GPS News  
SOLAR DAILY
Perovskite solar cells: Possible aspects of high efficiency uncovered
by Staff Writers
Berlin, Germany (SPX) Nov 15, 2019

The drawing illustrates the interaction of the organic methylammonium cation (CH3NH3+) with the surrounding iodide ions. The shift of the iodide atoms out of the common plane with lead causes the breaking of the inversion symmetry.

Solar cells based on perovskites have reached enormously high efficiencies within a few years, only. Those containing hybrid halide perovskite, i.e. materials containing inorganic and organic components, achieve particularly high efficiencies, but lack long-term stability, yet.

Even though inorganic perovskite semiconductors, such as CsPbI3, are less efficient, they are considered interesting, as well, since they may overcome the stability issues of hybrid perovskites.

Up to now, it was assumed that hybrid and purely inorganic perovskites do not differ fundamentally in their crystalline structure. When producing perovskite materials, it often occurs that no large single crystals are formed, but countless tiny twin crystals instead. This makes a crystal structure analysis particularly complicated and prone to errors and low precision.

An HZB team headed by Prof Susan Schorr and Dr Joachim Breternitz has now achieved a breakthrough in understanding the crystalline structure of hybrid halide perovskites. The team investigated crystalline samples of methylammonium lead iodide (MAPbI3), the most prominent representative of this class of materials, at the Diamond Light Source synchrotron (DLS) in the United Kingdom using high-resolution single-crystal diffraction. This approach provided data for a more in-depth analysis of the crystalline structure of this material.

They were also able to clarify, whether ferroelectric effects are possible at all in this hybrid halide perovskite. Ferroelectric domains can have favourable effects in solar cells and increase their efficiency. However, measuring this effect in samples is difficult - a null result can mean that there is either no ferroelectric effect or that the ferroelectric domains cancel one another's effects out.

"From a crystallographic point of view, some conditions are necessary for ferroelectricity: a ferroelectric effect can only occur if the crystal structure does not contain an inversion centre, and additionally if it exhibits a permanent polar moment", explains Breternitz.

Previously, it was assumed that the crystal structure of MAPbI3 did contain an inversion centre. However, the results of the crystal structure analysis show this is not the case: "The organic methylammonium cation MA+ plays a major role in this", explains Breternitz.

This is because the MA molecule is not spherically symmetrical and is also considerably larger than a single atom, so that it generates a polar moment with the adjacent iodine atoms. The occurrence of ferroelectric domains in MAPbI3 is therefore possible.

For inorganic perovskites incorporating an alkali atom instead of the MA molecule, this mechanism is not applicable. That means the more stable inorganic perovskites may be fundamentally somewhat more limited in their efficiency than their hybrid halide relatives.

Research paper


Related Links
Helmholtz-Zentrum Berlin fur Materialien und Energie
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
New material to pave the way for lead-free solar panels
Washington (UPI) Nov 13, 2019
Scientists have developed a new material that could be used to make solar panels without lead. Over the last decade, the quest to build a better, more efficient solar panel has centered on a mineral called perovskite. Solar panels made using the calcium titanium oxide mineral capture up to 28 percent of solar energy, while the best commercial panels boast efficiencies between 15 and 18 percent. But building perovskite panels at scale has proven difficult. The material is unstable and con ... 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
How to live off the land... in a major US city

Scores of Indian farmers arrested over polluting fires

Brazil cancels ban on sugarcane farming in Amazon

Australia launches billion dollar drought plan

SOLAR DAILY
A distinct spin on atomic transport

High performance electrical circuits made with 3D-printed plastics

Xerox eyes deal for PC maker HP: reports

Antimony holds promise for post-silicon electronics

SOLAR DAILY
Memory metals are shaping the evolution of aviation

UAE's $830.3M buy of Chinook cargo helicopters cleared by State Dept.

Lockheed nets $184.5M for organic depot level repairs on F-35s

Nine EU countries call for steeper aviation tax

SOLAR DAILY
Musk announces new Tesla factory will be in Germany

Dutch to cut speed limits to reduce emissions

Paris e-scooters under pressure to prove green credentials

Trundling into trouble: Singapore targets e-scooters after accidents

SOLAR DAILY
What slowdown? Chinese shoppers set new 'Singles' Day' spending record

Quarter of German firms in China planning to leave: survey

Trump hails economic boom, says China trade deal is 'close'

China's Jingye forges rescue deal for British Steel

SOLAR DAILY
Human activities are drying out the Amazon

Lost trees hugely overrated as environmental threat, study finds

Stunning Senegal baobab forest being swallowed by mining

Amazon fires in Brazil fall to record low in October: official

SOLAR DAILY
Artificial Intelligence for Earth Observation: join the UNOSAT Challenge

Changes in high-altitude winds over the South Pacific produce long-term effects

China launches new Earth observation satellite

Nature might be better than tech at reducing air pollution

SOLAR DAILY
SMART discovers breakthrough way to look at the surface of nanoparticles

Visible light and nanoparticle catalysts produce desirable bioactive molecules

Flexible, wearable supercapacitors based on porous nanocarbon nanocomposites

Scientists create a nanomaterial that is both twisted and untwisted at the same time









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.