Molecularly designed star-shaped PLA-based polymers with enhanced piezoelectricity for ultrasound-driven wound healing
- DOI
- 10.1039/d6tb00652c
- Published
- 2026
- Container
- Journal of Materials Chemistry B
- Publisher
- Royal Society of Chemistry (RSC)
- Open access
- unknown
Credibility signals
uncertain Score 64/100 under policy 1.0.0. This is a metadata assessment, not a judgment of the paper's conclusions.
Show all credibility signals
- supportingDOI registered: A matching record was returned by Crossref.
- supportingDOI resolves: A matching record was returned by Crossref.
- not scoredDirectory of Open Access Journals: No matching DOAJ record was present in this response. No allow-list match; this is not evidence of low credibility.
- not scoredMEDLINE indexed: Not checked or no result supplied; no credibility inference made.
- not scoredOpenAlex core source: Not checked or no result supplied; no credibility inference made.
- not scoredKnown publisher allow-list: Not checked or no result supplied; no credibility inference made.
- not scoredROR affiliation: Not checked or no result supplied; no credibility inference made.
- not scoredRetraction Watch retraction: No retraction notice matched this DOI in the deployed snapshot. No matching event found; coverage may be incomplete.
- not scoredRetraction Watch expression of concern: No expression of concern notice matched this DOI in the deployed snapshot. No matching event found; coverage may be incomplete.
- not scoredRetraction Watch correction: No correction notice matched this DOI in the deployed snapshot. No matching event found; coverage may be incomplete.
- not scoredRetraction Watch reinstatement: No reinstatement notice matched this DOI in the deployed snapshot. No matching event found; coverage may be incomplete.
- not scoredOpen access status: Not checked or no result supplied; no credibility inference made.
- not scoredPublication license: Not checked or no result supplied; no credibility inference made.
- not scoredPublication version: A publication version was supplied but is not scored.
- supportingMetadata completeness: All 6 scored descriptive metadata groups are present.
Cite this work
BibTeX
@article{allodium:10.1039/d6tb00652c,
title = {Molecularly designed star-shaped PLA-based polymers with enhanced piezoelectricity for ultrasound-driven wound healing},
author = {Guyue Liu and Jing Ma and Wei Liu and Jingzhou Fang and Qianhe Sun and Meng Cui and Xue Li and Xiuqin Zhang},
year = {2026},
journal = {Journal of Materials Chemistry B},
doi = {10.1039/d6tb00652c},
url = {https://doi.org/10.1039/d6tb00652c}
}RIS
TY - JOUR TI - Molecularly designed star-shaped PLA-based polymers with enhanced piezoelectricity for ultrasound-driven wound healing AU - Guyue Liu AU - Jing Ma AU - Wei Liu AU - Jingzhou Fang AU - Qianhe Sun AU - Meng Cui AU - Xue Li AU - Xiuqin Zhang PY - 2026 JO - Journal of Materials Chemistry B DO - 10.1039/d6tb00652c UR - https://doi.org/10.1039/d6tb00652c ER -
APA
Liu, G., Ma, J., Liu, W., Fang, J., Sun, Q., Cui, M., Li, X., & Zhang, X. (2026). Molecularly designed star-shaped PLA-based polymers with enhanced piezoelectricity for ultrasound-driven wound healing. Journal of Materials Chemistry B. https://doi.org/10.1039/d6tb00652c
Source records
- crossref · retrieved 2026-09-26T16:10:56.609Z