SwePub
Sök i LIBRIS databas

  Extended search

WFRF:(Kim Hoon)
 

Search: WFRF:(Kim Hoon) > Atomic-scale view o...

Atomic-scale view of stability and degradation of single-crystal MAPbBr(3) surfaces

Choi, Joong Il Jake (author)
Institute for Basic Science, KOR
Khan, Muhammad Ejaz (author)
KAIST, KOR
Hawash, Zafer (author)
Okinawa Institute of Science and Technology Graduate University, JPN
show more...
Kim, Ki Jeong (author)
Pohang University, KOR
Lee, Hyunhwa (author)
Institute for Basic Science, KOR.;KAIST, KOR
Ono, Luis K. (author)
titute of Science and Technology Graduate University, JPN
Qi, Yabing (author)
titute of Science and Technology Graduate University, JPN
Kim, Yong-Hoon (author)
KAIST, KOR
Park, Jeong Young (author)
Institute for Basic Science, KOR
show less...
 (creator_code:org_t)
2019
2019
English.
In: Journal of Materials Chemistry A. - : Royal Society of Chemistry (RSC). - 2050-7488 .- 2050-7496. ; 7:36, s. 20760-20766
  • Journal article (peer-reviewed)
Abstract Subject headings
Close  
  • While organic-inorganic hybrid perovskite solar cells are emerging as promising candidates for next-generation solar cells with fascinating power conversion efficiency, the instability of perovskites remains a significant bottleneck for their commercialization. An atomic scale understanding of the degradation of hybrid perovskites, however, is only in its beginning stages because of the difficulty in preparing well-defined surface conditions for characterization. Using atomic force microscopy at ultra-high vacuum and room temperature, we report the first direct observation of the degradation process of a cleaved methylammonium lead bromide, MAPbBr(3) (MA: CH3NH3+), single crystal. Upon in situ cleavage, atomic force microscopy images show large flat terraces with monolayer height steps, which correspond to the surface of cubic MAPbBr(3) with methylammonium ligand termination. While this surface can be prepared via the cleavage process and is energetically stable, we observe that after several weeks under dark and vacuum conditions it degrades and produces clusters surrounded by pits. Guided by density functional theory calculations, we propose a degradation pathway that initiates even at low humidity levels and leads to the formation of surface PbBr2 species. We finally identify the electronic structure of the MA-bromine-terminated flat surface and find that it is correlated with a strong field-induced degradation of the MAPbBr(3) only at positive sample bias voltages.

Subject headings

TEKNIK OCH TEKNOLOGIER  -- Materialteknik (hsv//swe)
ENGINEERING AND TECHNOLOGY  -- Materials Engineering (hsv//eng)

Keyword

Materialteknik
Materials Engineering

Publication and Content Type

ref (subject category)
art (subject category)

Find in a library

To the university's database

Search outside SwePub

Kungliga biblioteket hanterar dina personuppgifter i enlighet med EU:s dataskyddsförordning (2018), GDPR. Läs mer om hur det funkar här.
Så här hanterar KB dina uppgifter vid användning av denna tjänst.

 
pil uppåt Close

Copy and save the link in order to return to this view