Nanotechnology Now – Press Release: CsPbBrI2 perovskites with low energy loss for high-performance indoor and outdoor photovoltaics


Home > Press > CsPbBrI2 perovskites with low energy loss for high-performance indoor and outdoor photovoltaics

Schematic diagram of device structure and secondary grain growth with (NH4)2C2O4* H2O treatment.

CREDIT
©Science China Press
Schematic diagram of device structure and secondary grain growth with (NH4)2C2O4* H2O treatment.

CREDIT
©Science China Press

Abstract:
Over the years, the efficiency of PSCs has increased at an unprecedented pace. However, many reports have revealed significant irreversible decomposition of the organic component under high humidity and high temperature conditions, implying the instability of organic-inorganic hybrid perovskite solar cell in real applications. Normally, inorganic materials exhibit better stability compared to organic materials, especially at elevated temperatures. However, the size of the Cs+ cation is too small to hold the PbI62? octahedron. Therefore, the photoactive α-phase (cubic phase) is unstable and the CsPbBrI2 and CsPbI3 materials easily convert to the undesired δ-phase (orthorhombic phase) at room temperature. In addition, a main limiting factor in the photoelectric performance of all-inorganic PSCs is the energy loss (a large Eloss ca. 0.7 to 0.9 eV). In brief, a large Eloss reflects inhomogeneous energy landscape, large trap density and significant energy disorder in the device, which generate a nonradiative energy loss channel and a Voc reduction. Therefore, enhancing the Voc to reduce Eloss is crucial for high performance in all-inorganic PSCs.

CsPbBrI2 perovskites with low energy loss for high-performance indoor and outdoor photovoltaics


Beijing, China | Posted on December 1st, 2020

Generally, Voc is related to the band gap of perovskite, the highest occupied molecular orbital (HOMO) of the hole-transporting layer (HTL) and the lowest unoccupied molecular orbital (LUMO) of the electron-transporting layer (ETL). Meanwhile, the Voc of devices is also related to the quality of film (grain size). Such as, Kim et al. analyzed an intensity-dependent Voc on the basis of Shockley-Read-Hall (SRH) model and confirmed that decrease in grain size is accompanied by a downturn in optoelectronic performance of PSCs, due to the increase in trap density.

In this work, we demonstrate a secondary grain growth functionalization with ammonium oxalate ((NH4)2C2O4* H2O) to improve the optoelectronic performance of all-inorganic PSCs, wherein (NH4)2C2O4* H2O can effectively promote the secondary growth of the perovskite crystal to a few microns. The resulting high-quality perovskite film exhibited higher carrier mobility and lower trap density and eventually achieved ultra-low energy loss (0.64 eV). The CsPbBrI2:(NH4)2C2O4* H2O-based device exhibits a highest Voc of 1.24 V and PCE of 16.55% under AM 1.5 G, and a record PCE is 28.48% under under a fluorescent lamp of 1000 lux.

###

This project is also funded by the Collaborative Innovation Center of Suzhou Nano Science and Technology, the Priority Academic Program Development of Jiangsu Higher Education Institutions (PAPD), the “111” Project of The State Administration of Foreign Experts Affairs of China), and the Open Fund of the State Key Laboratory of Integrated Optoelectronics (IOSKL2018KF07).

####

For more information, please click here

Contacts:
Zhao-Kui Wang

Copyright © Science China Press

If you have a comment, please Contact us.

Issuers of news releases, not 7th Wave, Inc. or Nanotechnology Now, are solely responsible for the accuracy of the content.

Bookmark:
Delicious
Digg
Newsvine
Google
Yahoo
Reddit
Magnoliacom
Furl
Facebook

See the article:

News and information

Safe space: improving the “clean” methanol fuel cells using a protective carbon shell: Scientists encapsulate catalyst in a protective molecular sieve that selectively prevents undesired reactions in methanol fuel cells December 4th, 2020

RUDN University physicists described a new type of amorphous solid bodies December 4th, 2020

Chemists get peek at novel fluorescence: Rice University scientists discover delayed phenomenon in carbon nanotubes December 3rd, 2020

Arrowhead Pharmaceuticals to Participate in Upcoming Conferences December 2nd, 2020

Perovskites

Lead-free magnetic perovskites November 6th, 2020

Aberrant electronic and structural alterations in pressure tuned perovskite NaOsO3 September 18th, 2020

