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Sungphil Ahn

Sungkyunkwan University · Engineering

About the Lab

Professor Sungphil Ahn's research lab specializes in the development of advanced functional nanomaterials and flexible electronic systems for sustainable energy and wearable technology applications. The lab focuses on innovative fabrication techniques such as electrospinning, cold spraying, and coaxial fiber engineering to create high-performance, stretchable, and self-healing materials. Key research directions include transparent conductive films, piezoelectric nanogenerators, and wearable sensors with enhanced durability and functionality for real-time data acquisition in healthcare and human-machine interfaces. The lab emphasizes scalability, sustainability, and practical integration of nanomaterials into everyday devices.

nanofibersflexible electronicsenergy harvestingwearable sensorsnanomaterials

Research Overview

Papers
175
Total Citations
5,663
Papers (5y)
65
Primary Field
Engineering

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
65total
2022
2023
2024
2025
2026
Citations per year (5y)
704total
20222023202420252026

Selected Papers

15
1
Review|279 citations·2018
A review on corrosion-protective extrinsic self-healing: Comparison of microcapsule-based systems and those based on core-shell vascular networks
Seongpil An, Min Wook Lee, Alexander L. Yarin, Sam S. Yoon
SJR Q1Chemical Engineering Journal
Polymers and PlasticsMaterials Science
2
Article|160 citations·2016
Self‐Junctioned Copper Nanofiber Transparent Flexible Conducting Film via Electrospinning and Electroplating
Seongpil An, Hong Seok Jo, Do‐Yeon Kim, Hyun Jun Lee, Byeong‐Kwon Ju, Salem S. Al‐Deyab, Jong‐Hyun Ahn, Yueling Qin, Mark T. Swihart, Alexander L. Yarin, Sam S. Yoon
SJR Q1Advanced Materials

Self-junctioned copper nanofiber transparent flexible films are produced using electrospinning and electroplating processes that provide high performances of T = 97% and Rs = 0.42 Ω sq(-1) by eliminating junction resistance at wire intersections. The film remains conductive after being stretched by up to 770% (films with T = 76%) and after 1000 cycles of bending to a 5 mm radius.

Biomedical EngineeringEngineering
3
Review|116 citations·2019
Supersonic Cold Spraying for Energy and Environmental Applications: One‐Step Scalable Coating Technology for Advanced Micro‐ and Nanotextured Materials
Seongpil An, Bhavana Joshi, Alexander L. Yarin, Mark T. Swihart, Sam S. Yoon
SJR Q1Advanced MaterialsOA

Supersonic cold spraying is an emerging technique for rapid deposition of films of materials including micrometer-size and sub-micrometer metal particles, nanoscale ceramic particles, clays, polymers, hybrid materials composed of polymers and particulates, reduced graphene oxide (rGO), and metal-organic frameworks. In this method, particles are accelerated to a high velocity and then impact a substrate at near ambient temperature, where dissipation of their kinetic energy produces strong adhesio

Aerospace EngineeringEngineering
4
Article|113 citations·2014
Electrospun graphene-ZnO nanofiber mats for photocatalysis applications
Seongpil An, Bhavana Joshi, Min Wook Lee, Na Young Kim, Sam S. Yoon
SJR Q1Applied Surface Science
BiomaterialsMaterials Science
5
Article|105 citations·2021
Supersonically Sprayed Washable, Wearable, Stretchable, Hydrophobic, and Antibacterial rGO/AgNW Fabric for Multifunctional Sensors and Supercapacitors
Taegun Kim, Chan-Woo Park, Edmund Samuel, Seongpil An, Ali Aldalbahi, Faisal Alotaibi, Alexander L. Yarin, Sam S. Yoon
SJR Q1ACS Applied Materials & Interfaces

Wearable electronic textiles are used in sensors, energy-harvesting devices, healthcare monitoring, human-machine interfaces, and soft robotics to acquire real-time big data for machine learning and artificial intelligence. Wearability is essential while collecting data from a human, who should be able to wear the device with sufficient comfort. In this study, reduced graphene oxide (rGO) and silver nanowires (AgNWs) were supersonically sprayed onto a fabric to ensure good adhesiveness, resultin

Biomedical EngineeringEngineering
6
Article|104 citations·2015
Highly flexible transparent self-healing composite based on electrospun core–shell nanofibers produced by coaxial electrospinning for anti-corrosion and electrical insulation
Seongpil An, Minho Liou, Kyo Yong Song, Hong Seok Jo, Min Wook Lee, Salem S. Al‐Deyab, Alexander L. Yarin, Sam S. Yoon
SJR Q1Nanoscale

Coaxial electrospinning was used to fabricate two types of core-shell fibers: the first type with liquid resin monomer in the core and polyacrylonitrile in the shell, and the second type with liquid curing agent in the core and polyacrylonitrile in the shell. These two types of core-shell fibers were mutually entangled and embedded into two flexible transparent matrices thus forming transparent flexible self-healing composite materials. Such materials could be formed before only using emulsion e

BiomaterialsMaterials Science
7
Article|101 citations·2014
Effect of viscosity, electrical conductivity, and surface tension on direct-current-pulsed drop-on-demand electrohydrodynamic printing frequency
Seongpil An, Min Wook Lee, Na Young Kim, Changmin Lee, Salem S. Al‐Deyab, Scott James, Sam S. Yoon
SJR Q1Applied Physics Letters

