No. 51~60 (2026~ )
52) Je, S. E.†;Lee, S.†; Kim, S.†; Jeong, S.†; Im, H. S.; Lee, K.-M.; Lee, S.; Park, Y.; Shin, S.-J.*; Zhang, W.*; Han, D.*; Lim, S. Y.* “Surface-strained NiMo cathodes enable kinetics-decoupled hydrogen bubble management for stable near-neutral water electrolysis” under revision.
51) Yu, H. S.; Han, D.* “Electrode size-dependent reaction-diffusion fields revealed by in-situ electrochemical-fluorescence lifetime imaging” Electrochim. Acta 2026, 570, 148941.
No. 41~50 (2024~2026)
50) Yu, H. S.; Han, D.* “Resolving nanoparticle collision reactivity via simultaneous current and fluorescence detection” Electrochem. Commun. 2026, 184, 108125.
49) Oh, S.†; Kim, T.†; Jang, J.; Yoon, S. J.*; Han, D.* “In-situ spectroscopic insights into electrochemical degradation and surface passivation of CsPbBr3 perovskite layers” Spectrochim.Acta A Mol. Biomol. Spectrosc. 2026, 349, 127372.
48) Kim, N.†; Kim, E. J.†; Kang, C. M.; Han, D.* “Electrocatalytic Activity of an Os(II/III) Complex as an Electron-Transfer Mediator inp-Aminophenol Oxidation” J. Korean Electrochem. Soc. 2025, 28, 185-191.
47) Kim, J.; Han, D.* “Electrolyte-dependent nitrogen bubble dynamics in hydrazine oxidation at Pt ultramicroelectrodes” Electrochem. Commun. 2025, 181, 108074.
46) Oh, S.†; Kim, E. J.†; Kang, C. M.; Han, D.* “In-situ spectroelectrochemical insights into the EC’ mechanism: NADH oxidation catalyzed by an osmium complex” Sens. Actuator Rep. 2025, 10, 100392.
45) Kim, J.†; Yoon, S. J.†; Han, D.* “In-situ electrochemical-surface enhanced Raman scattering imaging for observing pH effects on the reduction of 4-Nitrobenzenethiol” Electrochem. Commun. 2025, 175, 107913.
44) Kim, B.; Vallejos-Díaz, B.; Gualdrón-Reyes, A. F.*; Yoon, S. J.*; Han, D.* “In-situ spectroelectrochemical analysis for understanding photophysical properties of halide perovskite nanocrystals” Curr. Opin. Electrochem. 2025, 51, 101676.
43) Oh, S.†; Bae, J. H.†; Han, D.* “Electrografting of Dendrimer-Modified Ferrocene with Indium Tin Oxide for Electrocatalytic Reaction ofp-aminophenol” J. Korean Electrochem. Soc. 2024, 27, 177-184.
42) Han, S.†; Bang, Y.†; Yun, J.; Baek, S.; Kim, S.; Choi, J.; Lim, S. Y.*; Han, D.*; Kwon, S.-R.* “pH and potential-controlled multi-modal mass transport in block copolymer nanochannel membranes” J. Electroanal. Chem. 2024, 971, 118564.
41) Lim, H. C.†; Cho, Y.†; Han, D.*; Kim, T. H.* “Enhancing electrocatalytic performance and Stability: A novel Prussian Blue-Graphene quantum dot nanoarchitecture for H2O2 reduction” Appl. Surf. Sci. 2024, 646, 158920.
No. 31~40 (2022~2024)
40) Shin, Y.†; Kim, H.†; Bae, J. H.†; Lee, C.; Kim, T.; Han, D.*; Yoon, S. J.* “Operando spectroscopic characterization of formamidinium lead iodide perovskite quantum dots for tracking electrochemical reactions” Spectrochim. Acta A Mol. Biomol. Spectrosc. 2024, 308, 123779.
39) Jeon, H.†; Jo, H.†; Seo, S.; Lee, S. J.; Yoon, S. J.*; Han, D.* “In-situ spectroelectrochemical analysis: Irreversible deformation of cesium lead bromide Perovskite Quantum Dots in SiOx matrices” Sens. Actuator Rep. 2024, 8, 100208.
38) Bae, J. H.; Jeon, H.; Yang, H. J.; Kang, C. M.; Han, D.* “Electrochemical Sensing Platform Integrated with Solid-state Reference Electrode Based on Indium Tin Oxide Interdigitated Array Electrodes” Electroanalysis 2023, 35, e202200346.
37) Lee, H.; Kim, K.; Kang, C. M.; Choo, A.; Han, D.*; Kim, J.* “In-Situ Confocal Fluorescence Lifetime Imaging of Nanopore Electrode Arrays with Redox Active Fluorogenic Amplex Red” Anal. Chem. 2023, 95, 1038-1046.
36) Yang, H. J.†; Han, D.†; Kim, J.; Kim, Y. H.*; Bae, J. H.* “Constant phase element affected by ion transport in nanoporous electrodes” J. Electroanal. Chem. 2022, 922, 116766.
