Skip to main content

Jooho Moon

Yonsei University · Engineering

About the Lab

Professor Jooho Moon's research lab specializes in the design, synthesis, and application of advanced nanomaterials for sustainable energy and optoelectronic technologies. Key research directions include the development of high-performance conductive inks and transparent electrodes for flexible and efficient solar cells, the engineering of nanostructured materials for efficient solar hydrogen production via photoelectrochemical water splitting, and the fabrication of functional thin films through ink-jet printing and self-assembly techniques. The lab emphasizes materials innovation with a strong focus on surface chemistry control, fluid dynamics in droplet-based processing, and the integration of nanomaterials into practical devices.

nanomaterialsphotoelectrochemistryconductive inkstransparent electrodesink-jet printing

Research Overview

Papers
425
Total Citations
23,554
Papers (5y)
70
Primary Field
Engineering

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
70total
2021
2022
2023
2024
2025
Citations per year (5y)
2,347total
20212022202320242025

Selected Papers

15
1
Review|768 citations·2019
Strategies for enhancing the photocurrent, photovoltage, and stability of photoelectrodes for photoelectrochemical water splitting
Wooseok Yang, Rajiv Ramanujam Prabhakar, Jeiwan Tan, S. David Tilley, Jooho Moon
SJR Q1Chemical Society Reviews

To accelerate the deployment of hydrogen produced by renewable solar energy, several technologies have been competitively developed, including photoelectrochemical (PEC), photocatalytic, and photovoltaic-electrolysis routes. In this review, we place PEC in context with these competing technologies and highlight key advantages of PEC systems. After defining the unique performance metrics of the PEC water splitting system, recently developed strategies for enhancing each performance metric, such a

Renewable Energy, Sustainability and the EnvironmentEnergy
2
Article|755 citations·2006
Control of Colloidal Particle Deposit Patterns within Picoliter Droplets Ejected by Ink-Jet Printing
Jung‐Ho Park, Jooho Moon
SJR Q1Langmuir

Particle deposit morphologies that resulted from evaporating ink-jetted microdroplets were controlled by varying the ink compositions and concentrations. The ink was a well-dispersed aqueous dispersion of monodisperse silica microspheres. Silica particles suspended in the microdroplet undergo self-assembly upon the evaporation of the solvent. A ringlike deposit of the self-assembled silica particles was produced from the water-based ink, while a uniform two-dimensional monolayer with a well-orde

Electrical and Electronic EngineeringEngineering
3
Article|718 citations·2009
Influence of Fluid Physical Properties on Ink-Jet Printability
Dae-Hwan Jang, Dongjo Kim, Jooho Moon
SJR Q1Langmuir

Ink-jet printing is a method for directly patterning and fabricating patterns without the need for masks. To achieve this, the fluids used as inks must have the capability of being stably and accurately printed by ink-jetting. We have investigated the inter-relationship between ink-jet printability and physical fluid properties by monitoring droplet formation dynamics. The printability of the fluids was determined using the inverse (Z) of the Ohnesorge number (Oh) which relates to the viscosity,

Electrical and Electronic EngineeringEngineering
4
Article|598 citations·2007
Synthesis and size control of monodisperse copper nanoparticles by polyol method
Bong Kyun Park, Sunho Jeong, Dongjo Kim, Jooho Moon, Soonkwon Lim, Jang Sub Kim
SJR Q1Journal of Colloid and Interface Science
Materials ChemistryMaterials Science
5
Article|546 citations·2007
Direct writing of copper conductive patterns by ink-jet printing
Bong Kyun Park, Dongjo Kim, Sunho Jeong, Jooho Moon, Jang Sub Kim
SJR Q2Thin Solid Films
Electrical and Electronic EngineeringEngineering
6
Article|523 citations·2008
Controlling the Thickness of the Surface Oxide Layer on Cu Nanoparticles for the Fabrication of Conductive Structures by Ink‐Jet Printing
Sunho Jeong, Kyoohee Woo, Dongjo Kim, Soonkwon Lim, Jang Sub Kim, Hyunjung Shin, Younan Xia, Jooho Moon
SJR Q1Advanced Functional Materials

