized calix[9]arenes;Tetrahedron Letters;2012-08

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