화학공학소재연구정보센터
검색결과 : 8건
No. Article
1 Modulation of RAB5A early endosome trafficking in response to KRas mediated macropinocytic fluxes in pancreatic cancer cells
Teske C, Schweitzer C, Palamidessi A, Aust DE, Scita G, Weitz J, Welsch T
Biochemical and Biophysical Research Communications, 493(1), 528, 2017
2 Conversion of Guaiacol on Noble Metal Catalysts: Reaction Performance and Deactivation Studies
Gao D, Schweitzer C, Hwang HT, Varma A
Industrial & Engineering Chemistry Research, 53(49), 18658, 2014
3 Physical mechanisms of generation and deactivation of singlet oxygen
Schweitzer C, Schmidt R
Chemical Reviews, 103(5), 1685, 2003
4 Decatungstate photocatalyzed electron-transfer reactions of alkenes. Interception of the geminate radical ion pair by oxygen
Tanielian C, Seghrouchni R, Schweitzer C
Journal of Physical Chemistry A, 107(8), 1102, 2003
5 Mechanism of photosensitized generation of singlet oxygen during oxygen quenching of triplet states and the general dependence of the rate constants and efficiencies of O-2((1)Sigma(+)(g)), O-2((1)Delta(g)), and O-2((3)Sigma(-)(g)) formation on sensitizer triplet state energy and oxidation potential
Schweitzer C, Mehrdad Z, Noll A, Grabner EW, Schmidt R
Journal of Physical Chemistry A, 107(13), 2192, 2003
6 Formation of O-2((1)Sigma(+)(g)), O-2((1)Delta(g)), and O-2((3)Sigma(-)(g)) during oxygen quenching of n pi* triplet phenyl ketones: The role of charge transfer and sensitizer-oxygen complex structure
Mehrdad Z, Schweitzer C, Schmidt R
Journal of Physical Chemistry A, 106(2), 228, 2002
7 Charge-transfer and non-charge-transfer processes competing in the sensitization of singlet oxygen: Formation of O-2((1)Sigma(+)(g)), O-2((1)Delta(g)), and 0(2)((3)Sigma(-)(g)) during oxygen quenching of triplet excited naphthalene derivativest
Schmidt R, Shafii F, Schweitzer C, Abdel-Shafi AA, Wilkinson F
Journal of Physical Chemistry A, 105(10), 1811, 2001
8 Common Marcus type dependence of the charge transfer induced processes in the sensitization and quenching of singlet oxygen by naphthalene derivatives
Schweitzer C, Mehrdad Z, Shafii F, Schmidt R
Journal of Physical Chemistry A, 105(22), 5309, 2001