Cargando…

Single-Beam Acoustic Tweezer Prepared by Lead-Free KNN-Based Textured Ceramics

Acoustic tweezers for microparticle non-contact manipulation have attracted attention in the biomedical engineering field. The key components of acoustic tweezers are piezoelectric materials, which convert electrical energy to mechanical energy. The most widely used piezoelectric materials are lead-...

Descripción completa

Detalles Bibliográficos
Autores principales: Quan, Yi, Fei, Chunlong, Ren, Wei, Wang, Lingyan, Zhao, Jinyan, Zhuang, Jian, Zhao, Tianlong, Li, Zhaoxi, Zheng, Chenxi, Sun, Xinhao, Zheng, Kun, Wang, Zhe, Ren, Matthew Xinhu, Niu, Gang, Zhang, Nan, Karaki, Tomoaki, Jiang, Zhishui, Wen, Li
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8879455/
https://www.ncbi.nlm.nih.gov/pubmed/35208301
http://dx.doi.org/10.3390/mi13020175
_version_ 1784658895393783808
author Quan, Yi
Fei, Chunlong
Ren, Wei
Wang, Lingyan
Zhao, Jinyan
Zhuang, Jian
Zhao, Tianlong
Li, Zhaoxi
Zheng, Chenxi
Sun, Xinhao
Zheng, Kun
Wang, Zhe
Ren, Matthew Xinhu
Niu, Gang
Zhang, Nan
Karaki, Tomoaki
Jiang, Zhishui
Wen, Li
author_facet Quan, Yi
Fei, Chunlong
Ren, Wei
Wang, Lingyan
Zhao, Jinyan
Zhuang, Jian
Zhao, Tianlong
Li, Zhaoxi
Zheng, Chenxi
Sun, Xinhao
Zheng, Kun
Wang, Zhe
Ren, Matthew Xinhu
Niu, Gang
Zhang, Nan
Karaki, Tomoaki
Jiang, Zhishui
Wen, Li
author_sort Quan, Yi
collection PubMed
description Acoustic tweezers for microparticle non-contact manipulation have attracted attention in the biomedical engineering field. The key components of acoustic tweezers are piezoelectric materials, which convert electrical energy to mechanical energy. The most widely used piezoelectric materials are lead-based materials. Because of the requirement of environmental protection, lead-free piezoelectric materials have been widely researched in past years. In our previous work, textured lead-free (K, Na)NbO(3) (KNN)-based piezoelectric ceramics with high piezoelectric performance were prepared. In addition, the acoustic impedance of the KNN-based ceramics is lower than that of lead-based materials. The low acoustic impedance could improve the transmission efficiency of the mechanical energy between acoustic tweezers and water. In this work, acoustic tweezers were prepared to fill the gap between lead-free piezoelectric materials research and applications. The tweezers achieved 13 MHz center frequency and 89% −6 dB bandwidth. The −6 dB lateral and axial resolution of the tweezers were 195 μm and 114 μm, respectively. Furthermore, the map of acoustic pressure measurement and acoustic radiation calculation for the tweezers supported the trapping behavior for 100 μm diameter polystyrene microspheres. Moreover, the trapping and manipulation of the microspheres was achieved. These results suggest that the KNN-based acoustic tweezers have a great potential for further applications.
format Online
Article
Text
id pubmed-8879455
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-88794552022-02-26 Single-Beam Acoustic Tweezer Prepared by Lead-Free KNN-Based Textured Ceramics Quan, Yi Fei, Chunlong Ren, Wei Wang, Lingyan Zhao, Jinyan Zhuang, Jian Zhao, Tianlong Li, Zhaoxi Zheng, Chenxi Sun, Xinhao Zheng, Kun Wang, Zhe Ren, Matthew Xinhu Niu, Gang Zhang, Nan Karaki, Tomoaki Jiang, Zhishui Wen, Li Micromachines (Basel) Article Acoustic tweezers for microparticle non-contact manipulation have attracted attention in the biomedical engineering field. The key components of acoustic tweezers are piezoelectric materials, which convert electrical energy to mechanical energy. The most widely used piezoelectric materials are lead-based materials. Because of the requirement of environmental protection, lead-free