Logo image
Dielectrophoretic capture of Escherichia coli and boar sperms using ULSI-fabricated three-dimensional protruding TiN nano-electrode arrays
期刊文章   開放取用(OA)

Dielectrophoretic capture of Escherichia coli and boar sperms using ULSI-fabricated three-dimensional protruding TiN nano-electrode arrays

H.-J. Lu, I.-H. Liao, C.-L. Lien, J.-H. Shiau, C.-F. Shen, K.-R. Chou 和 C.-M. Cheng
Frontiers in Bioengineering and Biotechnology, 卷.12
2024
Web of Science ID: WOS:001336701700001

摘要

boar sperm CMOS dielectrophoresis Escherichia coli (E. coli) nano-electrode arrays titanium nitride CMOS integrated circuits Surface discharges Three dimensional integrated circuits Tin alloys ULSI circuits Boar sperm Capture efficiency CMOS Dielectrophoretic capture Electrode arrays Escherichia coli Nano-electrode array Nanoelectrode Particle separation Titania Titanium nitride
Object: In recent years, dielectrophoresis has become widely recognized as a highly suitable method for creating good tools for particle separation, with significant successes achieved in a variety of areas. Method: Expanding upon this, we adopted a semiconductor CMOS process, instead of a MEMS process, which allowed for the following: 1) wire insulation to mitigate Joule heat and prevent thermal fluctuation interference with the dielectrophoretic force; 2) isolation of harmful materials from biological samples, making the chip biocompatible; and, 3) the ability to employ nano-electrodes capable of generating a stronger electric field than conventional electrodes, thus allowing chip capture at lower voltages. Additionally, our chip is scalable, enabling multiplied throughput based on sample processing requirements. Results and Dissusion: These features make our chip more widely applicable and suitable for capturing bacteria and sperm. In this study, we focused on optimizing the parameters of dielectrophoresis and employed 3-D protruding TiN nano-electrode arrays to facilitate the capture of Escherichia coli and boar sperms. The experimental data demonstrates that the capture efficiency of this chip for E. coli was approximately 79.25% ± 2.66%, and the highest capture efficiency for sperms was approximately 39.2% ± 3.9%. Copyright © 2024 Lu, Liao, Lien, Shiau, Shen, Chou and Cheng.

檔案與連結 (2)

url
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85206574680&doi=10.3389%2ffbioe.2024.1470606&partnerID=40&md5=bc1a21b2487e586ce48e91d4e0b8c48b檢視
url
https://doi.org/10.3389/fbioe.2024.1470606檢視
已出版(紀錄版本) 開放

相關連結

指標

1 檢視次數

InCites亮點

本研究成果之相關指標(擷取自 InCites Benchmarking & Analytics)

合作類型
機構合作
引用書目主題
2 Chemistry
2.160 Microfluidic Devices & Superhydrophobicity
2.160.1541 Dielectrophoresis
Web Of Science研究領域
Biotechnology & Applied Microbiology
Engineering, Biomedical
ESI研究領域
Chemistry

聯合國永續發展目標(SDGs)

此研究成果有助於達成以下目標:

#3 Good Health and Well-Being

來源:來自InCites的SDGs

詳細資料

Logo image