Research context and placement
This foundational composite combines actuation, foaming and release. The abstract does not verify interconnect–chip or substrate–component joining, so integration is only a provisional foundation.
Boundary case: assigned to the closest interface for navigation. Read the rationale and cross-links together; the primary theme does not delimit the study. Placement of foundational work does not establish direct bioelectronic application.
Research overview and key contributions
Electromagnetic heating couples shape change, foaming and payload release in a Nitinol–PMMA composite.
One trigger links structural change with release and an in vitro vascular-clamping demonstration.
Open challenges
Editorial question: Can tissue temperature, repeated actuation and release dose be independently controlled? In vivo therapeutic benefit was not verified.
Comparison context
Match geometry, heating history, porosity, payload, release medium and cellular assays.
Related external research
Light-induced shape-memory polymers
The comparator fixes/recovers polymer shapes using different light wavelengths; #87 combines metal heating with PMMA foaming and release.
Photochemical recovery and thermal composite actuation differ in trigger, heat exposure and release functionality.
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 ↗
10.1021/acsami.5c19771
resource_doi and references; file am5c19771_si_003.pdf · public_publisher_supplement_repository_metadata_read
- Correspondence evidence source ↗
Sung Woon Cha a* and Jun Young Yoon a*; *Corresponding author : [emails redacted]
Supporting Information page 1: complete author list and corresponding-author footnote · public_publisher_supplement_first_page_read
- Main-text review scope
- ACS-indexed and DOI-matched PubMed abstracts were read; full text and supplements remain unchecked.
- Supplementary review scope
- Only the first-page title, author list and correspondence notice in the public ACS Figshare supplementary information were read. The supplementary experiments, figures and results were not fully verified.
- Pending verification
- Verify thermal safety, fabrication, release models and biocompatibility scope for DOI 10.1021/acsami.5c19771 in school Chrome.
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.
No related outreach link was verified against its body within these searches. This does not establish that none exists.
Channel coverage and search log for all 101 records →Sources and verification scope
ACS-indexed and DOI-matched PubMed abstracts were read; full text and supplements remain unchecked.
- Public publication baseline ↗ · #87 · 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.
- A Remotely Actuated Multifunctional Nitinol−PMMA Smart Biocomposite: Microcellular Foaming, Shape Morphing, and Controlled Drug Release ↗
PubMed_abstract_via_Europe_PMC_API · MED/41363129; DOI 10.1021/acsami.5c19771; abstractText actually read via Europe PMC core API; abstractText, title and doi checked 2026-10-03. - A Remotely Actuated Multifunctional Nitinol−PMMA Smart Biocomposite: Microcellular Foaming, Shape Morphing, and Controlled Drug Release ↗
publisher_indexed_abstract · ACS publisher abstract returned in public search; no full-text read; 2026-10-03 - Light-induced shape-memory polymers ↗
public_external_abstract · Abstract and DOI metadata; read 2026-10-03.