piezoelectric materials have been widely researched in past years. In our previous work, textured lead-free (K, Na)NbO(3) (KNN)-based piezoelectric ceramics with high piezoelectric performance were prepared. In addition, the acoustic impedance of the KNN-based ceramics is lower than that of lead-based materials. The low acoustic impedance could improve the transmission efficiency of the mechanical energy between acoustic tweezers and water. In this work, acoustic tweezers were prepared to fill the gap between lead-free piezoelectric materials research and applications. The tweezers achieved 13 MHz center frequency and 89% −6 dB bandwidth. The −6 dB lateral and axial resolution of the tweezers were 195 μm and 114 μm, respectively. Furthermore, the map of acoustic pressure measurement and acoustic radiation calculation for the tweezers supported the trapping behavior for 100 μm diameter polystyrene microspheres. Moreover, the trapping and manipulation of the microspheres was achieved. These results suggest that the KNN-based acoustic tweezers have a great potential for further applications. MDPI 2022-01-25 /pmc/articles/PMC8879455/ /pubmed/35208301 http://dx.doi.org/10.3390/mi13020175 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Quan, Yi
Fei, Chunlong
Ren, Wei
Wang, Lingyan
Zhao, Jinyan
Zhuang, Jian
Zhao, Tianlong
Li, Zhaoxi
Zheng, Chenxi
Sun, Xinhao
Zheng, Kun
Wang, Zhe
Ren, Matthew Xinhu
Niu, Gang
Zhang, Nan
Karaki, Tomoaki
Jiang, Zhishui
Wen, Li
Single-Beam Acoustic Tweezer Prepared by Lead-Free KNN-Based Textured Ceramics
title Single-Beam Acoustic Tweezer Prepared by Lead-Free KNN-Based Textured Ceramics
title_full Single-Beam Acoustic Tweezer Prepared by Lead-Free KNN-Based Textured Ceramics
title_fullStr Single-Beam Acoustic Tweezer Prepared by Lead-Free KNN-Based Textured Ceramics
title_full_unstemmed Single-Beam Acoustic Tweezer Prepared by Lead-Free KNN-Based Textured Ceramics
title_short Single-Beam Acoustic Tweezer Prepared by Lead-Free KNN-Based Textured Ceramics
title_sort single-beam acoustic tweezer prepared by lead-free knn-based textured ceramics
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8879455/
https://www.ncbi.nlm.nih.gov/pubmed/35208301
http://dx.doi.org/10.3390/mi13020175
work_keys_str_mv AT quanyi singlebeamacoustictweezerpreparedbyleadfreeknnbasedtexturedceramics
AT feichunlong singlebeamacoustictweezerpreparedbyleadfreeknnbasedtexturedceramics
AT renwei singlebeamacoustictweezerpreparedbyleadfreeknnbasedtexturedceramics
AT wanglingyan singlebeamacoustictweezerpreparedbyleadfreeknnbasedtexturedceramics
AT zhaojinyan singlebeamacoustictweezerpreparedbyleadfreeknnbasedtexturedceramics
AT zhuangjian singlebeamacoustictweezerpreparedbyleadfreeknnbasedtexturedceramics
AT zhaotianlong singlebeamacoustictweezerpreparedbyleadfreeknnbasedtexturedceramics
AT lizhaoxi singlebeamacoustictweezerpreparedbyleadfreeknnbasedtexturedceramics
AT zhengchenxi singlebeamacoustictweezerpreparedbyleadfreeknnbasedtexturedceramics
AT sunxinhao singlebeamacoustictweezerpreparedbyleadfreeknnbasedtexturedceramics
AT zhengkun singlebeamacoustictweezerpreparedbyleadfreeknnbasedtexturedceramics
AT wangzhe singlebeamacoustictweezerpreparedbyleadfreeknnbasedtexturedceramics
AT renmatthewxinhu singlebeamacoustictweezerpreparedbyleadfreeknnbasedtexturedceramics
AT niugang singlebeamacoustictweezerpreparedbyleadfreeknnbasedtexturedceramics
AT zhangnan singlebeamacoustictweezerpreparedbyleadfreeknnbasedtexturedceramics
AT karakitomoaki singlebeamacoustictweezerpreparedbyleadfreeknnbasedtexturedceramics
AT jiangzhishui singlebeamacoustictweezerpreparedbyleadfreeknnbasedtexturedceramics
AT wenli singlebeamacoustictweezerpreparedbyleadfreeknnbasedtexturedceramics