Development of Site-selective Functionalization at Nanoscale

Imec India Private Limited

Vlaams-Brabant

Sur place

EUR 13 000 - 17 000

Plein temps

Il y a 2 jours
Soyez parmi les premiers à postuler

Recevez plus de réponses des employeurs

Envoyez un CV adapté au poste en quelques minutes.

Résumé du poste

imec in Leuven offers a Master internship focused on the site-selective functionalization of biomolecules at nanoscale. The project includes material characterization of nano-patterned chips, SAM coatings, and immobilization methods compatible with CMOS environments and wafer-scale processing.

The role involves applying established protocols, analyzing coatings, and exploring advanced surface chemistries to improve biosensor performance.

Qualifications

  • Background in (Bio)Chemistry, (Bio)Nanotechnology, (Bio)Physics, Chemical Engineering, or Materials Engineering.
  • Master internship background and Leuven affiliation.

Responsabilités

  • Application and optimization of site-selective biofunctionalization protocol
  • Characterization of diverse self-assembled monolayers
  • Characterization of diverse selectively immobilized biomolecules
  • Explore improved surface coating and characterization strategies for specific binding and antifouling of diverse biomolecules

Formation

Chemistry/Chemical Engineering
Materials Engineering
Nanoscience & Nanotechnology

Description du poste

/ Development of Site-selective Functionalization at Nanoscale

Development of Site-selective Functionalization at Nanoscale

Master internship - Leuven | More than two weeks ago

Tackle the challenges for advancing precise immobilization of biomolecules on nanostructures at wafer-scale for next-generation biosensing and biosynthesis platforms

Diverse biosensing techniques have been actively developed over the last decades, utilizing nanofabrication forelectronic and photonic sensors. At imec, we are developing such state-of-the-art biosensors including solid-state nanopore devices for single-molecule DNA/protein sequencing, on-chip super-resolution microscopy for multi-omics imaging, and nano-scale FET (field-effecttransistor) devices for single-biomolecule detection, just to name a few. In particular, the ability of site-selective biomolecule functionalization at submicron-scale is highly desirable for increasing the sensitivity and specificity of biosensors. It is also beneficial to be compatible with the CMOS chip fabrication environment and hence gives a direct route towards high-volume manufacturing. However, many existing submicron-scale selective functionalization methods still lack either scalability or CMOS compatibility due to the use of low-throughput patterning approaches or non-compatible materials. Therefore, imec has been actively developing various CMOS-compatible site-selective surface functionalization method s for controlled biomolecule placement at submicron-scale, via wafer-level processing.

In this project, the student will contribute towards pushing the limits of the nanoscale surface patterning of biomolecules. The student will first perform material characterizations of the nano-patterned semiconductor chips supplied from imec’s state-of-the-art cleanrooms, followed by applying organo-silane self-assembled monolayer (SAM) coatings and site-selective immobilization of biomolecules using the methods established in our laboratories. For example, SAM coatings include azide layer for biomolecule immobilization via click-chemistry (Nobel prize in 2022) and polyethylene oxide layer for antifouling of biomolecules. Further, other additional methods (e.g., DNA origami nanostructures, 2D materials, lipid layers) can be also explored. Such various types of coatings can be patterned on a single chip surface at nanoscale with a high-precision using the imec-developed sacrificial layer lithography approach. The surface composition and morphology after each process will be investigated by a set of complementary characterization methods including infrared spectroscopy, ellipsometry, contact angle, and microscopy measurements. The proper attachment of biomolecules on the flat surface or the 3D nano-structures will be evaluated by diverse techniques such as confocal fluorescence microscopy, scanning electron microscopy, and atomic force microscopy. We will explore novel ideas for nano-patterning materials, surface coating chemistries, biomolecule immobilization strategies, and surface characterization methods.

Your main responsibilities

  • Application and optimization of site-selective biofunctionalization protocol
  • Characterization of diverse self-assembled monolayers
  • Characterization of diverse selectively immobilized biomolecules
  • Explore improved surface coating and characterization strategies for specific binding and antifouling of diverse biomolecules
  • Background in (Bio)Chemistry, (Bio)Nanotechnology, (Bio)Physics, Chemical Engineering, or Materials Engineering

Type of internship: Master internship

Required educational background: Chemistry/Chemical Engineering, Materials Engineering, Nanoscience & Nanotechnology

University promotor: Annelies Delabie (KU Leuven)

The reference code for this position is 2026-INT-096. Mention this reference code in your application.

Only for self-supporting students.

Diverse biosensing techniques have been actively developed over the last decades, utilizing nanofabrication forelectronic and photonic sensors. At imec, we are developing such state-of-the-art biosensors including solid-state nanopore devices for single-molecule DNA/protein sequencing, on-chip super-resolution microscopy for multi-omics imaging, and nano-scale FET (field-effecttransistor) devices for single-biomolecule detection, just to name a few. In particular, the ability of site-selective biomolecule functionalization at submicron-scale is highly desirable for increasing the sensitivity and specificity of biosensors. It is also beneficial to be compatible with the CMOS chip fabrication environment and hence gives a direct route towards high-volume manufacturing. However, many existing submicron-scale selective functionalization methods still lack either scalability or CMOS compatibility due to the use of low-throughput patterning approaches or non-compatible materials. Therefore, imec has been actively developing various CMOS-compatible site-selective surface functionalization method s for controlled biomolecule placement at submicron-scale, via wafer-level processing.

