In theory, oxygen (O2) is an ideal chemical reagent because of its high relative abundance and negligible environmental toxicity. In practice however, by the nature of its ground state electronic configuration, many chemical reactions involving O2 are spin forbidden which dramatically decreases its reactivity and thus its utility in applications. More reactive forms of O2 can be achieved by changing its electronic configuration through the use of photochemical and photophysical methods. This review highlights the roll of photon-to-chemical energy conversion in two of these reactive oxygen species (ROS): superoxide (O2−) and singlet oxygen (1O2), which can be accessed through a number of photochemical methods and used in a variety of excitin...
The chemical reactivity of singlet oxygen (1O2) (SO) derives from its electronically excited state. ...
Reactive oxygen species comprise oxygen-based free radicals and non-radical species such as peroxyni...
hoto-induced oxidation-enhancement in biomimetic bridged Ru(II)–Mo(VI) photo-catalyst is unexpectedl...
In theory, oxygen (O2) is an ideal chemical reagent because of its high relative abundance and negli...
DOI: 10.1039/9781849730860-00307International audienceA variety of photosensitizers has been include...
There are several low lying singlet oxygen (1O2) and superoxide radical (O-2) which are important i...
Singlet oxygen (O-1(2)) is the excited state of ground, triplet state, molecular oxygen (O-2). Photo...
Here, 10 guidelines are presented for a standardized definition of type I and type II photosensitize...
Here we show the design, preparation, and characterization of a dormant singlet oxygen (1O2) photose...
The study of singlet molecular oxygen production and reactivity has emerged as a rich and diverse ar...
The presented thesis is introduced by a general overview over reactions with oxygen and light, with ...
The study of organic photochemical reactions is linked to physical chemistry, particularly to spectr...
This Review aims to provide early stage researchers with an updated guide to applications of photoch...
ReviewThe detection methods and generation mechanisms of the intrinsic reactive oxygen species (ROS)...
ABSTRACT: A synergistic approach combining high-level multiconfigurational static calculations and f...
The chemical reactivity of singlet oxygen (1O2) (SO) derives from its electronically excited state. ...
Reactive oxygen species comprise oxygen-based free radicals and non-radical species such as peroxyni...
hoto-induced oxidation-enhancement in biomimetic bridged Ru(II)–Mo(VI) photo-catalyst is unexpectedl...
In theory, oxygen (O2) is an ideal chemical reagent because of its high relative abundance and negli...
DOI: 10.1039/9781849730860-00307International audienceA variety of photosensitizers has been include...
There are several low lying singlet oxygen (1O2) and superoxide radical (O-2) which are important i...
Singlet oxygen (O-1(2)) is the excited state of ground, triplet state, molecular oxygen (O-2). Photo...
Here, 10 guidelines are presented for a standardized definition of type I and type II photosensitize...
Here we show the design, preparation, and characterization of a dormant singlet oxygen (1O2) photose...
The study of singlet molecular oxygen production and reactivity has emerged as a rich and diverse ar...
The presented thesis is introduced by a general overview over reactions with oxygen and light, with ...
The study of organic photochemical reactions is linked to physical chemistry, particularly to spectr...
This Review aims to provide early stage researchers with an updated guide to applications of photoch...
ReviewThe detection methods and generation mechanisms of the intrinsic reactive oxygen species (ROS)...
ABSTRACT: A synergistic approach combining high-level multiconfigurational static calculations and f...
The chemical reactivity of singlet oxygen (1O2) (SO) derives from its electronically excited state. ...
Reactive oxygen species comprise oxygen-based free radicals and non-radical species such as peroxyni...
hoto-induced oxidation-enhancement in biomimetic bridged Ru(II)–Mo(VI) photo-catalyst is unexpectedl...