共 50 条
- [1] AMOURI H, DESMARETS C, MOUSSA J., Confined nanospaces in metallocages: guest molecules, weakly encapsulated anions, and catalyst sequestration, Chemical Reviews, 112, 4, pp. 2015-2041, (2012)
- [2] COOK T R, ZHENG Y R, STANG P J., Metal-organic frameworks and self-assembled supramolecular coordination complexes: comparing and contrasting the design, synthesis, and functionality of metal-Organic materials, Chemical Reviews, 113, 1, pp. 734-777, (2013)
- [3] RONSON T K, ZARRA S, BLACK S P, Et al., Metal-organic container molecules through subcomponent self-assembly, Chemical Communications, 49, 25, (2013)
- [4] CUI Y, CHEN B, QIAN G., Lanthanide metal-organic frameworks for luminescent sensing andlight-emitting applications, Coord Chem Rev, 76, 86, pp. 273-274, (2014)
- [5] GU Z Y, YANG C X, CHANG N, Et al., Metal-organic frameworks for analytical chemistry: from sample collection to chromatographic separation, Acc Chem Res, 45, 5, pp. 734-745, (2012)
- [6] TAKEZAWA H, AKIBA S, MURASE T, Et al., Cavity-directed chromism of phthalein dyes, Am Chem Soc, 137, pp. 7043-7046, (2015)
- [7] UEDA Y, ITO H, FUJITA D, Et al., Permeable self-assembled molecular containers for catalyst isolation enabling two-step cas- cade reactions, Am Chem Soc, 139, pp. 6090-6093, (2017)
- [8] MAL P, SCHULTZ D, BEYEH K, Et al., An unlockable-relockableiron cage by subcomponent self-assembly, Angewandte Chemie International Edition, 47, 43, pp. 8297-8301, (2008)
- [9] BILBEISI R A, CLEGG J K, ELGRISHI N, Et al., Subcomponent self-assembly and guest-binding properties of face-capped Fe<sub>4</sub>L<sub>4</sub>(8+) capsules, Journal of the American Chemical Society, 134, 11, pp. 5110-5119, (2012)
- [10] BOLLIGER J L, BELENGUER A M, NITSCHKE J R., Enantiomerenreinewasserlosliche[Fe<sub>4</sub>L<sub>6</sub>]<sup>-</sup>kafigverbindungen: wirt-gast-chemie und katalytische aktivitat, Angewandte Chemie, 125, 31, pp. 8116-8120, (2013)