Experiments were conducted to measure the performance of direct-current-pulsed electrohydrodynamic drop formation as a function of liquid viscosity, electrical conductivity, and surface tension. While hydrodynamic and charge relaxation times and Taylor cone formation frequencies suggest theoretical drop-generation frequencies well in excess of 100 Hz, we show that it is impossible to produce more than 50 drops per second with performance decreasing as viscosity increased or electrical conductivi

Electrical and Electronic EngineeringEngineering
8
Article|96 citations·2021
Supersonically sprayed transparent flexible multifunctional composites for self-cleaning, anti-icing, anti-fogging, and anti-bacterial applications
Chan-Woo Park, Taegun Kim, Yong Il Kim, Min Wook Lee, Seongpil An, Sam S. Yoon
SJR Q1Composites Part B Engineering
Surfaces, Coatings and FilmsMaterials Science
9
Article|80 citations·2020
Sustainable Nanotextured Wave Energy Harvester Based on Ferroelectric Fatigue‐Free and Flexoelectricity‐Enhanced Piezoelectric P(VDF‐TrFE) Nanofibers with BaSrTiO3 Nanoparticles
Seongpil An, Hong Seok Jo, Gen Li, Edmund Samuel, Sam S. Yoon, Alexander L. Yarin
SJR Q1Advanced Functional Materials

Abstract Here, ultrathin, flexible, and sustainable nanofiber‐based piezoelectric nanogenerators (NF‐PENGs) are fabricated and applied as wave energy harvesters. The NF‐PENGs are composed of poly(vinylidene fluoride‐ co ‐trifluoroethylene) (P(VDF‐TrFE)) nanofibers with embedded barium strontium titanate (BaSrTiO 3 ) nanoparticles, which are fabricated by using facile, scalable, and cost‐effective fiber‐forming methods, including electrospinning and solution blowing. The inclusion of ferroelectri

Biomedical EngineeringEngineering
10
Article|70 citations·2016
Supersonically sprayed reduced graphene oxide film to enhance critical heat flux in pool boiling
Seongpil An, Do-Yeon Kim, Jong-Gun Lee, Hong Seok Jo, Min-Woo Kim, Salem S. Al‐Deyab, Jeehoon Choi, Sam S. Yoon
SJR Q1International Journal of Heat and Mass Transfer
Mechanical EngineeringEngineering
11
Article|70 citations·2018
Natural Biopolymer-Based Triboelectric Nanogenerators via Fast, Facile, Scalable Solution Blowing
Seongpil An, A. N. Sankaran, Alexander L. Yarin
SJR Q1ACS Applied Materials & Interfaces

Here, we fabricated nanofiber (NF)-based triboelectric nanogenerators (TENGs) from natural biopolymers using the industrially scalable solution blowing. This technique eliminates severe restrictions on solutions to be used and allows one to achieve biocompatible devices. Here, solutions of soy protein and lignin were blown into continuous monolithic NFs of hundreds of nanometers in diameter. The technique we employed yields large-area NF mats within tens of minutes and has never been employed to

Biomedical EngineeringEngineering
12
Review|62 citations·2022
Recent advances in pain management based on nanoparticle technologies
Soraya Babaie, Arezou Taghvimi, Joo-Hyun Hong, Hamed Hamishehkar, Seongpil An, Ki Hyun Kim
SJR Q1Journal of NanobiotechnologyOA

BACKGROUND: Pain is a vital sense that indicates the risk of injury at a particular body part. Successful control of pain is the principal aspect in medical treatment. In recent years, the advances of nanotechnology in pain management have been remarkable. In this review, we focus on literature and published data that reveal various applications of nanotechnology in acute and chronic pain management. METHODS: The presented content is based on information collected through pain management publica

Biomedical EngineeringEngineering
13
Review|61 citations·2017
A comprehensive review on wettability, desalination, and purification using graphene-based materials at water interfaces
Seongpil An, Bhavana Joshi, Jong-Gun Lee, Min Wook Lee, Yong Il Kim, Min-woo Kim, Hong Seok Jo, Sam S. Yoon
SJR Q1Catalysis Today
Materials ChemistryMaterials Science
14
Article|55 citations·2022
Biocompatible and mechanically-reinforced tribopositive nanofiber mat for wearable and antifungal human kinetic-energy harvester based on wood-derived natural product
Dogun Park, Joo-Hyun Hong, Daekyu Choi, Donghyeun Kim, Won Hee Jung, Sam S. Yoon, Ki Hyun Kim, Seongpil An, Seongpil An
SJR Q1Nano Energy
Biomedical EngineeringEngineering
15
Article|53 citations·2020
Transparent Body-Attachable Multifunctional Pressure, Thermal, and Proximity Sensor and Heater
Hong Seok Jo, Seongpil An, Hyuk-Jin Kwon, Alexander L. Yarin, Sam S. Yoon
SJR Q1Scientific ReportsOA

Abstract A multifunctional sensor capable of simultaneous sensing of temperature, pressure, and proximity has been developed. This transparent and body-attachable device is also capable of providing heat under low voltage. The multi-sensor consists of metal fibers fabricated by electrospinning and electroplating. The device comprises randomly deposited metal fibers, which not only provide heating but also perform as thermal and proximity sensors, and orderly aligned metal fibers that act as a pr

Biomedical EngineeringEngineering

Research Areas

Biomedical EngineeringPolymers and PlasticsElectrical and Electronic EngineeringBiomaterialsMechanical EngineeringGeneral Dentistry

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