Abstract With the aim of preparing a high performance conductive ink, we sought to control the surface chemistry of Cu nanoparticles so as to minimize surface oxidation. Specifically, the surface oxide layer on Cu nanoparticles synthesized in ambient atmosphere was minimized by adjusting the molecular weight of poly( N ‐vinylpyrrolidone) capping molecules, as confirmed by high resolution transmission electron microscopy and X‐ray photoelectron spectroscopy analyses. In addition, we demonstrate t

Electrical and Electronic EngineeringEngineering
7
Article|485 citations·2013
Highly Transparent Low Resistance ZnO/Ag Nanowire/ZnO Composite Electrode for Thin Film Solar Cells
Areum Kim, Yulim Won, Kyoohee Woo, Chul-Hong Kim, Jooho Moon
SJR Q1ACS Nano

We present an indium-free transparent conducting composite electrode composed of silver nanowires (AgNWs) and ZnO bilayers. The AgNWs form a random percolating network embedded between the ZnO layers. The unique structural features of our ZnO/AgNW/ZnO multilayered composite allow for a novel transparent conducting electrode with unprecedented excellent thermal stability (∼375 °C), adhesiveness, and flexibility as well as high electrical conductivity (∼8.0 Ω/sq) and good optical transparency (>91

Materials ChemistryMaterials Science
8
Article|473 citations·2017
A new class of chiral semiconductors: chiral-organic-molecule-incorporating organic–inorganic hybrid perovskites
Jihoon Ahn, Eun‐Song Lee, Jeiwan Tan, Wooseok Yang, Bokyung Kim, Jooho Moon
SJR Q1Materials Horizons

Chiral organic–inorganic hybrid perovskites exhibiting circular dichroism were prepared as a new class of chiral semiconductors.

Electrical and Electronic EngineeringEngineering
9
Article|384 citations·2018
Homologous CoP/NiCoP Heterostructure on N‐Doped Carbon for Highly Efficient and pH‐Universal Hydrogen Evolution Electrocatalysis
Ramireddy Boppella, Jeiwan Tan, Wooseok Yang, Jooho Moon
SJR Q1Advanced Functional Materials

Abstract Hydrogen evolution electrocatalysts can achieve sustainable hydrogen production via electrocatalytic water splitting; however, designing highly active and stable noble‐metal‐free hydrogen evolution electrocatalysts that perform as efficiently as Pt catalysts over a wide pH range is a challenging task. Herein, a new 2D cobalt phosphide/nickelcobalt phosphide (CoP/NiCoP) hybrid nanosheet network is proposed, supported on an N‐doped carbon (NC) matrix as a highly efficient and durable pH‐u

Renewable Energy, Sustainability and the EnvironmentEnergy
10
Article|257 citations·2020
Chiral 2D Organic Inorganic Hybrid Perovskite with Circular Dichroism Tunable Over Wide Wavelength Range
Jihoon Ahn, Sunihl Ma, Ji‐Young Kim, Jihoon Kyhm, Wooseok Yang, Jung Ah Lim, Nicholas A. Kotov, Jooho Moon
SJR Q1Journal of the American Chemical Society

The effect of chemical-composition modification on the chiroptical property of chiral organic ammonium cation-containing organic inorganic hybrid perovskite (chiral OIHP) is investigated. Varying the mixing ratio of bromide and iodide anions in <i>S</i>- or <i>R</i>-C<sub>6</sub>H<sub>5</sub>CH<sub>2</sub>(CH<sub>3</sub>)NH<sub>3</sub>)<sub>2</sub>PbI<sub>4(1-<i>x</i>)</sub>Br<sub>4<i>x</i></sub> modifies the band gap of chiral OIHP, leading to a shift of the circular dichroism (CD) signal from

Electrical and Electronic EngineeringEngineering
11
Review|248 citations·2021
Chiral Perovskites for Next‐Generation Photonics: From Chirality Transfer to Chiroptical Activity
Sunihl Ma, Jihoon Ahn, Jooho Moon
SJR Q1Advanced Materials

