2020
DOI: 10.1016/j.apcatb.2019.118396
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Ultrathin g-C3N4 nanosheet with hierarchical pores and desirable energy band for highly efficient H2O2 production

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Cited by 221 publications
(92 citation statements)
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“…(3)-(6) [15,21]. The photocatalytic production of H2O2 eventually reaches a steady-state maximum level due to the competition between reductive formation and subsequent oxidative loss pathways [21][22][23][24]. However, to the best of our knowledge, few studies have been focused on enhancing H2O2 production by suppressing the various decomposition reactions.…”
Section: Rch 2 Oh + 2h + → Rcho + 2h +mentioning
confidence: 99%
“…(3)-(6) [15,21]. The photocatalytic production of H2O2 eventually reaches a steady-state maximum level due to the competition between reductive formation and subsequent oxidative loss pathways [21][22][23][24]. However, to the best of our knowledge, few studies have been focused on enhancing H2O2 production by suppressing the various decomposition reactions.…”
Section: Rch 2 Oh + 2h + → Rcho + 2h +mentioning
confidence: 99%
“…3(b), MRF-250 exhibits the highest kf and lowest kd among all samples. In addition, the photocatalytic decomposition of H2O2 was also measured [41] by using the 0.1 mM H2O2 aqueous solution as origin reaction solution. As shown in Fig.…”
Section: Resultsmentioning
confidence: 99%
“…[140] g-C 3 N 4 is developed as a promising photocatalyst for H 2 O 2 production. [141,142] 2D conductive material such as MOF has been coupled with g-C 3 N 4 to acquire high H 2 O 2 evolution rate. Ni-CAT is a hexagonal MOF commonly applied in supercapacitor and oxygen reduction reaction.…”
Section: H 2 O 2 Productionmentioning
confidence: 99%