Optical and Electrochemical Biosensors Using Electrochemically Etched Porous Silicon

Versatile nanostructured materials based on electrochemically etched porous silicon (pSi) are being developed, which have tuneable pore morphology and unique optical and electrochemical properties that enable their effective biosensing applications. It has been shown that fabrication parameters critically influence pore formation and sensor performance, yet challenges remain in reproducible synthesis, structural stability and device integration. Here we review the electrochemical etching synthesis of pSi and recent advances in pSi-based optical and electrochemical biosensors for detecting bacteria, biomolecules, and viruses. We highlight strategies such as surface functionalisation, incorporation of nanomaterials, and integration with microfluidic and lab-on-a-chip technologies that enhance sensitivity and response times by addressing mass transfer limitations. These developments highlight pSi’s potential as a low-cost, adaptable biosensing material with applications in clinical diagnostics and environmental monitoring, while mapping future directions to overcome current fabrication and stability challenges.

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Publication Details

Journal
Biosensors
Published
2026-09-06
DOI
https://doi.org/10.3390/bios16090498
Primary Topic
Silicon Nanostructures and Photoluminescence
Type
article
Field-Weighted Citation Impact
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article

Optical and Electrochemical Biosensors Using Electrochemically Etched Porous Silicon

Nikola Ž. Knežević, Brankica Kartalović, Marko Radović, Teodora Despotovski Kiš
Biosensors
Silicon Nanostructures and Photoluminescence
article

Optical and Electrochemical Biosensors Using Electrochemically Etched Porous Silicon

Nikola Ž. Knežević, Brankica Kartalović, Marko Radović, Teodora Despotovski Kiš
article en

Abstract

Versatile nanostructured materials based on electrochemically etched porous silicon (pSi) are being developed, which have tuneable pore morphology and unique optical and electrochemical properties that enable their effective biosensing applications. It has been shown that fabrication parameters critically influence pore formation and sensor performance, yet challenges remain in reproducible synthesis, structural stability and device integration. Here we review the electrochemical etching synthesis of pSi and recent advances in pSi-based optical and electrochemical biosensors for detecting bacteria, biomolecules, and viruses. We highlight strategies such as surface functionalisation, incorporation of nanomaterials, and integration with microfluidic and lab-on-a-chip technologies that enhance sensitivity and response times by addressing mass transfer limitations. These developments highlight pSi’s potential as a low-cost, adaptable biosensing material with applications in clinical diagnostics and environmental monitoring, while mapping future directions to overcome current fabrication and stability challenges.

BiosensorsVol. 16(9)
University of Novi Sad (RS), BioSense Institute (RS)
Life in Land
Openalex Percentile: Top 23%
Silicon Nanostructures and Photoluminescence
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