Page 35 - 87_04
P. 35

ANALES
RANF

  www.analesranf.com

64. Zhoua Y, Cheng G, Chen K, Lu J, Lei J, Pu S. Adsorptive removal of
     bisphenol A, chloroxylenol, and carbamazepine from water using a
     novel ß-cyclodextrin polymer. Ecotox Environ Safe 2019; 170: 278
     – 285.

65. Tang P, Sun Q, Zhao L, Tang Y, Liu Y, Pu H, Gan N, Liu Y, Li H. A
     simple and green method to construct cyclodextrin polymer for the
     effective and simultaneous estrogen pollutant and metal removal.
     Chem Eng J 2019; 366: 598 – 607.

66. Bragança de Carvalho L, Garcia Carvalho T, Magriotis ZM, Castro
     Ramalho T, Matos Alves Pinto L. Cyclodextrin/silica hybrid adsorbent
     for removal of methylene blue in aqueous media. J Incl Phenom
     Macrocycl Chem 2014; 78: 77 – 87.

67. Wang S, LI Y, Fan X, Zhang F, Zhang G. ß-Cyclodextrin functionalized
     graphene oxide: an efficient and recyclable adsorbent for the removal
     of dye pollutants. Front Chem Sci Eng 2015; 9: 77 – 83.

68. Shao D, Sheng G, Chen C, Wang X, Nagatsu M. Removal of polych-
     lorinated biphenyls from aqueous solutions using ß-cyclodextrin
     grafted multiwalled carbon nanotubes. Chemosphere 2010; 79:
     679 - 685.

69. Zhang F, Wu W, Sharma S, Tong G, Deng Y. Synthesis of cyclodex-
     trin-functionalized cellulose nanofibril aerogel as a highly effective
     adsorbent for phenol pollutant removal. BioResources 2015; 10:
     7555 – 7568.

70 Qin X, Bai L, Tan Y, Li L, Song F, Wang Y. ß-Cyclodextrin-crosslinked
     polymeric adsorbent for simultaneous removal and stepwise recovery
     of organic dyes and heavy metal ions: Fabrication, performance and
     mechanisms. Chem Eng J 2019; 372: 1007 – 1018.

71. Zhao F, Repo E, Yin D, Meng Y, Jafari S, Sillanpa¨a M. EDTA-Cross-
     Linked ß-Cyclodextrin: An Environmentally Friendly Bifunctional
     Adsorbent for Simultaneous Adsorption of Metals and Cationic Dyes.
     Environ Sci Technol 2015; 49: 10570 – 10580.

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                                                                                                       Cavitandos naturales y de síntesis: desafíos y respuestas

                                                                                                                             en química y tecnología farmacéutica
                                                                                                                                            María Antonia Martín Carmona
                                                                                                                                           An Real Acad Farm [Internet].

                                                                                                                 An. Real Acad. Farm.Vol. 87. nº 4 (2021) · pp 381-393
                                                                                                            DOI: http://dx.doi.org/10.53519/analesranf.2021.87.04.02

                                                                                                                     Cavitandos naturales y de síntesis: desafíos y respuestas

                                                             393en química y tecnología farmacéutica
                                                                                                                                                          María Antonia Martín Carmona
                                                                                                                               An. Real Acad. Farm.Vol. 87. nº 4 (2021) · pp. 381-393
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