Research context and placement
Silver-nanowire reinforcement supports electrical transport in stretchable conductive fibers. The abstract’s wearable-electronics focus supports placement under conductive fibers in deformable electrical routing.
Research overview and key contributions
Silver nanowires bridge silver nanoparticles inside SBS fibres; the abstract reports conduction during stretching and glove-based motion sensing.
Nanowire bridges support particle connectivity during extension, but the strain-sensitive fibre should not be described as a strain-invariant interconnect.
Open challenges
Wash durability, fatigue, contact resistance, silver release and prolonged skin-wear suitability remain unestablished by the checked abstract.
Comparison context
Match filler loading, diameter, strain/rate/cycles, baseline conductivity, deformed cross-section and resistance normalization.
Related external research
Highly stretchable electric circuits from a composite material of silver nanoparticles and elastomeric fibres
The external abstract describes silver-particle percolation in an SBS fibre mat; #21 adds nanowire bridging within fibres, providing a material-design comparison.
Mats and individual fibres differ in geometry and conductivity calculation; abstract values cannot support a simple improvement ratio.
Abstract checkedCorresponding-author verification
Jungmok Seo: not a corresponding authorThis record concerns Jungmok Seo’s correspondence designation. Author order or an asterisk alone is not treated as confirmation; this check is separate from verification of the research content.
- Correspondence evidence source ↗
Corresponding Author — Taeyoon Lee
Publisher complete author list; PDF p.3114 author/contact block · Named publisher author/correspondence information or public published-PDF contact block read; selected body/figure scope is recorded separately.
- Main-text review scope
- Selected body discussion, copyright notice and complete selected-figure caption read in public author-hosted published PDF; selected figure visually inspected. Supplements not audited.
- Supplementary review scope
- Not read in this figure/correspondence pass; no complete SI audit claimed.
- Pending verification
- Verify strain definitions, cyclic tests and conductivity calculations in school Chrome. Figures and full text are not redistributed. This pass verifies figure rights and correspondence roles. Selected-body/abstract review does not establish completion of full methods and supplementary-material review. The paper is not a verified Jungmok Seo correspondence paper and is outside this deepening priority.
COVERAGE & OUTREACH
Coverage and outreach
Links are checked for their relationship to this paper. Media publication does not establish independent reporting or additional experimental validation.
[News] “변형 감지 특성을 이용한 하이브리드형 고신축성, 전도성 섬유 개발” 언론 보도 ↗
The lab collects coverage of its stretchable conductive fiber and sign-sensing glove. The adjacent cover announcement names paper #21 exactly.
Body read Read the individual lab post and linked-outlet list. Outlet names alone do not establish verified article counts.
'수화를 글자로'...스마트 장갑 개발 ↗
NBDL links this report for #21; interviews with Seungbae Son and Seulah Lee and finger-strain sensing with stretchable fibers identify the study.
Body read Read the report text and interview transcript by reporter Dong-eun Lee. The article does not display the DOI; no claim is made to having watched the video.
수화 알아듣는 스마트 장갑 ↗
Taeyoon Lee, Seulah Lee, Advanced Functional Materials, wet-spun Ag-nanowire/Ag-nanoparticle fibers and alphabet-sign sensing identify #21.
Body read Read the complete bylined text. It uses Yonsei-provided material and a researcher quote; separate on-site reporting is not established, so editorial provenance remains unresolved.
Stretchable Electronics: Ag Nanowire Reinforced Highly Stretchable Conductive Fibers for Wearable Electronics (Adv. Funct. Mater. 21/2015) ↗
The Cover Picture title matches #21; its caption names T. Lee, page 3114, hybrid Ag-nanoparticle/nanowire fibers and the glove.
Body read Read the separate cover title, date and caption. Its DOI belongs to the cover feature, not the research article; no image is reproduced.
Unverified candidates and access limits (2)
Unverified candidate · 변형센서 하이브리드형 고신축성·전도성 섬유 개발 ↗
NBDL links this URL in its coverage announcement.
Body access limited Robots restrictions prevented reading the article. The date was not inferred from URL digits.
Unverified candidate · 연세대 이태윤 교수 연구팀, 신축성 높은 전도성 스마트 섬유 센서 개발 ↗
NBDL supplies this title and URL.
Body access limited Public retrieval returned HTTP 403. The article title, body and date remain directly unverified.
Sources and verification scope
Publisher metadata and abstract were checked; cyclic tests and quantitative calculations in the main text/supplements remain unaudited.
- Public publication baseline ↗ · #21 · 2026-10-03
- Crossref metadata ↗: Only public bibliographic metadata registered with Crossref was checked. This does not mean that the publisher page, abstract, or full text was read; full-text verification in the school Chrome session remains pending. license_urls lists registered links and does not establish permission to redistribute text or figures. It may include TDM or posting-policy links.
- Advanced Functional Materials — publisher abstract ↗
Public abstract and metadata; checked 2026-10-03 · First published: 2015-04-20; Abstract; Supporting Information link (not read); issue 25(21), 3114–3121