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Namyoung Ahn

Yonsei University · 工学

研究室紹介

Professor Namyoung Ahn's research lab focuses on advancing perovskite-based optoelectronic devices, with a primary emphasis on enhancing the efficiency, stability, and processability of perovskite solar cells. The lab investigates fundamental degradation mechanisms—particularly those driven by trapped charges and moisture—while developing innovative strategies such as Lewis base adducts and interface engineering to improve film quality and device performance. They also pioneer TCO-free and flexible perovskite solar cells using graphene and ultra-flexible substrates, enabling applications in portable and wearable electronics. Their work bridges materials chemistry, device physics, and engineering to address critical challenges in next-generation photovoltaics.

perovskite solar cellscharge trappingdevice stabilityflexible electronicsTCO-free devices

Research Overview

Papers
57
Total Citations
7,295
Papers (5y)
22
Primary Field
工学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
22total
2022
2023
2024
2025
2026
Citations per year (5y)
674total
20222023202420252026

Selected Papers

15
1
Article|2,283 citations·2015
Highly Reproducible Perovskite Solar Cells with Average Efficiency of 18.3% and Best Efficiency of 19.7% Fabricated via Lewis Base Adduct of Lead(II) Iodide
Namyoung Ahn, Dae‐Yong Son, In-Hyuk Jang, Seong Min Kang, Mansoo Choi, Nam‐Gyu Park
SJR Q1Journal of the American Chemical Society

High efficiency perovskite solar cells were fabricated reproducibly via Lewis base adduct of lead(II) iodide. PbI2 was dissolved in N,N-dimethyformamide with equimolar N,N-dimethyl sulfoxide (DMSO) and CH3NH3I. Stretching vibration of S═O appeared at 1045 cm(-1) for bare DMSO, which was shifted to 1020 and 1015 cm(-1) upon reacting DMSO with PbI2 and PbI2 + CH3NH3I, respectively, indicative of forming the adduct of PbI2·DMSO and CH3NH3I·PbI2·DMSO due to interaction between Lewis base DMSO and/or

Electrical and Electronic EngineeringEngineering
2
Article|1,040 citations·2016
Self-formed grain boundary healing layer for highly efficient CH3NH3PbI3 perovskite solar cells
Dae‐Yong Son, Jin‐Wook Lee, Yung Ji Choi, In-Hyuk Jang, Seonhee Lee, Pil J. Yoo, Hyunjung Shin, Namyoung Ahn, Mansoo Choi, Dongho Kim, Nam‐Gyu Park
SJR Q1Nature Energy
Electrical and Electronic EngineeringEngineering
3
Article|593 citations·2016
Trapped charge-driven degradation of perovskite solar cells
Namyoung Ahn, Kwisung Kwak, Min Seok Jang, Heetae Yoon, Byung Yang Lee, Jong Kwon Lee, Peter V. Pikhitsa, Junseop Byun, Mansoo Choi
SJR Q1Nature CommunicationsOA

Perovskite solar cells have shown unprecedent performance increase up to 22% efficiency. However, their photovoltaic performance has shown fast deterioration under light illumination in the presence of humid air even with encapulation. The stability of perovskite materials has been unsolved and its mechanism has been elusive. Here we uncover a mechanism for irreversible degradation of perovskite materials in which trapped charges, regardless of the polarity, play a decisive role. An experimental

Electrical and Electronic EngineeringEngineering
4
Article|474 citations·2015
Control of I–V Hysteresis in CH3NH3PbI3 Perovskite Solar Cell
Hui‐Seon Kim, In-Hyuk Jang, Namyoung Ahn, Mansoo Choi, Antonio Guerrero, Juan Bisquert, Nam‐Gyu Park
SJR Q1The Journal of Physical Chemistry Letters

