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Radical Singlet
10.1016/J.SEPPUR.2021.118466
Electron paramagnetic resonance (EPR) and quenching tests indicated that non-radical singlet oxygen (1O2) is the dominant contributor for HA degradation.
Electron paramagnetic resonance (EPR) and quenching tests indicated that non-radical singlet oxygen (1O2) is the dominant contributor for HA degradation.
Radical Singlet
10.1016/J.APCATB.2021.120229
The active species capture experimental data and electron spin resonance (ESR) determinations revealed that both active radicals (like •SO4-, •OH, •O2-, h+) and nonradical singlet oxygen (1O2) participated in the CQ decomposition.
The active species capture experimental data and electron spin resonance (ESR) determinations revealed that both active radicals (like •SO4-, •OH, •O2-, h+) and nonradical singlet oxygen (1O2) participated in the CQ decomposition.
Radical Singlet
10.1007/s10971-021-05574-2
The scavenging experiments and electron paramagnetic resonance technologies revealed that non-radical singlet oxygen (1O2), sulfate radicals(SO4•−) were associated as active species in the SrCoO2.
The scavenging experiments and electron paramagnetic resonance technologies revealed that non-radical singlet oxygen (1O2), sulfate radicals(SO4•−) were associated as active species in the SrCoO2.
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Radical Singlet
10.1016/j.jcis.2019.07.002
Quenching experiments and electron paramagnetic resonance demonstrated that non-radical singlet oxygen (1O2) was the dominant species for the oxidation of organic pollutants via electron transfer in the g-C3N4@COF/PMS system.
Quenching experiments and electron paramagnetic resonance demonstrated that non-radical singlet oxygen (1O2) was the dominant species for the oxidation of organic pollutants via electron transfer in the g-C3N4@COF/PMS system.
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