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0D, 2D, 3D 차원별 페로브스카이트 연구 동향

조영채, 윤동환, 정윤혜, 신광용, 신혜선, 김기환

Research Trends by Dimension in 0D, 2D, and 3D Perovskites

Youngchae Cho, Donghwan Yun, Yunhye Jeong, Gwangyong Shin, Hyesun Shin, Gi-hwan Kim
J Electr Electron Mater 2025;38(2):153-160.
Published online: March 1, 2025
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페로브스카이트는 ABX3 화학식을 가지는 팔면체 구조로, 주로 유-무기 혼성 구조물이며 차원별로 크게 0D 나노크리스탈, quasi-2D, 3D 벌크 세 가지 종류로 나눌 수 있다. 페로브스카이트는 높은 광전 효율, 높은 발광 효율, 높은 색순도, 긴 전하 이동 거리 등의 장점으로 인해 활발한 연구가 진행되고 있으며 그 결과로 발광 소자, 태양전지, 센서 등 차세대 광전자 소재로 주목받고 있다. 본 논문에서는 차원별 페로브스카이트와 각각의 합성 방법 및 연구 동향을 설명하면서 광전자 소재로 응용 가능한 페로브스카이트에 대한 통찰력을 제공하고 이를 통해 차세대 광전자 소재 연구의 발전이 기대된다.

Perovskite, which follows the chemical formula ABX3 and exhibits an octahedral structure, is primarily a hybrid of organic and inorganic materials. It can be broadly categorized into three types based on dimensionality: 0D nanocrystals, quasi- 2D, and 3D bulk structures. As a result, it is gaining attention as a next-generation optoelectronic material for applications in light-emitting devices, solar cells, and sensors. This paper provides insights into dimension of perovskites, their respective synthesis methods, and current research trends, thereby offering prospects for advancements in the study of next-generation optoelectronic materials.

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Research Trends by Dimension in 0D, 2D, and 3D Perovskites
J Electr Electron Mater. 2025;38(2):153-160.   Published online March 1, 2025
Download Citation

Download a citation file in RIS format that can be imported by all major citation management software, including EndNote, ProCite, RefWorks, and Reference Manager.

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Research Trends by Dimension in 0D, 2D, and 3D Perovskites
J Electr Electron Mater. 2025;38(2):153-160.   Published online March 1, 2025
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