Red-shifting the absorption of norbornadienes (NBDs), into the visible region, enables the photo-isomerization of NBDs to quadricyclanes (QCs) to be driven by sunlight. This is necessary in order to utilize the NBD-QC system for molecular solar thermal (MOST) energy storage. Reported here is a study on five diaryl-substituted norbornadienes. The introduced aryl-groups induce a significant red-shift of the UV/vis absorption spectrum of the norbornadienes, and device experiments using a solar-simulator set-up demonstrate the potential use of these compounds for MOST energy storage. © the Partner Organisations 2014
Norbornadiene is a promising solar thermal fuel, but its absorption spectrum needs to be red-shifted...
Due to high global energy demands, there is a great need for development of technologies for exploit...
We present a procedure for performing high throughput screening of molecular compounds for molecular...
Red-shifting the absorption of norbornadienes (NBDs), into the visible region, enables the photo-iso...
Molecular photoswitches capable of storing solar energy are interesting candidates for future renewa...
Developing norbornadiene-quadricyclane (NBD-QC) systems for molecular solar-thermal (MOST) energy st...
Molecular photoswitches that are capable of storing solar energy, so-called molecular solar thermal ...
ConspectusRenewable energy resources are mostly intermittent and not evenly distributed geographical...
Molecular solar-thermal energy storage systems are based on molecular switches that reversibly conve...
Norbornadiene-quadricyclane (NBD-QC) photoswitches are candidates for applications in solar thermal ...
Norbornadiene-quadricyclane (NBD-QC) photoswitches are candidates for applications in solar thermal ...
Carefully targeted modifications to the norbornadiene-quadricyclane couple should give molecules wit...
The photoconversion of a norbornadiene (NBD) derivative was studied under high-intensity mono- and p...
Over the last decade, there has been great scientific progress in terms of harvesting solar energy b...
Molecular photoswitches based on the norbornadiene-quadricylane (NBD-QC) couple have been proposed a...
Norbornadiene is a promising solar thermal fuel, but its absorption spectrum needs to be red-shifted...
Due to high global energy demands, there is a great need for development of technologies for exploit...
We present a procedure for performing high throughput screening of molecular compounds for molecular...
Red-shifting the absorption of norbornadienes (NBDs), into the visible region, enables the photo-iso...
Molecular photoswitches capable of storing solar energy are interesting candidates for future renewa...
Developing norbornadiene-quadricyclane (NBD-QC) systems for molecular solar-thermal (MOST) energy st...
Molecular photoswitches that are capable of storing solar energy, so-called molecular solar thermal ...
ConspectusRenewable energy resources are mostly intermittent and not evenly distributed geographical...
Molecular solar-thermal energy storage systems are based on molecular switches that reversibly conve...
Norbornadiene-quadricyclane (NBD-QC) photoswitches are candidates for applications in solar thermal ...
Norbornadiene-quadricyclane (NBD-QC) photoswitches are candidates for applications in solar thermal ...
Carefully targeted modifications to the norbornadiene-quadricyclane couple should give molecules wit...
The photoconversion of a norbornadiene (NBD) derivative was studied under high-intensity mono- and p...
Over the last decade, there has been great scientific progress in terms of harvesting solar energy b...
Molecular photoswitches based on the norbornadiene-quadricylane (NBD-QC) couple have been proposed a...
Norbornadiene is a promising solar thermal fuel, but its absorption spectrum needs to be red-shifted...
Due to high global energy demands, there is a great need for development of technologies for exploit...
We present a procedure for performing high throughput screening of molecular compounds for molecular...