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Journal Articles

Time-dependent radiolytic yield of OH$$^{bullet}$$ radical studied by picosecond pulse radiolysis

El Omar, A. K.*; Schmidhammer, U.*; Jeunesse, P.*; Labre, J. P.*; Lin, M.; Muroya, Yusa*; Katsumura, Yosuke*; Pernot, P.*; Mostafavi, M.*

Journal of Physical Chemistry A, 115(44), p.12212 - 12216, 2011/10

 Times Cited Count:40 Percentile:81(Chemistry, Physical)

Picosecond pulse radiolysis measurements using a pulse-probe method are performed to measure directly the time-dependent radiolytic yield of the OH$$^{bullet}$$ radical in pure water. The time-dependent absorbance of OH$$^{bullet}$$ radical at 263 nm is deduced from the observed signal by substracting the contribution of the hydated electron and that of the irradiated empty fused silica cell which presents also a transient absoption. The time-dependent radiolytic yield of OH$$^{bullet}$$ is obtained by assuming the yield of the hydrated electron at 20 ps equal to 4.2$$times$$10$$^{-7}$$ mol/J. The value of the yield of OH$$^{bullet}$$ radical at 20 ps is found to be (4.80$$pm$$0.12)$$times$$10$$^{-7}$$ mol/J.

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Direct measurement of hydroxyl radical by picosecond pulse radiolysis

Lin, M.; Muroya, Yusa*; Katsumura, Yosuke*; El Omar, A. K.*; Mostafavi, M.*; Meesungneon, J.*; Jay-Gerin, J.-P.*

no journal, , 

Picosecond pulse radiolysis measurements using a pulse-probe method are performed to measure directly the time-dependent radiolytic yield of hydroxyl radical in pure H$$_{2}$$O and D$$_{2}$$O. Special attention has been paid to the contribution of the absorption by the irradiated empty fused silica cell in UV.

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