35) Kim, J.†; Shin, J.†; Yang, H. J.; Kang, C. M.; Han, D.*; Bae, J. H.* “Effects of Ionic Size and Hydrophobicity on Charging Dynamics at Microporous Pt” J. Electrochem. Soc. 2022, 169, 096509.
34) Baek, S.; Cutri, A. R.; Han, D.; Kwon, S.-R.; Reitemeier, J.; Sundaresan, V.; Bohn, P. W.* “Multifunctional nanopore electrode array method for characterizing and manipulating single entities in attoliter-volume enclosures” J. Appl. Phys. 2022, 132, 174501.
33) Lee, S. J.; Lee, Y. J.; Seo, S.; Jo, H.; Han, D.*; Yoon, S. J.* “Effect of the surroundings on the photophysical properties of CsPbBr₃ perovskite quantum dots embedded in SiOx matrices” Bull. Korean Chem. Soc. 2022, 43, 1312-1319.
32) Woo, Y.†; Shin, Y.†; Lee, J. H.; Kim, G. T.; Byeon, J. W.; Jeong, D. I.; Choo, J.; Han, D.; Yoon, S. J.* “Influence of applied bias for A-site and X-site ion exchange reaction dynamics in perovskite quantum dots” J. Lumin. 2022, 245, 118776.
31) Baek, S.; Han, D.; Kwon, S.-R.; Sundaresan, V.; Bohn, P. W.* “Electrochemical Zero-Mode Waveguide Potential-Dependent Fluorescence of Glutathione Reductase at Single-Molecule Occupancy” Anal. Chem. 2022, 94, 3970-3977.
No. 21~30 (2019~2022)
30) Lee, S. J.; Lee, Y. J.; Jeon, H.; Han, D.; Im, H.; Shrestha, N. K.; Yoon, S. J.* “Insulating CsPbBr3 Quantum Dots via Encapsulation with SiOx: Interfacial Electron Trafficking and Interaction beyond the Insulating Boundary” J. Phys. Chem. C 2022, 126, 7910-7921.
29) Kim, K.†; Shin, Y.†; Lee, C.; Jeon, H.; Yoon, S. J.*; Han, D.* “Role of electrochemical reactions in the degradation of formamidinium lead halide hybrid perovskite quantum dots” Analyst 2022, 147, 841-850.
28) Kwon, S.; Lee, H. E.; Han, D.; Lee, J. H.* “Low-temperature fabrication of crystalline MnCoO spinel film on porous carbon paper for efficient oxygen evolution reaction” Chem. Commun. 2021, 57, 3595-3598.
27) Bang, J. J.†; Han, D.†; Chung, T. D.*; Bae, J. H.* “Selective Enhancement of Electrochemical Signal Based on the Size of Alcohols Using Nanoporous Platinum” ChemElectroChem 2021, 8, 2407-2412.
26) Kim, K.†; Bae, J. H.†; Han, D.* “Oligonucleotide-based Reusable Electrochemical Silver(I) Sensor and Its Optimization via Probe Packing Density” ACS Omega 2021, 6, 10801-10806.
25) Bae, J. H.†; Kim, K.†; Han, D.*; Chung, T. D.* “Ultra Compact Nanoporous Platinum Coating Improves Neural Recording” Electroanalysis 2021, 33, 839-844.
24) Lee, C.†; Kim, K.†; Shin, Y.; Han, D.*; Yoon, S. J.* “In-Situ Spectroelectrochemical Investigation of Perovskite Quantum Dots for Tracking Their Transformation” Front. Energy Res. 2021, 8, 605976.
23) Fu, K.; Kwon, S.-R.; Han, D.; Bohn, P. W.* “Single Entity Electrochemistry in Nanopore Electrode Arrays: Ion Transport Meets Electron Transfer in Confined Geometries” Acc. Chem. Res. 2020, 53, 719-728.
22) Bong, S.; Han, D.* “Mesopore-controllable Carbon Aerogel and their Highly Loaded PtRu Anode Electrocatalyst for DMFC Applications” Electroanalysis 2020, 32, 104-111.
21) Bong, S.†; Jang, B.†; Han, D.*; Piao, Y.* “Effective Electrochemical Activation of Oleate-Residue-Fouled Pt Nanoparticle Catalysts for Methanol and Formic Acid Oxidation” ACS Omega 2019, 4, 20330-20334.
No. 11~20 (2017~2019)
20) Han, D.; Crouch, G. M.; Chao, Z.; Fullerton-Shirey, S. K.; Go, D. B.; Bohn, P. W.* “Nanopore-Templated Silver Nanoparticle Arrays Photopolymerized in Zero-Mode Waveguides” Front. Chem. 2019, 7, 216.
19) Bong, S.; Han, D.* “Supercritical, Freezing and Thermal Drying Process of Resorcinol-Formaldehyde Polymer based Nano-carbons and their Highly Loaded PtRu Anode Electrocatalyst for DMFC” Electroanalysis 2019, 31, 1311-1315.
