2021
DOI: 10.1007/s10924-021-02064-y
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Synthesis, Characterization and Application of α, β, and γ Cyclodextrin-Conjugated Graphene Oxide for Removing Cadmium Ions from Aqueous Media

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Cited by 13 publications
(6 citation statements)
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“…The extraction e ciency of the presented method was compared with other reported methods from the viewpoint of adsorbent capacity and time of extraction [10,[49][50][51][52][53]. Comparison results of the remarkable e ciency of GOF adsorbent and proposed method with di erent existing methods for adsorption and removal of Cd +2 and Pb +2 is exhibited in According to the results, it is clear that the chosen ligand and technique to fabricate GOF and nd optimal conditions with the help of the ultrasonic approach were su cient for the best performance of the GOF adsorbent.…”
Section: Comparing This Adsorbent and Technique With Some DI Erent Ad...mentioning
confidence: 99%
“…The extraction e ciency of the presented method was compared with other reported methods from the viewpoint of adsorbent capacity and time of extraction [10,[49][50][51][52][53]. Comparison results of the remarkable e ciency of GOF adsorbent and proposed method with di erent existing methods for adsorption and removal of Cd +2 and Pb +2 is exhibited in According to the results, it is clear that the chosen ligand and technique to fabricate GOF and nd optimal conditions with the help of the ultrasonic approach were su cient for the best performance of the GOF adsorbent.…”
Section: Comparing This Adsorbent and Technique With Some DI Erent Ad...mentioning
confidence: 99%
“…Wang et al developed graphene oxide with β-cyclodextrin as an efficient MB and fuchsin acid remover due to host-guest interactions between the cyclodextrin and dye contamination [ 13 ]. In other studies, the conjugation of cyclodextrin on graphene oxide surfaces was found to be highly effective in the adsorption of heavy metal ions from water [ 11 , 14 ]. It is also possible to improve the adsorption capacity of graphene oxide by mixing it with efficient materials.…”
Section: Introductionmentioning
confidence: 99%
“…With the rapid development of nanotechnology, engineered nanomaterials have also found an extensive usage in production of industrial, commercial, medical, diagnostic, and agricultural products [ [1] , [2] , [3] , [4] , [5] , [6] , [7] ]. Today, many industries use large quantities of nanoparticles, which enter the environment and the bodies of humans and animals in large quantities [ [8] , [9] , [10] , [11] ]. These nanoparticles as well as their intermediate compounds interact with plants, animals, and other living organisms and impose positive and negative effects [ [12] , [13] , [14] ].…”
Section: Introductionmentioning
confidence: 99%