2022
DOI: 10.1016/j.rineng.2022.100695
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Fabrication of charcoal-nickel (II)-poly(acrylic acid) nanocomposite hydrogels for photodegradation of rhodamine B under direct sunlight irradiation

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Cited by 8 publications
(2 citation statements)
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“…4e and Table S3 †). 47,[60][61][62][63][64][65][66][67][68][69][70][71][72][73][74][75][76] The reason is that the hydrogel-based inverse opal scaffold can greatly enhance light absorption, increase catalytically active sites, reduce charge transfer resistance, and inhibit the recombination of photogenerated electron-hole pairs. In addition, the stability and recyclability of catalysts are key factors to evaluate the overall photocatalytic performance.…”
Section: Photocatalytic Activity Measurementsmentioning
confidence: 99%
“…4e and Table S3 †). 47,[60][61][62][63][64][65][66][67][68][69][70][71][72][73][74][75][76] The reason is that the hydrogel-based inverse opal scaffold can greatly enhance light absorption, increase catalytically active sites, reduce charge transfer resistance, and inhibit the recombination of photogenerated electron-hole pairs. In addition, the stability and recyclability of catalysts are key factors to evaluate the overall photocatalytic performance.…”
Section: Photocatalytic Activity Measurementsmentioning
confidence: 99%
“…Masalah lain muncul saat pembuatan arang aktif. Pembuatan arang aktif terdapat titik masalah karena proses aktivasi yang selama ini dilakukan selalu menggunakan aktivatoir dari asam atau basa sintetik (Rownok et al, 2022), seperti HCl (Huda et al, 2020), H2SO4 (Darajat et al, 2023), NaOH (Aryani et al, 2019), ZnCl2 (Yunus et al, 2021), dan CaCl2 (Purwanti et al, 2020). Letak masalah saat menggunakan aktivator sintetik adalah penggunaan bahan kimia secara berlebihan yang akan membuat limbah kimia dan merusak lingkungan.…”
Section: Pendahuluanunclassified