2023
DOI: 10.1002/aoc.7184
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Superior and effective adsorption of amoxicillin by using novel metal organic framework and its composite: Thermodynamic, kinetic, and optimization by Box–Behnken design

Abstract: Exploring the potential of silver metal organic frameworks (Ag-MOF), we modified it with sulfanilamide (Ag-MOF-NH 2 ) to create an efficient means for the adsorption of amoxicillin (AMX) from aqueous solutions. We characterized this new material with various imaging and analyzation techniques. Investigations into adsorption were conducted with varying solution pH, contact time, and adsorbent dosages. Moreover, the kinetics and adsorption isotherms were also tested by different models. Results revealed that equ… Show more

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Cited by 4 publications
(1 citation statement)
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References 49 publications
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“…Electrostatic interactions between TC or ciprofloxacin might be responsible for the faster adsorption of these two molecules on CM in comparison to amoxicillin and sulfamethoxazole. Indeed, amoxicillin (p K a1 = 2.7, p K a 2 = 7.4, and p K a 3 = 8.9) and sulfamethoxazole (p K a 1 = 1.7, and p K a 2 = 5.6) are negatively charged at pH 8 and feature NH 2 and COO – functionalities. No electrostatic interactions are possible with CM, which is negatively charged.…”
Section: Resultsmentioning
confidence: 99%
“…Electrostatic interactions between TC or ciprofloxacin might be responsible for the faster adsorption of these two molecules on CM in comparison to amoxicillin and sulfamethoxazole. Indeed, amoxicillin (p K a1 = 2.7, p K a 2 = 7.4, and p K a 3 = 8.9) and sulfamethoxazole (p K a 1 = 1.7, and p K a 2 = 5.6) are negatively charged at pH 8 and feature NH 2 and COO – functionalities. No electrostatic interactions are possible with CM, which is negatively charged.…”
Section: Resultsmentioning
confidence: 99%