Hybrid Ketone‐Mediated Purification Enables Ligand Preservation for Efficient PbS Colloidal Quantum Dot Optoelectronics

Colloidal quantum dots (CQDs) are promising absorbers for infrared optoelectronics, and their performance and stability are influenced by surface ligand chemistry. Herein, we tailor the antisolvents via a Hansen solubility parameter (HSP) to induce sufficient precipitation while minimizing surface ligand loss during CQD purification process. By redefining the interaction radius ( R o ) as an effective purification boundary, we find that a hybrid ketone antisolvent combination, an acetone/MEK (AMK), is positioned near this boundary in HSP space. As a result, PbS–AMK preserves surface‐bound ligands more effectively than PbS–ethanol counterparts, maintaining CQD monodispersity and improving long‐term stability. Devices fabricated from PbS–AMK exhibit smaller photovoltaic degradation during CQD aging, with only a 7.81% reduction in power conversion efficiency compared to 25.9% for PbS–ethanol. In addition, the PbS–AMK devices achieve 3.4‐fold higher specific detectivity under SWIR photodetection operation.

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Publication Details

Journal
Small Structures
Published
2026-09-25
DOI
https://doi.org/10.1002/sstr.70613
Primary Topic
Quantum Dots Synthesis And Properties
Type
article
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Hybrid Ketone‐Mediated Purification Enables Ligand Preservation for Efficient PbS Colloidal Quantum Dot Optoelectronics

Se‐Woong Baek, Yujin Jung, Dong-Eon Kim, Junhyeon Kim
Small Structures
Quantum Dots Synthesis And Properties
article

Hybrid Ketone‐Mediated Purification Enables Ligand Preservation for Efficient PbS Colloidal Quantum Dot Optoelectronics

Se‐Woong Baek, Yujin Jung, Dong-Eon Kim, Junhyeon Kim
article en

Abstract

Colloidal quantum dots (CQDs) are promising absorbers for infrared optoelectronics, and their performance and stability are influenced by surface ligand chemistry. Herein, we tailor the antisolvents via a Hansen solubility parameter (HSP) to induce sufficient precipitation while minimizing surface ligand loss during CQD purification process. By redefining the interaction radius ( R o ) as an effective purification boundary, we find that a hybrid ketone antisolvent combination, an acetone/MEK (AMK), is positioned near this boundary in HSP space. As a result, PbS–AMK preserves surface‐bound ligands more effectively than PbS–ethanol counterparts, maintaining CQD monodispersity and improving long‐term stability. Devices fabricated from PbS–AMK exhibit smaller photovoltaic degradation during CQD aging, with only a 7.81% reduction in power conversion efficiency compared to 25.9% for PbS–ethanol. In addition, the PbS–AMK devices achieve 3.4‐fold higher specific detectivity under SWIR photodetection operation.

Small StructuresVol. 7(10)
Korea University (KR), Yeungnam University (KR)
Affordable and clean energy
Openalex Percentile: Top 26%
Quantum Dots Synthesis And Properties
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Hybrid Ketone‐Mediated Purification Enables Ligand Preservation for Efficient PbS Colloidal Quantum Dot Optoelectronics — Se‐Woong Baek, Yujin Jung, et al. · Small Structures (2026) | TGRS Research Map | TGRS