Mismatch of current (I)-voltage (V) curves with respect to the scan direction, so-called I-V hysteresis, raises critical issue in MAPbI3 (MA = CH3NH3) perovskite solar cell. Although ferroelectric and ion migration have been proposed as a basis for the hysteresis, origin of hysteresis has not been apparently unraveled. We report here on the origin of I-V hysteresis of perovskite solar cell that was systematically evaluated by the interface-dependent electrode polarizations. Frequency (f)-depende

Electrical and Electronic EngineeringEngineering
5
Article|465 citations·2016
Superflexible, high-efficiency perovskite solar cells utilizing graphene electrodes: towards future foldable power sources
Jungjin Yoon, Hyangki Sung, Gunhee Lee, Woohyung Cho, Namyoung Ahn, Hyun Suk Jung, Mansoo Choi
SJR Q1Energy & Environmental Science

With rapid and brilliant progress in performance over recent years, perovskite solar cells have drawn increasing attention for portable power source applications.

Electrical and Electronic EngineeringEngineering
6
Article|260 citations·2015
Transparent Conductive Oxide‐Free Graphene‐Based Perovskite Solar Cells with over 17% Efficiency
Hyangki Sung, Namyoung Ahn, Min Seok Jang, Jong‐Kwon Lee, Heetae Yoon, Nam‐Gyu Park, Mansoo Choi
SJR Q1Advanced Energy Materials

Highly efficient transparent conductive oxide (TCO)-free perovskite (CH3NH3PbI3) solar cells are demonstrated by using a graphene transparent anode and organic carrier transport materials. By adding a few nanometer-thick MoO3 layer, wettability and work function of the graphene electrode are enhanced to enable a 17.1% power conversion efficiency, which is so far the highest efficiency for TCO-free solar cells. As a service to our authors and readers, this journal provides supporting information

Electrical and Electronic EngineeringEngineering
7
Article|223 citations·2019
Ultra-flexible perovskite solar cells with crumpling durability: toward a wearable power source
Gunhee Lee, Min‐cheol Kim, Yong Whan Choi, Namyoung Ahn, Jihun Jang, Jungjin Yoon, Sang Moon Kim, Jong-Gu Lee, Daeshik Kang, Hyun Suk Jung, Mansoo Choi
SJR Q1Energy & Environmental Science

By employing the neutral plane concept, we demonstrated ultra-flexible perovskite solar cells that can withstand 100 cycles of crumpling.

Electrical and Electronic EngineeringEngineering
8
Article|179 citations·2023
Electrically driven amplified spontaneous emission from colloidal quantum dots
Namyoung Ahn, Clément Livache, Valerio Pinchetti, Heeyoung Jung, Ho Jin, Donghyo Hahm, Young‐Shin Park, Victor I. Klimov
SJR Q1NatureOA

Abstract Colloidal quantum dots (QDs) are attractive materials for realizing solution-processable laser diodes that could benefit from size-controlled emission wavelengths, low optical-gain thresholds and ease of integration with photonic and electronic circuits 1–7 . However, the implementation of such devices has been hampered by fast Auger recombination of gain-active multicarrier states 1,8 , poor stability of QD films at high current densities 9,10 and the difficulty to obtain net optical g

Materials ChemistryMaterials Science
9
Article|171 citations·2017
Carbon Nanotubes versus Graphene as Flexible Transparent Electrodes in Inverted Perovskite Solar Cells
Il Jeon, Jungjin Yoon, Namyoung Ahn, Mohamed Atwa, Clément Delacou, Anton S. Anisimov, Esko I. Kauppinen, Mansoo Choi, Shigeo Maruyama, Yutaka Matsuo
SJR Q1The Journal of Physical Chemistry Letters

Transparent carbon electrodes, carbon nanotubes, and graphene were used as the bottom electrode in flexible inverted perovskite solar cells. Their photovoltaic performance and mechanical resilience were compared and analyzed using various techniques. Whereas a conventional inverted perovskite solar cells using indium tin oxide showed a power conversion efficiency of 17.8%, the carbon nanotube- and graphene-based cells showed efficiencies of 12.8% and 14.2%, respectively. An established MoO 3 dop

