Nano‐Photonic Crystal D‐Shaped Fiber Devices for Label‐Free Biosensing at the Attomolar Limit of Detection

Author:

Del Villar Ignacio12ORCID,Gonzalez‐Valencia Esteban34,Kwietniewski Norbert5,Burnat Dariusz5,Armas Dayron1,Pituła Emil5,Janik Monika5,Matías Ignacio R.12,Giannetti Ambra6,Torres Pedro4,Chiavaioli Francesco6ORCID,Śmietana Mateusz57

Affiliation:

1. Electrical, Electronic and Communications Engineering Department Public University of Navarre Pamplona 31006 Spain

2. Institute of Smart Cities (ISC) Public University of Navarra Pamplona 31006 Spain

3. Department of Electronic and Telecommunications Engineering Instituto Tecnológico Metropolitano Medellín 050013 Colombia

4. Departamento de Física Universidad Nacional de Colombia – Sede Medellín A.A. 3840 Medellín 050034 Colombia

5. Warsaw University of Technology Institute of Microelectronics and Optoelectronics Warszawa 00‐662 Poland

6. National Research Council of Italy (CNR) Institute of Applied Physics “Nello Carrara” Sesto Fiorentino 50019 Italy

7. Łukasiewicz Research Network – Institute of Microelectronics and Photonics Warszawa 02‐668 Poland

Abstract

AbstractMaintaining both high sensitivity and large figure of merit (FoM) is crucial in regard to the performance of optical devices, particularly when they are intended for use as biosensors with extremely low limit of detection (LoD). Here, a stack of nano‐assembled layers in the form of 1D photonic crystal, deposited on D‐shaped single‐mode fibers, is created to meet these criteria, resulting in the generation of Bloch surface wave resonances. The increase in the contrast between high and low refractive index (RI) nano‐layers, along with the reduction of losses, enables not only to achieve high sensitivity, but also a narrowed resonance bandwidth, leading to a significant enhancement in the FoM. Preliminary testing for bulk RI sensitivity is carried out, and the effect of an additional nano‐layer that mimics a biological layer where binding interactions occur is also considered. Finally, the biosensing capability is assessed by detecting immunoglobulin G in serum at very low concentrations, and a record LoD of 70 aM is achieved. An optical fiber biosensor that is capable of attaining extraordinarily low LoD in the attomolar range is not only a remarkable technical outcome, but can also be envisaged as a powerful tool for early diagnosis of diseases.

Funder

Narodowe Centrum Badań i Rozwoju

Narodowym Centrum Nauki

Ministero dell'Università e della Ricerca

Universidad Nacional de Colombia

Universidad Pública de Navarra

Agencia Estatal de Investigación

Instituto Tecnológico Metropolitano

Publisher

Wiley

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