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The organic and biological chemistry of molecular oxygen is of extraordinary interest. Oxygen plays an important role in aging, damage to materials in the environment, cellular pathology (for example, the damage following stroke or heart attack) and many other areas. The details of the chemical reactions underlying these processes are poorly understood. The Foote group uses preparative, physical-organic, and bioorganic methods to study the chemistry of molecular oxygen in photochemical and biological processes. Reactive intermediates include singlet oxygen (1O2, a metastable excited state of molecular oxygen), superoxide ion, and other oxygen species.1,2
Singlet oxygen can be generated by many chemical and photochemical processes. A common way is by photochemical excitation of a sensitizer (Sens) to an electronically excited state (*Sens) followed by energy transfer from the excited sensitizer to oxygen.
The organic and biological chemistry of molecular oxygen is of extraordinary interest. Oxygen plays an important role in aging, damage to materials in the environment, cellular pathology (for example, the damage following stroke or heart attack) and many other areas. The details of the chemical reactions underlying these processes are poorly understood. The Foote group uses preparative, physical-organic, and bioorganic methods to study the chemistry of molecular oxygen in photochemical and biological processes. Reactive intermediates include singlet oxygen (1O2, a metastable excited state of molecular oxygen), superoxide ion, and other oxygen species.1,2
Singlet oxygen can be generated by many chemical and photochemical processes. A common way is by photochemical excitation of a sensitizer (Sens) to an electronically excited state (*Sens) followed by energy transfer from the excited sensitizer to oxygen.
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Andrii Rudenko, Viktor Krot,Koji Tsuchida,Jun Minakuchi,Tadashi Tomo, Seinosuke Kawashima,Pedro Cosme Da Costa Vieira,Hugh Rayner,Bruce M Robinson,Francesca Tentori,Connie Rhee,Tiny Hoekstra,
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ChemInformno. 20 (2010)
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