2022
DOI: 10.1080/14328917.2022.2095840
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Ionic liquid-functionalised AlPO-34 material prepared by ionothermal method for efficient antibacterial property against Escherichia coli

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Cited by 2 publications
(3 citation statements)
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“…Khoo et al [108] and Li et al [109] respectively synthesized AlPO 4 -5 molecular sieves with hexagonal thin-plate morphology and a gas-permeable CHA-type membrane to discuss the water content under ionothermal conditions and its effect on the crystallinity of final product. Therefore, in our previous works, we only used the water that came from reagents, and no extra water was added [110,111].…”
Section: The Effect Of Il's Cation Size Shape or Lengthmentioning
confidence: 99%
See 1 more Smart Citation
“…Khoo et al [108] and Li et al [109] respectively synthesized AlPO 4 -5 molecular sieves with hexagonal thin-plate morphology and a gas-permeable CHA-type membrane to discuss the water content under ionothermal conditions and its effect on the crystallinity of final product. Therefore, in our previous works, we only used the water that came from reagents, and no extra water was added [110,111].…”
Section: The Effect Of Il's Cation Size Shape or Lengthmentioning
confidence: 99%
“…Many materials were prepared and employed for diverse applications based on this concept, such as the resultant AlPO-34 material used for efficient adsorption of gentian violet dye removal from aqueous solutions, the material has demonstrated a remarkable adsorption capacity [110]. Furthermore, its efficacy as a biological agent against Escherichia coli (E. coli) bacteria, reaches a higher rate [111]. This dual functionality highlights the AlPO-34 material's versatility and its potential applications in both environmental remediation and antimicrobial processes.…”
Section: The Effect Of Il As Both Sda and Solventmentioning
confidence: 99%
“…Target examples include phosphates and carboxylates present in the external wall of Gram-negative bacteria, and teichoic acid in Gram-positive bacteria [12][13][14][15] . Once inside, they can display multiple antibacterial mechanisms, depending on their morphology, interact with the bacterial membrane and intracellular components such ribosome and bacterial chromosomes, causing oxidative stress and disrupting the bacterial cell's electronic balance, and reach an antibacterial efficacy of 100% [9,11,[14][15][16] . These properties grant metal nanoparticles a more selective antibacterial compared to colloidal silver, enabling their clinical use [11,17] .…”
Section: Introductionmentioning
confidence: 99%