Space Travel News  
SOLAR DAILY
Researchers develop molecule to store solar energy
by Staff Writers
Linkoping, Sweden (SPX) Sep 02, 2020

A computer simulation from the researchers shows the chemical reaction in slow motion. This is what happens when the molecule absorbs energy from sunlight and changes its chemical structure to the more energy-rich form. The reaction takes place extremely rapidly, in less than 200 femtoseconds (a femtosecond is0.000,000,000,000,001 seconds).

Researchers at Linkoping University, Sweden, have developed a molecule that absorbs energy from sunlight and stores it in chemical bonds. A possible long-term use of the molecule is to capture solar energy efficiently and store it for later consumption. The current results have been published in the Journal of the American Chemical Society, JACS.

The Earth receives many times more energy from the sun than we humans can use. This energy is absorbed by solar energy facilities, but one of the challenges of solar energy is to store it efficiently, such that the energy is available when the sun is not shining. This led scientists at Linkoping University to investigate the possibility of capturing and storing solar energy in a new molecule.

"Our molecule can take on two different forms: a parent form that can absorb energy from sunlight, and an alternative form in which the structure of the parent form has been changed and become much more energy-rich, while remaining stable.

This makes it possible to store the energy in sunlight in the molecule efficiently", says Bo Durbeej, professor of computational physics in the Department of Physics, Chemistry and Biology at Linkoping University, and leader of the study.

The molecule belongs to a group known as "molecular photoswitches". These are always available in two different forms, isomers, that differ in their chemical structures. The two forms have different properties, and in the case of the molecule developed by LiU researchers, this difference is in the energy content. The chemical structures of all photoswitches are influenced by light energy.

This means that the structure, and thus the properties, of a photoswitch can be changed by illuminating it. One possible area of application for photoswitches is molecular electronics, in which the two forms of the molecule have different electrical conductivities. Another area is photopharmacology, in which one form of the molecule is pharmacologically active and can bind to a specific target protein in the body, while the other form is inactive.

It's common in research that experiments are done first and theoretical work subsequently confirms the experimental results, but in this case the procedure was reversed. Bo Durbeej and his group work in theoretical chemistry, and conduct calculations and simulations of chemical reactions.

This involves advanced computer simulations, which are performed on supercomputers at the National Supercomputer Centre, NSC, in Linkoping. The calculations showed that the molecule the researchers had developed would undergo the chemical reaction they required, and that it would take place extremely fast, within 200 femtoseconds. Their colleagues at the Research Centre for Natural Sciences in Hungary were then able to build the molecule, and perform experiments that confirmed the theoretical prediction.

In order to store large amounts of solar energy in the molecule, the researchers have attempted to make the energy difference between the two isomers as large as possible. The parent form of their molecule is extremely stable, a property that within organic chemistry is denoted by saying that the molecule is "aromatic".

The basic molecule consists of three rings, each of which is aromatic. When it absorbs light, however, the aromaticity is lost, such that the molecule becomes much more energy-rich. The LiU researchers show in their study, published in the Journal of the American Chemical Society, that the concept of switching between aromatic and non-aromatic states of a molecule has a major potential in the field of molecular photoswitches.

"Most chemical reactions start in a condition where a molecule has high energy and subsequently passes to one with a low energy. Here, we do the opposite - a molecule that has low energy becomes one with high energy. We would expect this to be difficult, but we have shown that it is possible for such a reaction to take place both rapidly and efficiently", says Bo Durbeej.

The researchers will now examine how the stored energy can be released from the energy-rich form of the molecule in the best way.

Research Report: "Photoinduced Changes in Aromaticity Facilitate Electrocyclization of Dithienylbenzene Switches"


Related Links
Linkoping University
All About Solar Energy at SolarDaily.com


Thanks for being here;
We need your help. The SpaceDaily news network continues to grow but revenues have never been harder to maintain.

With the rise of Ad Blockers, and Facebook - our traditional revenue sources via quality network advertising continues to decline. And unlike so many other news sites, we don't have a paywall - with those annoying usernames and passwords.

