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Generation and study of Am(IV) by temperature-controlled electron pulse radiolysis.

Amy E KynmanTravis S GrimesStephen P MezykBobby LayneAndrew R CookBrian M RotermundGregory P Horne
Published in: Dalton transactions (Cambridge, England : 2003) (2024)
First-of-a-kind temperature-controlled electron pulse radiolysis experiments facilitated the radiation-induced formation of Am(IV) in concentrated (6.0 M) HNO 3 , and enabled the derivation of Arrhenius and Eyring activation parameters for instigating the radical reaction between NO 3 ˙ and Am(III).
Keyphrases
  • radiation induced
  • blood pressure
  • radiation therapy
  • electron transfer
  • solar cells
  • electron microscopy