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Franklin Bien

Ulsan National Institute of Science and Technology · Engineering

About the Lab

Professor Franklin Bien's research lab specializes in the development of advanced, flexible, and transparent electronic systems for next-generation biomedical and wearable sensing applications. The lab focuses on integrating novel nanomaterials—particularly silver nanowires and graphene hybrids—into stretchable, optically transparent, and wireless-capable sensors for real-time health monitoring. Key research directions include implantable and subcutaneous glucose sensors, multifunctional capacitive sensors for tactile and environmental sensing, and smart contact lenses with noninvasive physiological monitoring capabilities. The lab emphasizes materials innovation, device miniaturization, and system integration for practical, patient-friendly medical technologies.

wearable sensorstransparent electronicsnanomaterialsimplantable sensorsbiomedical sensing

Research Overview

Papers
160
Total Citations
4,307
Papers (5y)
23
Primary Field
Engineering

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
23total
2022
2023
2024
2025
2026
Citations per year (5y)
222total
20222023202420252026

Selected Papers

15
1
Article|653 citations·2018
Soft, smart contact lenses with integrations of wireless circuits, glucose sensors, and displays
Jihun Park, Joohee Kim, So-Yun Kim, Woon Hyung Cheong, Jiuk Jang, Young‐Geun Park, Kyungmin Na, Yun‐Tae Kim, Jun Hyuk Heo, Chang Young Lee, Jung Heon Lee, Franklin Bien
SJR Q1Science AdvancesOA

Recent advances in wearable electronics combined with wireless communications are essential to the realization of medical applications through health monitoring technologies. For example, a smart contact lens, which is capable of monitoring the physiological information of the eye and tear fluid, could provide real-time, noninvasive medical diagnostics. However, previous reports concerning the smart contact lens have indicated that opaque and brittle components have been used to enable the opera

Biomedical EngineeringEngineering
2
Article|423 citations·2018
Transparent and flexible fingerprint sensor array with multiplexed detection of tactile pressure and skin temperature
Byeong Wan An, Sanghyun Heo, Sangyoon Ji, Franklin Bien, Jang‐Ung Park
SJR Q1Nature CommunicationsOA

We developed a transparent and flexible, capacitive fingerprint sensor array with multiplexed, simultaneous detection of tactile pressure and finger skin temperature for mobile smart devices. In our approach, networks of hybrid nanostructures using ultra-long metal nanofibers and finer nanowires were formed as transparent, flexible electrodes of a multifunctional sensor array. These sensors exhibited excellent optoelectronic properties and outstanding reliability against mechanical bending. This

Biomedical EngineeringEngineering
3
Article|186 citations·2016
Wearable, wireless gas sensors using highly stretchable and transparent structures of nanowires and graphene
Jihun Park, Jihun Park, Joohee Kim, Kukjoo Kim, So-Yun Kim, Woon Hyung Cheong, Kyeongmin Park, Joo Hyeb Song, Gyeongho Namgoong, Jae Joon Kim, Jaeyeong Heo, Franklin Bien
SJR Q1Nanoscale

Herein, we report the fabrication of a highly stretchable, transparent gas sensor based on silver nanowire-graphene hybrid nanostructures. Due to its superb mechanical and optical characteristics, the fabricated sensor demonstrates outstanding and stable performances even under extreme mechanical deformation (stable until 20% of strain). The integration of a Bluetooth system or an inductive antenna enables the wireless operation of the sensor. In addition, the mechanical robustness of the materi

Biomedical EngineeringEngineering
4
Article|53 citations·2017
Stretchable Dual-Capacitor Multi-Sensor for Touch-Curvature-Pressure-Strain Sensing
Hanbyul Jin, Sungchul Jung, Hak Jun Kim, Sanghyun Heo, Jaeik Lim, Won‐Sang Park, Hye Yong Chu, Franklin Bien, Kibog Park
SJR Q1Scientific ReportsOA

We introduce a new type of multi-functional capacitive sensor that can sense several different external stimuli. It is fabricated only with polydimethylsiloxane (PDMS) films and silver nanowire electrodes by using selective oxygen plasma treatment method without photolithography and etching processes. Differently from the conventional single-capacitor multi-functional sensors, our new multi-functional sensor is composed of two vertically-stacked capacitors (dual-capacitor). The unique dual-capac

