Ciftyürek, E.; Å mÃd, B.; Li, Z.; MatolÃn, V.; Schierbaum, K.
Spectroscopic Understanding of SnO2 and WO3 Metal Oxide Surfaces with Advanced Synchrotron Based; XPS-UPS and Near Ambient Pressure (NAP) XPS Surface Sensitive Techniques for Gas Sensor Applications under Operational Conditions. Sensors 2019, 19, 4737.
https://doi.org/10.3390/s19214737
AMA Style
Ciftyürek E, Å mÃd B, Li Z, MatolÃn V, Schierbaum K.
Spectroscopic Understanding of SnO2 and WO3 Metal Oxide Surfaces with Advanced Synchrotron Based; XPS-UPS and Near Ambient Pressure (NAP) XPS Surface Sensitive Techniques for Gas Sensor Applications under Operational Conditions. Sensors. 2019; 19(21):4737.
https://doi.org/10.3390/s19214737
Chicago/Turabian Style
Ciftyürek, Engin, BÅ™etislav Å mÃd, Zheshen Li, VladimÃr MatolÃn, and Klaus Schierbaum.
2019. "Spectroscopic Understanding of SnO2 and WO3 Metal Oxide Surfaces with Advanced Synchrotron Based; XPS-UPS and Near Ambient Pressure (NAP) XPS Surface Sensitive Techniques for Gas Sensor Applications under Operational Conditions" Sensors 19, no. 21: 4737.
https://doi.org/10.3390/s19214737
APA Style
Ciftyürek, E., Å mÃd, B., Li, Z., MatolÃn, V., & Schierbaum, K.
(2019). Spectroscopic Understanding of SnO2 and WO3 Metal Oxide Surfaces with Advanced Synchrotron Based; XPS-UPS and Near Ambient Pressure (NAP) XPS Surface Sensitive Techniques for Gas Sensor Applications under Operational Conditions. Sensors, 19(21), 4737.
https://doi.org/10.3390/s19214737