In this project, the student will contribute towards pushing the limits of the nanoscale surface patterning of biomolecules. The student will first perform material characterizations of the nano-patterned semiconductor chips supplied from imec’s state-of-the-art cleanrooms, followed by applying organo-silane self-assembled monolayer (SAM) coatings and site-selective immobilization of biomolecules using the methods established in our laboratories. For example, SAM coatings include azide layer for biomolecule immobilization via click-chemistry (Nobel prize in 2022) and polyethylene oxide layer for antifouling of biomolecules. Further, other additional methods (e.g., DNA origami nanostructures, 2D materials, lipid layers) can be also explored. Such various types of coatings can be patterned on a single chip surface at nanoscale with a high-precision using the imec-developed sacrificial layer lithography approach. The surface composition and morphology after each process will be investigated by a set of complementary characterization methods including infrared spectroscopy, ellipsometry, contact angle, and microscopy measurements. The proper attachment of biomolecules on the flat surface or the 3D nano-structures will be evaluated by diverse techniques such as confocal fluorescence microscopy, scanning electron microscopy, and atomic force microscopy. We will explore novel ideas for nano-patterning materials, surface coating chemistries, biomolecule immobilization strategies, and surface characterization methods.

Your main responsibilities

  • Application and optimization of site-selective biofunctionalization protocol
  • Characterization of diverse self-assembled monolayers
  • Characterization of diverse selectively immobilized biomolecules
  • Explore improved surface coating and characterization strategies for specific binding and antifouling of diverse biomolecules

Competences expected

  • Background in (Bio)Chemistry, (Bio)Nanotechnology, (Bio)Physics, Chemical Engineering, or Materials Engineering

Type of internship: Master internship

Required educational background: Chemistry/Chemical Engineering, Materials Engineering, Nanoscience & Nanotechnology

University promotor: Annelies Delabie (KU Leuven)

The reference code for this position is 2026-INT-096. Mention this reference code in your application.

Only for self-supporting students.

imec's cleanroom
Obtenez votre examen gratuit et confidentiel de votre CV.
ou faites glisser et déposez votre fichier ici.
Similar jobs

Postes similaires à comparer

Two-dimensional biomolecule confinement and transport for advanced biosensing & biosynthesis
Two-dimensional biomolecule confinement and transport for advanced biosensing & biosynthesis

Imec India Private Limited • Vlaams-Brabant

Sur place
EUR 8 900 - 12 000
GHz acoustics for biosensing at single-cell level
GHz acoustics for biosensing at single-cell level

Imec India Private Limited • Vlaams-Brabant

Sur place
EUR 12 000 - 17 000
Nano-engineered diamond tip chips for advanced imaging and data analysis applications in reverse-tip-sample scanning probe microscopy
Nano-engineered diamond tip chips for advanced imaging and data analysis applications in reverse-tip-sample scanning probe microscopy

Imec India Private Limited • Vlaams-Brabant

Sur place
EUR 12 000 - 18 000
[NanoIC topic] 2D nanocrystals as water-tight ionic membranes for low-temperature CO2 electrolysis
[NanoIC topic] 2D nanocrystals as water-tight ionic membranes for low-temperature CO2 electrolysis

Imec India Private Limited • Vlaams-Brabant

Sur place
EUR 11 000 - 16 000
Building Project Oracles for Hardware-Aware Software Development using Domain-Adaptive AI
Building Project Oracles for Hardware-Aware Software Development using Domain-Adaptive AI

Imec India Private Limited • Vlaams-Brabant

Sur place
EUR 11 000 - 17 000
Internship allowance
[NanoIC topic] Development of Soft X-Ray and Extreme-UV Microscopy and Optics
[NanoIC topic] Development of Soft X-Ray and Extreme-UV Microscopy and Optics

Imec India Private Limited • Vlaams-Brabant

Sur place
EUR 11 000 - 17 000
Real-time GPU-Accelerated Software Pipeline for Next-Generation Lens-Free Fluorescence Microscopy
Real-time GPU-Accelerated Software Pipeline for Next-Generation Lens-Free Fluorescence Microscopy

Imec India Private Limited • Vlaams-Brabant

Sur place
EUR 11 000 - 17 000
Imec allowance
On-chip thermometry at millikelvin temperatures for quantum-classical electronics co-integration
On-chip thermometry at millikelvin temperatures for quantum-classical electronics co-integration

Imec India Private Limited • Vlaams-Brabant

Sur place
EUR 12 000 - 17 000
Nanoscale Site-Selective Biomolecule Functionalization Intern
Nanoscale Site-Selective Biomolecule Functionalization Intern

Imec India Private Limited • Vlaams-Brabant

Sur place
EUR 13 000 - 17 000
Advanced Characterization of Liquid-Gated Extended-Gate FET Sensors
Advanced Characterization of Liquid-Gated Extended-Gate FET Sensors

Imec India Private Limited • Vlaams-Brabant

Sur place
EUR 12 000 - 19 000