Biomedical EngineeringEngineering
5
Article|52 citations·2022
Subcutaneously implantable electromagnetic biosensor system for continuous glucose monitoring
Seongmun Kim, Jagannath Malik, Jong Mo Seo, Young Min Cho, Franklin Bien
SJR Q1Scientific ReportsOA

Continuous glucose monitoring systems (CGMS) are becoming increasingly popular in diabetes management compared to conventional methods of self-blood glucose monitoring systems. They help understanding physiological responses towards nutrition intake, physical activities in everyday life and glucose control. CGMS available in market are of two types based on their working principle. Needle type systems with few weeks lifespan (e.g., enzyme-based Freestyle Libre) and implant type system (e.g., flu

Electrical and Electronic EngineeringEngineering
6
Article|23 citations·2006
A 10-Gb/s Reconfigurable CMOS Equalizer Employing a Transition Detector-Based Output Monitoring Technique for Band-Limited Serial Links
Franklin Bien, Hyoungsoo Kim, Y. Hur, M. Maeng, Jeong-Won Cha, S. Chandramouli, E. Gebara, Joy Laskar
SJR Q1IEEE Transactions on Microwave Theory and Techniques

Limitations in data transmission caused by band limitation in broadband communication links can be improved significantly by using equalization techniques. In this paper, a reconfigurable feed-forward equalizer employing a transition detector (TD)-based calibration technique that provides a universal channel compensation solution is presented. Moreover, the newly proposed TD-based calibration technique monitors the channel output for further adjustments over time in order to provide optimum comp

Electrical and Electronic EngineeringEngineering
7
Article|16 citations·2018
Electromagnetically induced transparency in sinusoidal modulated ring resonator
Jagannath Malik, Sai Kiran Oruganti, Seongkyu Song, Nak Young Ko, Franklin Bien
SJR Q1Applied Physics Letters

In the present work, we demonstrate controlling the excitation of bright mode (continuum mode) resonance and dark mode (discrete mode) resonance in a planar metasurface made of sinusoidal modulation inside a closed rectangular metallic ring placed over a dielectric substrate. Unlike asymmetrical breaking of a meta-atom (often referred to as the unit cell) to achieve the dark mode response in regular metamaterials, in the present structure, the bright or dark mode resonance is achieved using even

Electronic, Optical and Magnetic MaterialsMaterials Science
8
Article|12 citations·2014
Algorithm for improving SNR using high voltage and differential Manchester code for capacitive touch screen panel
Hyunggun Ma, Sanghyun Heo, Jae Joon Kim, Franklin Bien
SJR Q3Electronics LettersOA

An algorithm for a capacitive touch screen panel that can make the sum of the signal into ‘0’ for the use of high voltage is presented. The differential Manchester code is combined with the Walsh‐Hadamard code to generate an input coded signal. Owing to the property of the differential Manchester code, the Moore‐Penrose pseudoinverse matrix is employed to decode‐mutual capacitance from the received signal. As only the variation between the un‐touch and touch condition is detected at the receiver

Electrical and Electronic EngineeringEngineering
9
Article|8 citations·2024
Arrangement Free Wireless Power Transfer via Strongly Coupled Electrical Resonances
Bonyoung Lee, Jungho Kim, Hyunkyeong Jo, Hyungki Min, Franklin Bien
SJR Q1Advanced ScienceOA

Research on magnetically resonant wireless power transfer (MRWPT) is actively pursued for diverse applications. Dependent on magnetic fields for wireless power transfer (WPT), MRWPT encounters a challenge due to the absence of monopole magnetic properties, impacting power transfer efficiency (PTE) sensitivity to receiver arrangement. Despite extensive research, achieving the desired receiver freedom remains a persistent challenge-a core limitation rooted in magnetic field-based WPT. To address t

Electrical and Electronic EngineeringEngineering
10
Article|8 citations·2018
Step‐charging technique for CC/CV mode battery charging with low‐cost control components in IPT systems
Kyung-Min Na, Hyunggun Ma, Gyeongho Namgoong, Katherine A. Kim, Jee‐Hoon Jung, Franklin Bien
SJR Q2IET Power ElectronicsOA

