Full name Familienname, Vorname
Gille, Lars
 


Results 1-7 of 7 (Search time: 0.002 seconds).

PreviewAuthor(s)TitleTypeIssue Date
1Walter, Martin ; Schenkeveld, Walter D. C. ; Geroldinger, Gerald ; Gille, Lars ; Reissner, Michael ; Kraemer, Stephan M. Identifying the reactive sites of hydrogen peroxide decomposition and hydroxyl radical formation on chrysotile asbestos surfacesArtikel Article 2020
2Walter, Martin ; Schenkeveld, Walter D. C. ; Reissner, Michael ; Gille, Lars ; Kraemer, Stephan M. The Effect of pH and Biogenic Ligands on the Weathering of Chrysotile Asbestos: The Pivotal Role of Tetrahedral Fe in Dissolution Kinetics and Radical FormationArtikel Article 1-Mar-2019
3Walter, Martin ; Schenkeveld, Walter ; Gille, Lars ; Reissner, Michael Using 57Fe Mössbauer spectroscopy to study the pivotal role of tetrahedrally coordinated Fe in the radical generation by, and dissolution mechanisms of, chrysotile asbestos fibersKonferenzbeitrag Inproceedings2019
4Walter, Martin ; Schenkeveld, Walter ; Gille, Lars ; Reissner, Michael ; Krämer, Stephan M. Dissolution of chrysotile asbestos and its implications on the fibers' radical forming potential: a complementary ICP-OES, EPR and 57Fe Mössbauer studyPräsentation Presentation2016
5Böhmdorfer, Stefan ; Patel, Anjan ; Gille, Lars ; Netscher, Thomas ; Mereiter, Kurt ; Rosenau, Thomas Formation and structure of a novel nitration product of δ-tocopherolArtikel Article 2013
6Böhmdorfer, Stefan ; Kloser, Elisabeth ; Patel, Anjan ; Gille, Lars ; Mereiter, Kurt ; Rosenau, Thomas Novel tocopherol derivatives. Part 32: On the bromination of pyranol[3,2-f]chromenes related to γ-tocopherolArtikel Article 2011
7Patel, Anjan ; Netscher, Thomas ; Gille, Lars ; Mereiter, Kurt ; Rosenau, Thomas Novel tocopheryl compounds XXV. synthesis and comparison of the para-quinones of all four homologous tocopherol model compounds and their 3,4-dehydro derivativesArtikel Article 2007



Results 1-1 of 1 (Search time: 0.002 seconds).

PreviewAuthor(s)TitleTypeIssue Date
1Reissner, Michael Radical generation and dissolution mechanisms of chrysotile asbestos fibresKonferenzbeitrag Inproceedings2019