Research Trends of Piezoelectric Nanomaterials in Biomedical Engineering

Piezoelectric nanomaterials are functional materials that hold a great promise for the nanoscale conversion of mechanical energy and electrical signals. Owing to their excellent electromechanical dependence, catalytic activity, and response sensitivity, piezoelectric nanomaterials are widely used in...

Full description

Bibliographic Details
Main Authors: Jianying Ji, Chunyu Yang, Yizhu Shan, Mingjun Sun, Xi Cui, Lingling Xu, Shiyuan Liang, Tong Li, Yijie Fan, Dan Luo, Zhou Li
Format: Article
Language:English
Published: Wiley-VCH 2023-01-01
Series:Advanced NanoBiomed Research
Subjects:
Online Access:https://doi.org/10.1002/anbr.202200088
_version_ 1797958095064793088
author Jianying Ji
Chunyu Yang
Yizhu Shan
Mingjun Sun
Xi Cui
Lingling Xu
Shiyuan Liang
Tong Li
Yijie Fan
Dan Luo
Zhou Li
author_facet Jianying Ji
Chunyu Yang
Yizhu Shan
Mingjun Sun
Xi Cui
Lingling Xu
Shiyuan Liang
Tong Li
Yijie Fan
Dan Luo
Zhou Li
author_sort Jianying Ji
collection DOAJ
description Piezoelectric nanomaterials are functional materials that hold a great promise for the nanoscale conversion of mechanical energy and electrical signals. Owing to their excellent electromechanical dependence, catalytic activity, and response sensitivity, piezoelectric nanomaterials are widely used in energy harvesting, sensors, actuators, resonators, and medical detectors. Nano‐piezoelectric materials exhibit unique electrical and chemical activities in the field of biomedical engineering, such as disease diagnosis and treatment. The working principles, device‐design mechanics, and classification of piezoelectric nanomaterials are systematically reviewed. Then, the recent advances in piezoelectric nanomaterials and their applications in tissue regeneration, antitumor/antibacterial therapy, cell force detection, controlled drug release, and pathological/physiological parameter monitoring are highlighted. Finally, the perspectives on the development of future smart piezoelectric nanomaterials, and how they can serve as a building block to inspire and impact the development of novel diagnosis and treatment applications, are presented.
first_indexed 2024-04-11T00:14:59Z
format Article
id doaj.art-18c9582b27524fadbbc4aee44594bc17
institution Directory Open Access Journal
issn 2699-9307
language English
last_indexed 2024-04-11T00:14:59Z
publishDate 2023-01-01
publisher Wiley-VCH
record_format Article
series Advanced NanoBiomed Research
spelling doaj.art-18c9582b27524fadbbc4aee44594bc172023-01-09T04:05:10ZengWiley-VCHAdvanced NanoBiomed Research2699-93072023-01-0131n/an/a10.1002/anbr.202200088Research Trends of Piezoelectric Nanomaterials in Biomedical EngineeringJianying Ji0Chunyu Yang1Yizhu Shan2Mingjun Sun3Xi Cui4Lingling Xu5Shiyuan Liang6Tong Li7Yijie Fan8Dan Luo9Zhou Li10Institute of Nanoenergy and Nanosystems Chinese Academy of Science Beijing 101400 ChinaInstitute of Nanoenergy and Nanosystems Chinese Academy of Science Beijing 101400 ChinaInstitute of Nanoenergy and Nanosystems Chinese Academy of Science Beijing 101400 ChinaInstitute of Nanoenergy and Nanosystems Chinese Academy of Science Beijing 101400 ChinaInstitute of Nanoenergy and Nanosystems Chinese Academy of Science Beijing 101400 ChinaInstitute of Nanoenergy and Nanosystems Chinese Academy of Science Beijing 101400 ChinaInstitute of Nanoenergy and Nanosystems Chinese Academy of Science Beijing 101400 ChinaInstitute of Nanoenergy and Nanosystems Chinese Academy of Science Beijing 101400 ChinaInstitute of Nanoenergy and Nanosystems Chinese Academy of Science Beijing 101400 ChinaInstitute of Nanoenergy and Nanosystems Chinese Academy of Science Beijing 101400 ChinaInstitute of Nanoenergy and Nanosystems Chinese Academy of Science Beijing 101400 ChinaPiezoelectric nanomaterials are functional materials that hold a great promise for the nanoscale conversion of mechanical energy and electrical signals. Owing to their excellent electromechanical dependence, catalytic activity, and response sensitivity, piezoelectric nanomaterials are widely used in energy harvesting, sensors, actuators, resonators, and medical detectors. Nano‐piezoelectric materials exhibit unique electrical and chemical activities in the field of biomedical engineering, such as disease diagnosis and treatment. The working principles, device‐design mechanics, and classification of piezoelectric nanomaterials are systematically reviewed. Then, the recent advances in piezoelectric nanomaterials and their applications in tissue regeneration, antitumor/antibacterial therapy, cell force detection, controlled drug release, and pathological/physiological parameter monitoring are highlighted. Finally, the perspectives on the development of future smart piezoelectric nanomaterials, and how they can serve as a building block to inspire and impact the development of novel diagnosis and treatment applications, are presented.https://doi.org/10.1002/anbr.202200088biomedical engineering applicationselectrical stimulationpiezoelectric nanomaterialsreactive oxygen speciessonodynamic therapy
spellingShingle Jianying Ji
Chunyu Yang
Yizhu Shan
Mingjun Sun
Xi Cui
Lingling Xu
Shiyuan Liang
Tong Li
Yijie Fan
Dan Luo
Zhou Li
Research Trends of Piezoelectric Nanomaterials in Biomedical Engineering
Advanced NanoBiomed Research
biomedical engineering applications
electrical stimulation
piezoelectric nanomaterials
reactive oxygen species
sonodynamic therapy
title Research Trends of Piezoelectric Nanomaterials in Biomedical Engineering
title_full Research Trends of Piezoelectric Nanomaterials in Biomedical Engineering
title_fullStr Research Trends of Piezoelectric Nanomaterials in Biomedical Engineering
title_full_unstemmed Research Trends of Piezoelectric Nanomaterials in Biomedical Engineering
title_short Research Trends of Piezoelectric Nanomaterials in Biomedical Engineering
title_sort research trends of piezoelectric nanomaterials in biomedical engineering
topic biomedical engineering applications
electrical stimulation
piezoelectric nanomaterials
reactive oxygen species
sonodynamic therapy
url https://doi.org/10.1002/anbr.202200088
work_keys_str_mv AT jianyingji researchtrendsofpiezoelectricnanomaterialsinbiomedicalengineering
AT chunyuyang researchtrendsofpiezoelectricnanomaterialsinbiomedicalengineering
AT yizhushan researchtrendsofpiezoelectricnanomaterialsinbiomedicalengineering
AT mingjunsun researchtrendsofpiezoelectricnanomaterialsinbiomedicalengineering
AT xicui researchtrendsofpiezoelectricnanomaterialsinbiomedicalengineering
AT linglingxu researchtrendsofpiezoelectricnanomaterialsinbiomedicalengineering
AT shiyuanliang researchtrendsofpiezoelectricnanomaterialsinbiomedicalengineering
AT tongli researchtrendsofpiezoelectricnanomaterialsinbiomedicalengineering
AT yijiefan researchtrendsofpiezoelectricnanomaterialsinbiomedicalengineering
AT danluo researchtrendsofpiezoelectricnanomaterialsinbiomedicalengineering
AT zhouli researchtrendsofpiezoelectricnanomaterialsinbiomedicalengineering