In wireless power transfer technology, power control technique is required to realise constant current (CC) and constant voltage (CV) modes for battery charging. CC and CV modes are needed to effectively charge lithium (Li)‐ion batteries to ensure long life span and maximum capacity utilisation. The use of additional battery charging circuitry reduces efficiency, increases volume, and increases circuit complexity. The frequency modulation method is a method that can control power without an addi

Electrical and Electronic EngineeringEngineering
11
Article|8 citations·2023
An ultralow power wearable vital sign sensor using an electromagnetically reactive near field
Seoktae Seo, Hyunkyeong Jo, Jungho Kim, Bonyoung Lee, Franklin Bien
SJR Q1Bioengineering & Translational MedicineOA

Despite coronavirus disease 2019, cardiovascular disease, the leading cause of global death, requires timely detection and treatment for a high survival rate, underscoring the 24 h monitoring of vital signs. Therefore, telehealth using wearable devices with vital sign sensors is not only a fundamental response against the pandemic but a solution to provide prompt healthcare for the patients in remote sites. Former technologies which measured a couple of vital signs had features that disturbed pr

Biomedical EngineeringEngineering
12
Article|7 citations·2021
Metal Surface Guided-Wireless Power Transfer System for Portable Applications With Multiple Receivers
Franklin Bien, Woojin Park, Bonyoung Lee, Gangil Byun
SJR Q1IEEE AccessOA

Recently, research has been actively conducted to overcome various challenges observed in wireless power transfer (WPT) technology. However, as additional techniques are implemented, the complexity and cost of WPT systems increased. Therefore, there is a need for a new WPT method that can overcome the shortcomings of existing technology. This paper presents a metal surface guided-wireless power transfer (MSG-WPT) system for applications with multiple receivers (Rxs). First, a plate-wire propagat

Electrical and Electronic EngineeringEngineering
13
Article|6 citations·2015
77 GHz waveform generator with multiple frequency shift keying modulation for multi‐target detection automotive radar applications
Quang Ngọc Nguyễn, Myungryeol Park, Youngsu Kim, Franklin Bien
SJR Q3Electronics LettersOA

A waveform generator for a 77 GHz automotive radar that uses multiple frequency shift keying (MFSK) modulation is presented. The use of this modulation can improve the detection ability of radar applications in multi‐target situations. The proposed generator consists of a conventional 77 GHz Σ‐Δ fractional‐N synthesiser and MFSK modulation control logic (MMCL). The key innovation is the introduction of the MMCL, which has the ability to track the linear frequency increase while generating the fr

Electrical and Electronic EngineeringEngineering
14
Article|4 citations·2025
An Automated Algorithm for Obstructive Sleep Apnea Detection Using a Wireless Abdomen-Worn Sensor
Thi Hang Dang, Seongmun Kim, Minseong Choi, Sung-nam Hwan, Hyung-ki Min, Franklin Bien
SJR Q1SensorsOA

Obstructive sleep apnea (OSA) is common among older populations and individuals with cardiovascular diseases. OSA diagnosis is primarily conducted using polysomnography or recommended home sleep apnea test (HSAT) devices. Wireless wearable devices have emerged as promising tools for OSA screening and follow-up. This study introduces a novel automated algorithm for detecting OSA using abdominal movement signals and acceleration data collected by a wireless abdomen-worn sensor (Soomirang). Thirty-

PhysiologyMedicine
15
Article|3 citations·2024
A coreless track-type seamless wireless charging system using co-planar wires enabling quasi-free planar movements for mobile logistics robots
Hyunkyeong Jo, Seoktae Seo, Jungho Kim, Franklin Bien
SJR Q1Applied EnergyOA

The adoption of mobile robots in industrial automation is rapidly expanding, driven by not only economic advantages but also considerations for environmental conservation and worker safety. Dynamic wireless power transfer systems for mobile logistics robots emerge as a promising technology, enhancing the feasibility of battery-less mobile robots while concurrently reducing energy and raw material consumptions associated with battery production. Recent research in track-powered mobile robots has

Electrical and Electronic EngineeringEngineering

Research Areas

Electrical and Electronic EngineeringBiomedical EngineeringAerospace EngineeringMechanical EngineeringAutomotive EngineeringComputer Networks and Communications

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