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Updated: Aug 11, 2025

Facile Synthesis of Colloidal Lead Halide Perovskite Nanoplatelets via Ligand-Assisted Reprecipitation
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Correction: Atomically flat semiconductor nanoplatelets for light-emitting applications.

Bing Bai1, Chengxi Zhang2, Yongjiang Dou2

  • 1Key Lab for Special Functional Materials, Ministry of Education, National and Local Joint Engineering Research Center for High-Efficiency Display and Lighting Technology, School of Materials Science and Engineering, and Collaborative Innovation Center of Nano Functional Materials and Applications, Henan University, Kaifeng 475004, China.

Chemical Society Reviews
|February 9, 2023
PubMed
Summary
This summary is machine-generated.

This correction clarifies details regarding atomically flat semiconductor nanoplatelets. These advanced materials are crucial for developing next-generation light-emitting applications.

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Area of Science:

  • Materials Science
  • Nanotechnology
  • Semiconductor Physics

Context:

  • Semiconductor nanoplatelets offer unique quantum confinement effects.
  • Atomically flat surfaces are critical for optimizing optoelectronic properties.
  • Previous work has explored their potential in light-emitting devices.

Purpose:

  • To provide a correction to the original publication.
  • To ensure accuracy in the scientific record.
  • To refine the understanding of semiconductor nanoplatelets.

Summary:

  • This correction addresses inaccuracies in the original article concerning atomically flat semiconductor nanoplatelets.
  • It provides revised information critical for understanding their synthesis and properties.
  • The focus remains on their application in advanced light-emitting technologies.

Impact:

  • Ensures the reliability of research on semiconductor nanomaterials.
  • Facilitates accurate development of novel light-emitting diodes (LEDs) and displays.
  • Supports the advancement of quantum dot technology and optoelectronics.