The study of the complex interfaces between organic semiconductors and liquids have recently gained increasing attention due to their interesting applications as biosensors in biological environments, in photovoltaics, and in bioinspired light-harvesting systems. Here, we report a detailed characterization of the interface between polymer films and electrolytic solutions, both by photocurrent spectroscopy and electrochemical measurements. In particular, we demonstrate that a photocatalytic semi-water splitting reaction, leading to hydrogen evolution, occurs at the polymer surface, directly contacted to an aqueous saline (NaCl) solution, as a consequence of visible-light generated photocurrent. We propose here a fully unexplored application ...
Direct photon to chemical energy conversion using semiconductor-electrocatalyst-electrolyte interfac...
Twelve pigments are identified as possible water splitting photocatalysts using theoretical calculat...
*S Supporting Information ABSTRACT: Organic photoactive materials are promising candidates for the g...
The study of the complex interfaces between organic semiconductors and liquids have recently gained ...
The study of the complex interfaces between organic semiconductors and liquids have recently gained ...
The work presented in this thesis aims at studying the photoelectrochemical properties of conjugated...
The demand for a clean, sustainable energy future has motivated the scientific community to research...
A promising, yet challenging, route towards renewable production of hydrogen is the direct conversio...
Photoactive organic semiconductors are envisioned as a novel class of materials able to transduce li...
The use of hydrogen as a fuel, when generated from water using semiconductor photocatalysts and driv...
Conjugated polymers have sparked much interest as photocatalysts for hydrogen production. However, b...
The photocatalytic production of hydrogen represents a fascinating way to convert and store solar en...
We present high-performance and robust organic photoelectrochemical cells (OPECs) by employing a bul...
We are developing an artificial photosynthetic system that utilizes sunlight and water as the inputs...
We are developing an artificial photosynthetic system that will utilize sunlight and water as the in...
Direct photon to chemical energy conversion using semiconductor-electrocatalyst-electrolyte interfac...
Twelve pigments are identified as possible water splitting photocatalysts using theoretical calculat...
*S Supporting Information ABSTRACT: Organic photoactive materials are promising candidates for the g...
The study of the complex interfaces between organic semiconductors and liquids have recently gained ...
The study of the complex interfaces between organic semiconductors and liquids have recently gained ...
The work presented in this thesis aims at studying the photoelectrochemical properties of conjugated...
The demand for a clean, sustainable energy future has motivated the scientific community to research...
A promising, yet challenging, route towards renewable production of hydrogen is the direct conversio...
Photoactive organic semiconductors are envisioned as a novel class of materials able to transduce li...
The use of hydrogen as a fuel, when generated from water using semiconductor photocatalysts and driv...
Conjugated polymers have sparked much interest as photocatalysts for hydrogen production. However, b...
The photocatalytic production of hydrogen represents a fascinating way to convert and store solar en...
We present high-performance and robust organic photoelectrochemical cells (OPECs) by employing a bul...
We are developing an artificial photosynthetic system that utilizes sunlight and water as the inputs...
We are developing an artificial photosynthetic system that will utilize sunlight and water as the in...
Direct photon to chemical energy conversion using semiconductor-electrocatalyst-electrolyte interfac...
Twelve pigments are identified as possible water splitting photocatalysts using theoretical calculat...
*S Supporting Information ABSTRACT: Organic photoactive materials are promising candidates for the g...