Crystal structure discovered almost 200 years ago could hold key to solar cell revolution July 3rd, 2020

Printed perovskite LEDs: An innovative technique towards a new standard process of electronics manufacturing June 12th, 2020

Govt.-Legislation/Regulation/Funding/Policy

Chemists get peek at novel fluorescence: Rice University scientists discover delayed phenomenon in carbon nanotubes December 3rd, 2020

New platform generates hybrid light-matter excitations in highly charged graphene December 2nd, 2020

NIST sensor experts invent supercool mini thermometer November 17th, 2020

Arrowhead Interim Clinical Data Demonstrate ARO-AAT Treatment Improved Multiple Biomarkers of Alpha-1 Liver Disease November 13th, 2020

Possible Futures

Safe space: improving the “clean” methanol fuel cells using a protective carbon shell: Scientists encapsulate catalyst in a protective molecular sieve that selectively prevents undesired reactions in methanol fuel cells December 4th, 2020

RUDN University physicists described a new type of amorphous solid bodies December 4th, 2020

Chemists get peek at novel fluorescence: Rice University scientists discover delayed phenomenon in carbon nanotubes December 3rd, 2020

Having it Both Ways: A Combined Strategy in Catalyst Design for Suzuki Cross-Couplings December 2nd, 2020

Discoveries

Safe space: improving the “clean” methanol fuel cells using a protective carbon shell: Scientists encapsulate catalyst in a protective molecular sieve that selectively prevents undesired reactions in methanol fuel cells December 4th, 2020

RUDN University physicists described a new type of amorphous solid bodies December 4th, 2020

Chemists get peek at novel fluorescence: Rice University scientists discover delayed phenomenon in carbon nanotubes December 3rd, 2020

Having it Both Ways: A Combined Strategy in Catalyst Design for Suzuki Cross-Couplings December 2nd, 2020

Announcements

Safe space: improving the “clean” methanol fuel cells using a protective carbon shell: Scientists encapsulate catalyst in a protective molecular sieve that selectively prevents undesired reactions in methanol fuel cells December 4th, 2020

RUDN University physicists described a new type of amorphous solid bodies December 4th, 2020

Chemists get peek at novel fluorescence: Rice University scientists discover delayed phenomenon in carbon nanotubes December 3rd, 2020

Having it Both Ways: A Combined Strategy in Catalyst Design for Suzuki Cross-Couplings December 2nd, 2020

Interviews/Book Reviews/Essays/Reports/Podcasts/Journals/White papers/Posters

Safe space: improving the “clean” methanol fuel cells using a protective carbon shell: Scientists encapsulate catalyst in a protective molecular sieve that selectively prevents undesired reactions in methanol fuel cells December 4th, 2020

RUDN University physicists described a new type of amorphous solid bodies December 4th, 2020

Chemists get peek at novel fluorescence: Rice University scientists discover delayed phenomenon in carbon nanotubes December 3rd, 2020

No nanoparticle risks to humans found in field tests of spray sunscreens December 2nd, 2020

Energy

Safe space: improving the “clean” methanol fuel cells using a protective carbon shell: Scientists encapsulate catalyst in a protective molecular sieve that selectively prevents undesired reactions in methanol fuel cells December 4th, 2020

Chemists get peek at novel fluorescence: Rice University scientists discover delayed phenomenon in carbon nanotubes December 3rd, 2020

One-way street for electrons: Scientists observe directed energy transport between neighbouring molecules in a nanomaterial November 27th, 2020

Improving quantum dot interactions, one layer at a time: Scientists have found a way to control an interaction between quantum dots that could lead to more efficient solar cells November 20th, 2020

Solar/Photovoltaic

Chemists get peek at novel fluorescence: Rice University scientists discover delayed phenomenon in carbon nanotubes December 3rd, 2020

One-way street for electrons: Scientists observe directed energy transport between neighbouring molecules in a nanomaterial November 27th, 2020

Improving quantum dot interactions, one layer at a time: Scientists have found a way to control an interaction between quantum dots that could lead to more efficient solar cells November 20th, 2020

Multi-institutional team extracts more energy from sunlight with advanced solar panels October 6th, 2020

Leave a Reply

Your email address will not be published. Required fields are marked *