Our news coverage takes time and effort to publish 365 days a year.

If you find our news sites informative and useful then please consider becoming a regular supporter or for now make a one off contribution.
SpaceDaily Contributor
$5 Billed Once


credit card or paypal
SpaceDaily Monthly Supporter
$5 Billed Monthly


paypal only


SOLAR DAILY
Agilitas Energy's SMART solar project in Auburn MA commences construction
Auburn MA (SPX) Aug 27, 2020
Agilitas Energy, a leading energy developer headquartered in Wakefield MA with a robust portfolio across Massachusetts, New York and New Hampshire, recently commenced construction of its latest utility-scale solar photovoltaic project under the Solar Massachusetts Renewable Target (SMART) Program in the Town of Auburn, Massachusetts. Agilitas acquired this construction-ready solar PV project in March this year, which is situated on a 124.7-acre site in Auburn MA and will generate enough electricit ... read more

Comment using your Disqus, Facebook, Google or Twitter login.



Share this article via these popular social media networks
del.icio.usdel.icio.us DiggDigg RedditReddit GoogleGoogle

SOLAR DAILY
SOLAR DAILY
Follow Perseverance in real time on its way to Mars

Sustained planetwide storms may have filled lakes, rivers on ancient mars

Deep learning will help future Mars rovers go farther, faster, and do more science

NASA establishes Board to initially review Mars sample return plans

SOLAR DAILY
Orion Window Panel Complete for Front-Row View on Artemis Moon Mission

Lander exhaust could cloud studies of Lunar ices

China's Chang'e-4 probe resumes work for 21st lunar day

India's Chandrayaan-2 images Sarabhai Crater

SOLAR DAILY
Technology ready to explore subsurface oceans on Ganymede

Large shift on Europa was last event to fracture its surface

The Sun May Have Started Its Life with a Binary Companion

Ganymede covered by giant crater

SOLAR DAILY
Pristine space rock offers NASA scientists peek at evolution of life's building blocks

Rogue planets could outnumber the stars

The most sensitive instrument in the search for life in space comes from Bern

Microbes living on air a global phenomenon

SOLAR DAILY
Skyrora's Skylark Micro rocket launches from Iceland

Under pressure, nontoxic salt-based propellant performs well

Sierra Nevada aims to complete Dream Chaser space plane in March

SpaceX sets rocket booster reuse record in satellite launch

SOLAR DAILY
China's Mars probe over 8m km away from Earth

China seeks payload ideas for mission to moon, asteroid

China marching to Mars for humanity's better shared future

From the Moon to Mars: China's long march in space

SOLAR DAILY
Hubble snaps close-up of celebrity Comet NEOWISE

A dizzying show by Comet NEOWISE

Tiny Asteroid Buzzes by Earth - the Closest Flyby on Record

ZTF Finds Closest Known Asteroid to Fly By Earth









The content herein, unless otherwise known to be public domain, are Copyright 1995-2024 - Space Media Network. All websites are published in Australia and are solely subject to Australian law and governed by Fair Use principals for news reporting and research purposes. AFP, UPI and IANS news wire stories are copyright Agence France-Presse, United Press International and Indo-Asia News Service. ESA news reports are copyright European Space Agency. All NASA sourced material is public domain. Additional copyrights may apply in whole or part to other bona fide parties. All articles labeled "by Staff Writers" include reports supplied to Space Media Network by industry news wires, PR agencies, corporate press officers and the like. Such articles are individually curated and edited by Space Media Network staff on the basis of the report's information value to our industry and professional readership. Advertising does not imply endorsement, agreement or approval of any opinions, statements or information provided by Space Media Network on any Web page published or hosted by Space Media Network. General Data Protection Regulation (GDPR) Statement Our advertisers use various cookies and the like to deliver the best ad banner available at one time. All network advertising suppliers have GDPR policies (Legitimate Interest) that conform with EU regulations for data collection. By using our websites you consent to cookie based advertising. If you do not agree with this then you must stop using the websites from May 25, 2018. Privacy Statement. Additional information can be found here at About Us.