AbstractDevelopment of fast highly-sensitive semiconductor gas sensors operating at room temperature, which would be compatible with semiconductor technology, remains a challenge for researchers. Here we present such sensor based on a nanoscale Pt–TiO2–Pt sandwich. The sensor consists of a thin (∼30nm) nanocrystalline TiO2 layer with ∼10nm grains, placed between the bottom Pt electrode layer and top Pt electrode shaped as a long narrow (width w down to 80nm) stripe. If we decrease w to ∼100nm and below, the sensor exposed to air with 1% H2 exhibits the increase of response (Rair/RH2) up to ∼107 and decrease of the reaction time to only a few seconds even at room temperature. The sensitivity increase is due to a nontrivial non-ohmic effect, ...
Ultralow-power gas sensing devices need to operate without an energy consuming heater element. This ...
Gas sensors based on undoped and Cr doped TiO2 layers with novel top and bottom electrode (TBE) conf...
The hydrogen-sensing performance of a nanosensor integrating interdigitated electrodes with a gap of...
AbstractDevelopment of fast highly-sensitive semiconductor gas sensors operating at room temperature...
AbstractHighly sensitive hydrogen semiconductor gas sensor operating at room temperature is presente...
Owing to their excellent hydrogen surface susceptibility, TiO2 thin films have been proven worthy of...
AbstractThe surface potential response to a gas-surface interaction is proposed as the basis for the...
Despite growing demands for high performance hydrogen (H-2) sensors operating at low temperature, me...
High sensitivity gas sensors are typically realized using metal catalysts and nanostructured materia...
High demand of semiconductor gas sensor works at low operating temperature to as low as 100 °C h...
Gas sensors based on titanium dioxide (TiO2) have attracted much public attention during the past de...
A novel sensor based on Schottky junction inducing avalanche breakdown effect in TiO2-Sn3O4 nanohete...
AbstractGas sensors based on undoped and Cr doped TiO2 layers with novel top and bottom electrode (T...
In this work, we report a novel micromachined hydrogen sensor operating at room temperature. The sen...
There is an increasing demand for mass-producible, low-power gas sensors in a wide variety of indust...
Ultralow-power gas sensing devices need to operate without an energy consuming heater element. This ...
Gas sensors based on undoped and Cr doped TiO2 layers with novel top and bottom electrode (TBE) conf...
The hydrogen-sensing performance of a nanosensor integrating interdigitated electrodes with a gap of...
AbstractDevelopment of fast highly-sensitive semiconductor gas sensors operating at room temperature...
AbstractHighly sensitive hydrogen semiconductor gas sensor operating at room temperature is presente...
Owing to their excellent hydrogen surface susceptibility, TiO2 thin films have been proven worthy of...
AbstractThe surface potential response to a gas-surface interaction is proposed as the basis for the...
Despite growing demands for high performance hydrogen (H-2) sensors operating at low temperature, me...
High sensitivity gas sensors are typically realized using metal catalysts and nanostructured materia...
High demand of semiconductor gas sensor works at low operating temperature to as low as 100 °C h...
Gas sensors based on titanium dioxide (TiO2) have attracted much public attention during the past de...
A novel sensor based on Schottky junction inducing avalanche breakdown effect in TiO2-Sn3O4 nanohete...
AbstractGas sensors based on undoped and Cr doped TiO2 layers with novel top and bottom electrode (T...
In this work, we report a novel micromachined hydrogen sensor operating at room temperature. The sen...
There is an increasing demand for mass-producible, low-power gas sensors in a wide variety of indust...
Ultralow-power gas sensing devices need to operate without an energy consuming heater element. This ...
Gas sensors based on undoped and Cr doped TiO2 layers with novel top and bottom electrode (TBE) conf...
The hydrogen-sensing performance of a nanosensor integrating interdigitated electrodes with a gap of...