Publication detail

Proteinogenic Amino Acid Assisted Preparation of Highly Luminescent Hybrid Perovskite Nanoparticles

JANČÍK PROCHÁZKOVÁ, A. DEMCHYSHYN S. YUMUSAK C. MÁSILKO J. BRUGGEMANN O. WEITER M. KALTENBRUNNER M. SARICIFTCI N.S. KRAJČOVIČ, J. SALINAS Y. KOVALENKO, A.

Original Title

Proteinogenic Amino Acid Assisted Preparation of Highly Luminescent Hybrid Perovskite Nanoparticles

Type

journal article in Web of Science

Language

English

Original Abstract

Versatile approaches to nanoparticle synthesis offer unprecedented opportunities for the development of optoelectronics, photonics, and biosciences. With the current advancement of hybrid organic−inorganic metal halide perovskites, the next step is to expand their field of applications via utilization of functional and modifiable ligand chemistry. Here, we present a ligand assisted reprecipitation approach for highly luminescent perovskite nanoparticle synthesis.

Keywords

perovskity na báze halogenidů olova, nanočástice, amino kyseliny, ligandy, koloidy, luminiscence

Authors

JANČÍK PROCHÁZKOVÁ, A.; DEMCHYSHYN S.; YUMUSAK C.; MÁSILKO J.; BRUGGEMANN O.; WEITER M.; KALTENBRUNNER M.; SARICIFTCI N.S.; KRAJČOVIČ, J.; SALINAS Y.; KOVALENKO, A.

Released

10. 6. 2019

Publisher

American Chemical Society

Location

Spojené staty americké

ISBN

2574-0970

Periodical

ACS Applied Nano Materials

Year of study

2

Number

7

State

United States of America

Pages from

4267

Pages to

4274

Pages count

7

URL

BibTex

@article{BUT157790,
  author="JANČÍK PROCHÁZKOVÁ, A. and DEMCHYSHYN S. and YUMUSAK C. and MÁSILKO J. and BRUGGEMANN O. and WEITER M. and KALTENBRUNNER M. and SARICIFTCI N.S. and KRAJČOVIČ, J. and SALINAS Y. and KOVALENKO, A.",
  title="Proteinogenic Amino Acid Assisted Preparation of Highly Luminescent Hybrid Perovskite Nanoparticles",
  journal="ACS Applied Nano Materials",
  year="2019",
  volume="2",
  number="7",
  pages="4267--4274",
  doi="10.1021/acsanm.9b00725",
  issn="2574-0970",
  url="https://pubs.acs.org/doi/10.1021/acsanm.9b00725"
}