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The Future of Wearable Healthcare

Nano Advanced Manufacturing and Engineering Devices Lab

VISION

The Nano Advanced Manufacturing and Engineering Devices (NAMED) Lab is seeking passionate and motivated students interested in nano/micro engineering and wearable healthcare applications.

Available Programs:

  • Undergraduate Internship

  • Undergraduate Research Program

  • Combined Bachelor–Master Program

  • Master’s Program

* We are not currently recruiting for doctoral and postdoctoral positions.

Research Areas:

  • Development of nano/micro-scale fabrication processes

  • Synthesis of nanofiber-based materials

  • Wearable healthcare applications using functional nanofibers

  • Disease diagnosis and therapeutic technologies

Benefits:

  • Opportunities to present at domestic and international conferences

  • Guidance for publishing your research in high-impact SCI journals

  • Stipends available (for undergraduate researchers and above)

모집 분야:

  • 학부 인턴 과정

  • 학부연구생 과정

  • 학석 연계 과정

  • 석사 과정

* 박사 과정 및 박사후연구원 포지션은 현재 모집하고 있지 않습니다.

연구 분야:

  • 나노/마이크로 스케일 공정 개발

  • 나노 섬유 소재의 합성 및 제작

  • 기능성 나노섬유 기반 웨어러블 헬스케어 응용

  • 질병 진단 및 치료 기술 개발

혜택:

  • 국내외 학술대회 발표 기회 제공

  • SCI급 국제 저널 논문 게재 지도

  • 소정의 인건비 지급 (학부연구생 이상 대상)

Electrospun Textiles for Wearable Healthcare

Our research focuses on developing micro- and nanoscale functional textiles through advanced electrospinning processes.
We engineer various composites to impart tailored functionalities to electrospun fiber structures.
In particular, we aim to apply these materials to next-generation wearable healthcare systems, contributing to the enhancement of human health and longevity.

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OUR RESEARCH

Innovations in Micro/Nanoscale Materials-based Wearable Healthcare

Development of Functional Fibers

20

Available materials

10

Process technology

We provide new versatile fiber solutions through the hybridization of our electrospun fibers, new process integration, and the incorporation of nanotechnology. Our laboratory plans and implements various material combinations, such as polymers, biopolymers, naturally derived materials, and inorganic materials, to develop composite micro/nano fibers.

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실험실에서 현미경

Micro/nano Analysis 

30

Analysis Equipment (Including shared equipment)

05

Manufacturing equipment

We have a total of 30 types of analysis equipment capable of performing morphological analysis, material property analysis, mechanical property analysis, chemical bonding analysis, and thermal behavior property analysis. This enables us to perform outstanding micro/nano analysis.

New Diagnostic Therapeutic Wear

5

With various strategies for diagnosis

3

For various disease

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WHY NAMED LAB

A Different Approach, Using a New Method of Manufacturing

We are conducting new process trials based on the electrospinning process. Furthermore, our functional fibers will become the underlying technology for a new concept of diagnostic treatment clothing, offering next-generation health management solutions for many patients and the general public.

Laboratory

NAMED LAB in Numbers

8

Researcher

10-15

Core Teams

42

Publication

888

Citation

COLLABORATION

Our Research Partners

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