Ionosorbed oxygen is the key player in reactions on metal-oxide surfaces. This is particularly evident for chemiresistive gas sensors, which operate by modulating the conductivity of active materials through the formation/removal of surface O-related acceptors. Strikingly though, the exact type of species behind the sensing response remains obscure even for the most common material systems. The paradigm for ab initio modeling to date has been centered around charge-neutral surface species, ignoring the fact that molecular adsorbates are required to ionize to induce the sensing response. Herein, we resolve this inconsistency by carrying out a careful analysis of all charged O-related species on three naturally occurring surfaces of SnO2. We ...
The relation of surface science studies of single crystal metal oxides to gas sensing applications i...
The structural and electronic properties of bulk and both oxidized and reduced SnO2(110) surfaces as...
Among the various metal oxides, SnO<sub>2</sub> has been most widely exploited as a semiconductor ga...
Ionosorbed oxygen is the key player in reactions on metal-oxide surfaces. This is particularly evide...
Tin dioxide is the most commonly used material in commercial gas sensors based on semiconducting met...
Experimental techniques and density-functional theory have been employed to identify the surface com...
Historically, in gas sensing literature, the focus on “mechanisms” has been on oxygen species chemis...
Historically, in gas sensing literature, the focus on “mechanisms” has been on oxygen species chemis...
Historically, in gas sensing literature, the focus on “mechanisms” has been on oxygen species chemis...
Understanding the interaction between oxygen molecules and metal oxide semiconductors surface is im...
This review is an attempt to give an overview on how surface science studies cancontribute to a fund...
A molecular understanding of the adsorption of water on SnO2 surfaces is crucial for several applica...
A molecular understanding of the adsorption of water on SnO2 surfaces is crucial for several applica...
PACS. 82.65.+r – Surface and interface chemistry; heterogeneous catalysis at surfaces. PACS. 68.37.E...
Conductometric gas sensors (CGS) provide a reproducible gas response at a low cost but their operati...
The relation of surface science studies of single crystal metal oxides to gas sensing applications i...
The structural and electronic properties of bulk and both oxidized and reduced SnO2(110) surfaces as...
Among the various metal oxides, SnO<sub>2</sub> has been most widely exploited as a semiconductor ga...
Ionosorbed oxygen is the key player in reactions on metal-oxide surfaces. This is particularly evide...
Tin dioxide is the most commonly used material in commercial gas sensors based on semiconducting met...
Experimental techniques and density-functional theory have been employed to identify the surface com...
Historically, in gas sensing literature, the focus on “mechanisms” has been on oxygen species chemis...
Historically, in gas sensing literature, the focus on “mechanisms” has been on oxygen species chemis...
Historically, in gas sensing literature, the focus on “mechanisms” has been on oxygen species chemis...
Understanding the interaction between oxygen molecules and metal oxide semiconductors surface is im...
This review is an attempt to give an overview on how surface science studies cancontribute to a fund...
A molecular understanding of the adsorption of water on SnO2 surfaces is crucial for several applica...
A molecular understanding of the adsorption of water on SnO2 surfaces is crucial for several applica...
PACS. 82.65.+r – Surface and interface chemistry; heterogeneous catalysis at surfaces. PACS. 68.37.E...
Conductometric gas sensors (CGS) provide a reproducible gas response at a low cost but their operati...
The relation of surface science studies of single crystal metal oxides to gas sensing applications i...
The structural and electronic properties of bulk and both oxidized and reduced SnO2(110) surfaces as...
Among the various metal oxides, SnO<sub>2</sub> has been most widely exploited as a semiconductor ga...