Organic-inorganic hybrid halide perovskites (OIHPs) are commonly used as prototypical materials for various applications, including photovoltaics, photodetectors, and light-emitting devices. Since the chiroptical properties of OIHPs are deciphered in 2017, chiral OIHPs have been rediscovered as new hybrid systems comprising chiral organic molecules and achiral inorganic octahedral layers. Owing to their exceptional optoelectrical properties and structural flexibility, chiral OIHPs have received

Electrical and Electronic EngineeringEngineering
12
Article|248 citations·2020
Benchmark performance of low-cost Sb2Se3 photocathodes for unassisted solar overall water splitting
Wooseok Yang, Jin Hyun Kim, Oliver S. Hutter, Laurie J. Phillips, Jeiwan Tan, Jaemin Park, Hyungsoo Lee, Jonathan D. Major, Jae Sung Lee, Jooho Moon
SJR Q1Nature CommunicationsOA

Abstract Determining cost-effective semiconductors exhibiting desirable properties for commercial photoelectrochemical water splitting remains a challenge. Herein, we report a Sb 2 Se 3 semiconductor that satisfies most requirements for an ideal high-performance photoelectrode, including a small band gap and favourable cost, optoelectronic properties, processability, and photocorrosion stability. Strong anisotropy, a major issue for Sb 2 Se 3 , is resolved by suppressing growth kinetics via clos

Renewable Energy, Sustainability and the EnvironmentEnergy
13
Article|235 citations·2011
A non-toxic, solution-processed, earth abundant absorbing layer for thin-film solar cells
Kyoohee Woo, Youngwoo Kim, Jooho Moon
SJR Q1Energy & Environmental Science

Copper zinc tin sulfide (Cu2ZnSnS4, CZTS) has attracted significant attention in the past few years as a next generation absorber material for the production of thin film solar cells on large scales due to the high natural abundance of all constituents, tunable direct band gap energy ranging from 1.0 to 1.5 eV, and large absorption coefficient. In addition, to address the issue of expensive vacuum-based processes, non-vacuum solution-based approaches are being developed for CZTS absorber layer d

Electrical and Electronic EngineeringEngineering
14
Article|213 citations·2011
Low-temperature, solution-processed metal oxide thin film transistors
Sunho Jeong, Jooho Moon
Journal of Materials Chemistry

High-performance, solution-processable semiconductors have drawn significant attention for use in low-cost, functional electronic applications. Metal oxide semiconductors are the most promising building blocks for high performance electronic devices because of their electrical properties and solution-processability. However, the major impediment for metal oxide semiconductors is that the electrical properties applicable to electronic devices are activated by chemical/physical structural evolutio

Electrical and Electronic EngineeringEngineering
15
Article|202 citations·2014
All‐Solution‐Processed Indium‐Free Transparent Composite Electrodes based on Ag Nanowire and Metal Oxide for Thin‐Film Solar Cells
Areum Kim, Yulim Won, Kyoohee Woo, Sunho Jeong, Jooho Moon
SJR Q1Advanced Functional Materials

Fully solution‐processed Al‐doped ZnO/silver nanowire (AgNW)/Al‐doped ZnO/ZnO multi‐stacked composite electrodes are introduced as a transparent, conductive window layer for thin‐film solar cells. Unlike conventional sol–gel synthetic pathways, a newly developed combustion reaction‐based sol–gel chemical approach allows dense and uniform composite electrodes at temperatures as low as 200 °C. The resulting composite layer exhibits high transmittance (93.4% at 550 nm) and low sheet resistance (11.

Electrical and Electronic EngineeringEngineering

Research Areas

Electrical and Electronic EngineeringMaterials ChemistryRenewable Energy, Sustainability and the EnvironmentBiomedical EngineeringElectronic, Optical and Magnetic MaterialsAtomic and Molecular Physics, and Optics

Dive deeper into Jooho Moon's research on Nubint

Open this lab's papers in the app to read with AI, summarize, and cite in your writing.