Electrical and Electronic EngineeringEngineering
10
Review|159 citations·2023
Towards Long‐Term Stable Perovskite Solar Cells: Degradation Mechanisms and Stabilization Techniques
Namyoung Ahn, Mansoo Choi
SJR Q1Advanced ScienceOA

It is certain that perovskite materials must be a game-changer in the solar industry as long as their stability reaches a level comparable with the lifetime of a commercialized Si photovoltaic. However, the operational stability of perovskite solar cells and modules still remains unresolved, especially when devices operate in practical energy-harvesting modes represented by maximum power point tracking under 1 sun illumination at ambient conditions. This review article covers from fundamental as

Electrical and Electronic EngineeringEngineering
11
Article|142 citations·2021
Prospects and challenges of colloidal quantum dot laser diodes
Heeyoung Jung, Namyoung Ahn, Victor I. Klimov
SJR Q1Nature PhotonicsOA
Materials ChemistryMaterials Science
12
Article|135 citations·2018
Highly Reproducible Large‐Area Perovskite Solar Cell Fabrication via Continuous Megasonic Spray Coating of CH3NH3PbI3
Min-Cheol Park, Woohyung Cho, Gunhee Lee, Seung Chan Hong, Mincheol Kim, Jungjin Yoon, Namyoung Ahn, Mansoo Choi
SJR Q1Small

Abstract A simple, low‐cost, large area, and continuous scalable coating method is proposed for the fabrication of hybrid organic–inorganic perovskite solar cells. A megasonic spray‐coating method utilizing a 1.7 MHz megasonic nebulizer that could fabricate reproducible large‐area planar efficient perovskite films is developed. The coating method fabricates uniform large‐area perovskite film with large‐sized grain since smaller and narrower sized mist droplets than those generated by existing ul

Electrical and Electronic EngineeringEngineering
13
Article|119 citations·2017
Carbon-sandwiched perovskite solar cell
Namyoung Ahn, Il Jeon, Jungjin Yoon, Esko I. Kauppinen, Yutaka Matsuo, Shigeo Maruyama, Mansoo Choi
SJR Q1Journal of Materials Chemistry A

Carbon-sandwiched perovskite solar cells have long-term stability and are low cost.

Electrical and Electronic EngineeringEngineering
14
Article|109 citations·2015
Thermodynamic regulation of CH3NH3PbI3crystal growth and its effect on photovoltaic performance of perovskite solar cells
Namyoung Ahn, Seong Min Kang, Jin‐Wook Lee, Mansoo Choi, Nam‐Gyu Park
SJR Q1Journal of Materials Chemistry A

We report a theoretical analysis on the crystallization of CH<sub>3</sub>NH<sub>3</sub>PbI<sub>3</sub>and the control of grain sizes by varying the two-step reaction temperature from −10 °C to 50 °C based on the present analysis.

Electrical and Electronic EngineeringEngineering
15
Review|105 citations·2023
Colloidal Semiconductor Nanocrystal Lasers and Laser Diodes
Namyoung Ahn, Clément Livache, Valerio Pinchetti, Victor I. Klimov
SJR Q1Chemical ReviewsOA

Lasers and optical amplifiers based on solution-processable materials have been long-desired devices for their compatibility with virtually any substrate, scalability, and ease of integration with on-chip photonics and electronics. These devices have been pursued across a wide range of materials including polymers, small molecules, perovskites, and chemically prepared colloidal semiconductor nanocrystals, also commonly referred to as colloidal quantum dots. The latter materials are especially at

Materials ChemistryMaterials Science

Research Areas

Electrical and Electronic EngineeringMaterials ChemistryOrganic ChemistryBiomedical EngineeringPolymers and PlasticsMolecular Biology

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