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- 01JACZQ61699KVTBYG97J3W2V8 classification A1.
- 01JACZQ61699KVTBYG97J3W2V8 date "1971".
- 01JACZQ61699KVTBYG97J3W2V8 language "eng".
- 01JACZQ61699KVTBYG97J3W2V8 type journalArticle.
- 01JACZQ61699KVTBYG97J3W2V8 hasPart 01JACZZXC223HJ9WSS25M4PH6K.pdf.
- 01JACZQ61699KVTBYG97J3W2V8 subject "Chemistry".
- 01JACZQ61699KVTBYG97J3W2V8 subject "Physics and Astronomy".
- 01JACZQ61699KVTBYG97J3W2V8 doi "10.1016/0022-4596(71)90015-6".
- 01JACZQ61699KVTBYG97J3W2V8 issn "0022-4596".
- 01JACZQ61699KVTBYG97J3W2V8 issn "1095-726X".
- 01JACZQ61699KVTBYG97J3W2V8 issue "1".
- 01JACZQ61699KVTBYG97J3W2V8 volume "3".
- 01JACZQ61699KVTBYG97J3W2V8 abstract "The number of correlated electrons involved in the charge transfer step during anodic oxidation of various reactants at the illuminated ZnO electrode was determined by noise measurements. This number was found to be equal to unity in the case of anodic dissolution of ZnO and of oxidation of I−. For the anodic oxidation of aliphatic alcohols, which is known to occur by a current multiplication mechanism, the hole capture and electron injection steps were shown to be correlated. Basing upon the noise measurements, the lifetime and surface concentration of the intermediate radicals, formed during the alcohol oxidation, are discussed.".
- 01JACZQ61699KVTBYG97J3W2V8 author 6E407826-B25E-11E6-B104-2D2FD0AF0289.
- 01JACZQ61699KVTBYG97J3W2V8 author FC59629E-F0ED-11E1-A9DE-61C894A0A6B4.
- 01JACZQ61699KVTBYG97J3W2V8 dateCreated "2024-10-17T10:17:35Z".
- 01JACZQ61699KVTBYG97J3W2V8 dateModified "2024-11-28T00:18:11Z".
- 01JACZQ61699KVTBYG97J3W2V8 name "Study of noise associated with oxidation reactions at the illuminated single crystal zinc oxide anode".
- 01JACZQ61699KVTBYG97J3W2V8 pagination urn:uuid:13b6ac82-ca48-4dbe-b4df-a81c49d2adca.
- 01JACZQ61699KVTBYG97J3W2V8 sameAs LU-01JACZQ61699KVTBYG97J3W2V8.
- 01JACZQ61699KVTBYG97J3W2V8 sourceOrganization urn:uuid:56348920-51e2-4bd1-9f4e-8d6c52d104b4.
- 01JACZQ61699KVTBYG97J3W2V8 sourceOrganization urn:uuid:ce1aba3e-1634-4de7-a191-cc548d84349e.
- 01JACZQ61699KVTBYG97J3W2V8 type A1.