Large Scan Area Nanometer Resolution AFM Imaging

Atomic Force Microscopes have gained wide acceptance as a robust tool for metrology of nanometer and atomic scale surfaces. Nonetheless, AFMs lack some key capabilities that would benefit the industries and the scientific community at large. In this project, the limited scan range (1000×1000 um2), bringing the (sub-)nano resolution AFM images into the millimeter range. […]

Read More
Évaluation des conditions de traitement par ultrasons pour l’exfoliation à l’oxyde de graphène

Les membranes d’oxyde de graphène sont de nouveaux matériaux utilisés dans les filtrations de gaz et de liquides comme alternative aux procédés conventionnels de séparation. Le matériau composite confère aux membranes des caractéristiques sur mesure telles que la structure nanoporeuse, la stabilité chimique, la sélectivité et la résistance mécanique. Le traitement par ultrasons peut être […]

Read More
Development of a novel glass micro-positioning Atomic Force Microscopy stage based on compliant mechanisms.

Le projet proposé consiste à caractériser la réponse statique ainsi que la réponse dynamique d’un nouveau dispositif de micro-positionnement de haute précision compliant en verre. Il s’agit d’un nouveau type de platine de micro-positionnement permettant la translation de la partie centrale sur deux axes indépendants, soient X et Y à l’aide d’actionneurs piézoélectriques. La nouveauté […]

Read More
Étude des bases moléculaires et cellulaires pathologiques liés aux maladies cardiovasculaires

Les causes des maladies cardiovasculaires sont multifactorielles; certaines sont génétiques, d’autres liées intimement aux habitudes de vie et d’autres tombent dans ce qu’on appelle l’épigénétique. Ce domaine étudie les influences environnementales sur l’expression de nos gènes et se subdivise en plusieurs sous-spécialités de recherche. Au cours de notre projet, nous étudierons les influences des protéines […]

Read More
Application of protein fibers in plant-based meat analogues to improve mechanical and textural properties

Plenty of conclusive evidence points to the association of meat consumption with negative environmental outcomes resulting in climate change. These findings show the importance of reducing meat consumption and developing efficient strategies such as production of meat alternatives to alleviate the associated environmental and health issues. However, the production of plant-based meat analogues that can […]

Read More
Self-Assembly of Nanocluster-based Colloidosomes via Click Chemistry for the Formation of Inorganic Prototissues

Protocells are synthetic, cell-like microcompartments designed to mimic key aspects of living cells to provide researchers with deeper insights into primitive cellular functions and behaviours. This research project is aimed to design and synthesize functional polymer coated gold nanoparticles and clusters (AuNP and AuNCs) that are capable of self-assembly into gold inorganic functional colloidosomes. The […]

Read More
Fabricating and Investigating Laser-induced Reduced Graphene Oxide RFID Tag

Transient electronics and their dissolution byproducts, are usually harmless and benign, and hence they are an attractive approach for the global e-waste problem especially for low-cost, one time use devices such as RFID tag antennas. For this research, a straightforward laser-induced method of environmentally friendly reduced Graphene Oxide films is proposed for fabricating transient RFID […]

Read More
Micro/Nanobubble-Enhanced Cold Plasma Activation of Water

The project will develop a highly efficient technology for producing plasma-activated water (PAW) with low energy consumption. Expected outcomes of the project will enable high throughput production of PAW to meet the urgent need for green and sustainable technology in agriculture and food. PAW generated in large quantities will be at low cost without using […]

Read More
Fabrication, characterization and modeling of novel CMOS-compatible polymer-based redox memory structures

A cross-disciplinary collaboration between investigators in Electrical Engineering and Chemistry has lead to the discovery of a promising new material system for nanoelectronics. This material system is a conducting polymer / inorganic metal oxide heterojunction, electrochemically grown onto a crossbar structure. This heterojunction produces transient current-voltage characteristics that can be controlled by electric fields and […]

Read More
Microporous polymeric coatings for Li-ion battery electrodes

Lithium-ion batteries (LIBs) are commonly used for electric cars and portable electronic devices. In order to make these devices cheaper, lighter and more accessible, high capacity LIBs are needed. Lithium or silicon are ideal materials for LIBs due to their high specific capacity. However, they cannot be used to substitute the graphite anode in the […]

Read More