*S Supporting Information ABSTRACT: Indirect nanoplasmonic sensing (INPS) is an experimental platform exploiting localized surface plasmon resonance (LSPR) detection of processes in nanomaterials, molecular assemblies, and films at the nanoscale. Here we have for the first time applied INPS to study dye molecule adsorption/ impregnation of two types of TiO2 materials: thick (10 μm) mesoporous films of the kind used as photoanode in dye-sensitized solar cells (DSCs), with particle/pore size in the range of 20 nm, and thin (12−70 nm), dense, and flat films. For the thick-film experiments plasmonic Au nanoparticles were placed at the hidden, internal interface between the sensor surface and the mesoporous TiO2. This approach provides a unique ...
International audienceUnderstanding how gas molecules interact with nanoparticles (NPs) remains an e...
National audienceWhen gas molecules are adsorbed or interact on Au nanodisks (direct sensing) or on ...
Plasmonics is an emerging field that makes use of the nanoscale properties of metals, and its applic...
Indirect nanoplasmonic sensing (INPS) is an experimental platform exploiting localized surface plasm...
Indirect nanoplasmonic sensing (INPS) is an experimental platform exploiting localized surface plasm...
In this study, we used Hidden Interface-Indirect Nanoplasmonic Sensing (HI-INPS) for real time monit...
A dye monolayer formation on a semiconductor surface is critical for efficient dye-sensitized solar ...
A dye molecule monolayer formed on a TiO2 surface is a key component in dye-sensitized solar cells. ...
The main source of our energy system, the fossil fuels, will eventually be depleted and also pose en...
Indirect nanoplasmonic sensing, INPS, as the key step forward, facilitates the use of nanoplasmonic ...
International audienceWe study gas adsorption and interaction on nanoparticles (NPs) deposited on Au...
International audienceIndirect nanoplasmonic sensing (INPS) lets us to follow the adsorption of gase...
International audienceThe indirect nanoplasmonic sensing (INPS) lets us to follow the adsorption of ...
Dye distribution in a mesoporous TiO2 film is a key factor in the performance of dye-sensitized sola...
International audienceUnderstanding how gas molecules such as water, oxygen, or carbon monoxide inte...
International audienceUnderstanding how gas molecules interact with nanoparticles (NPs) remains an e...
National audienceWhen gas molecules are adsorbed or interact on Au nanodisks (direct sensing) or on ...
Plasmonics is an emerging field that makes use of the nanoscale properties of metals, and its applic...
Indirect nanoplasmonic sensing (INPS) is an experimental platform exploiting localized surface plasm...
Indirect nanoplasmonic sensing (INPS) is an experimental platform exploiting localized surface plasm...
In this study, we used Hidden Interface-Indirect Nanoplasmonic Sensing (HI-INPS) for real time monit...
A dye monolayer formation on a semiconductor surface is critical for efficient dye-sensitized solar ...
A dye molecule monolayer formed on a TiO2 surface is a key component in dye-sensitized solar cells. ...
The main source of our energy system, the fossil fuels, will eventually be depleted and also pose en...
Indirect nanoplasmonic sensing, INPS, as the key step forward, facilitates the use of nanoplasmonic ...
International audienceWe study gas adsorption and interaction on nanoparticles (NPs) deposited on Au...
International audienceIndirect nanoplasmonic sensing (INPS) lets us to follow the adsorption of gase...
International audienceThe indirect nanoplasmonic sensing (INPS) lets us to follow the adsorption of ...
Dye distribution in a mesoporous TiO2 film is a key factor in the performance of dye-sensitized sola...
International audienceUnderstanding how gas molecules such as water, oxygen, or carbon monoxide inte...
International audienceUnderstanding how gas molecules interact with nanoparticles (NPs) remains an e...
National audienceWhen gas molecules are adsorbed or interact on Au nanodisks (direct sensing) or on ...
Plasmonics is an emerging field that makes use of the nanoscale properties of metals, and its applic...