18) Kim, J.-Y.†; Han, D.†; Crouch, G. M.; Kwon, S.-R.; Bohn, P. W.* “Capture of Single Silver Nanoparticles in Nanopore Arrays Detected by Simultaneous Amperometry and Surface-Enhanced Raman Scattering” Anal. Chem. 2019, 91, 4568-4576.
17) Kwon, S.-R.†; Fu, K.†; Han, D.; Bohn, P. W.* “Redox Cycling in Individually Encapsulated Attoliter-Volume Nanopores” ACS Nano 2018, 12, 12923-12931.
16) Fu, K.; Han, D.; Kwon, S.-R.; Bohn, P. W.* “Asymmetric Nafion-Coated Nanopore Electrode Arrays as Redox-Cycling-Based Electrochemical Diodes” ACS Nano 2018, 12, 9177-9185.
15) Chao, Z.; Radka, B. P.; Xu, K.; Crouch, G. M.; Han, D.; Go, D. B.; Bohn, P. W.; Fullerton-Shirey, S. K.* “Direct-Write Formation and Dissolution of Silver Nanofilaments in Ionic Liquid-Polymer Electrolyte Composites” Small 2018, 14, 1802023.
14) Fu, K.†; Han, D.†; Crouch, G. M.; Kwon, S.-R.; Bohn, P. W.* “Voltage-Gated Nanoparticle Transport and Collisions in Attoliter-Volume Nanopore Electrode Arrays” Small 2018, 14, 1703248.
13) Crouch, G. M.†; Han, D.†; Bohn, P. W.* “Zero-mode waveguides nanophotonic structures for single molecule characterization” J. Phys. D: Appl. Phys. 2018, 51, 193001.
12) Han, D.†; Crouch, G. M.†; Fu, K.; Zaino, L. P.; Bohn, P. W.* “Single-molecule spectroelectrochemical cross-correlation during redox cycling in recessed dual ring electrode zero-mode waveguides” Chem. Sci. 2017, 8, 5345-5355.
11) Fu, K.; Han, D.; Ma, C.; Bohn, P. W.* “Ion selective redox cycling in zero-dimensional nanopore electrode arrays at low ionic strength” Nanoscale 2017, 9, 5164-5171.
No. 1~10 (2009~2017)
10) Crouch, G. M.†; Han, D.†; Fullerton-Shirey, S. K.; Go, D. B.*; Bohn, P. W.* “Addressable Direct-Write Nanoscale Filament Formation and Dissolution by Nanoparticle-Mediated Bipolar Electrochemistry” ACS Nano 2017, 11, 4976-4984.
9) Han, D.; Zaino, L. P.; Fu, K.; Bohn, P. W.* “Redox Cycling in Nanopore-Confined Recessed Dual-Ring Electrode Arrays” J. Phys. Chem. C 2016, 120, 20634-20641.
8) Fu, K.; Han, D.; Ma, C.; Bohn, P. W.* “Electrochemistry at single molecule occupancy in nanopore-confined recessed ring-disk electrode arrays” Faraday Discuss. 2016, 193, 51-64.
7) Wichert, W. R. A.; Han, D.; Bohn, P. W.* “Effects of molecular confinement and crowding on horseradish peroxidase kinetics using a nanofluidic gradient mixer”Lab Chip 2016, 16, 877-883.
6) Zaino, L. P.†; Grismer, D. A.†; Han, D.; Crouch, G. M.; Bohn, P. W.* “Single occupancy spectroelectrochemistry of freely diffusing flavin mononucleotide in zero-dimensional nanophotonic structures” Faraday Discuss. 2015, 184, 101-115.
5) Han, D.; Kim, Y.-R.; Kang, C. M.; Chung, T. D.* “Electrochemical Signal Amplification for Immunosensor Based on 3D Interdigitated Array Electrodes” Anal. Chem. 2014, 86, 5991-5998.
4) Han, D.; Kim. K. B.; Kim, Y.-R.; Kim, S.; Kim, H. C.; Lee, J.; Kim, J.*; Chung, T. D.* “Electrokinetic concentration on a microfluidic chip using polyelectrolytic gel plugs for small molecule immunoassay” Electrochim. Acta 2013, 110, 164-171.
3) Kim, S.†; Piao, L.†; Han, D.; Kim, B. J.; Chung, T. D.* “Surface Enhanced Raman Scattering on Non-SERS Active Substrates and In Situ Electrochemical Study based on a Single Gold Microshell” Adv. Mater. 2013, 25, 2056-2061.
2) Han, D.; Lim, S. Y.; Kim, B. J.; Piao, L.; Chung, T. D.* “Mercury(II) detection by SERS based on a single gold microshell” Chem. Commun. 2010, 46, 5587-5589.
1) Han, D.; Kim, Y.-R.; Oh, J.-W.; Kim, T. H.; Mahajam, R. K.; Kim, J. S.*; Kim, H.* “A regenerative electrochemical sensor based on oligonucleotide for the selective determination of mercury(II)” Analyst 2009, 134, 1857-1862.