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This Solicitation opportunity from Government of Canada was posted on April 20, 2026. The submission period has ended. Browse the details below for market research, or find similar active opportunities.

Acquisition et installation d’un spectromètre RMN 500 MHz équipé d’une sonde cryogénique

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20135535Canada

Contract Overview

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POSTED

about 22 hours ago

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Concordia University is soliciting bids for the acquisition and installation of a 500 MHz nuclear magnetic resonance (NMR) spectrometer equipped with a cryogenic probe. This advanced instrument is intended for use within the university's chemistry and biochemistry department and aims to support a wide range of research areas, including nanomaterials, organic and medicinal chemistry, and biomolecular sciences. The cryogenic probe enhances the sensitivity of the spectrometer, enabling detailed characterization of emerging nanomaterials such as carbon dots, as well as facilitating molecular structure elucidation, reaction monitoring, and purity assessment critical to drug discovery efforts, including cancer research. The spectrometer will also play a vital role in biomolecular studies by providing high-resolution structural and dynamic data on proteins, nucleic acids, and other macromolecules, contributing to a mechanistic understanding of molecular function and disease pathways. This infrastructure will significantly advance research capabilities in areas such as nanomaterial surface functionalization, in situ reaction tracking in chemistry, and 3D structural determination in biomolecular science. The solicitation was published on April 20, 2026, with a submission deadline of May 5, 2026, and is managed by Concordia University in Montreal under the Government of Canada. The primary contact for the contract is Helen McDonald.

General Info

Concordia seeks bids for 500 MHz NMR spectrometer with cryogenic probe for advanced research.

Agency

Government of Canada → Université Concordia

NAICS

334516 - Analytical Laboratory Instrument Manufacturing View NAICS

Place of Performance

Montréal, CAN

Set-Aside

NONE

Documents

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Timeline

PhaseClosed
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Solicitation

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Submission Closed

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Organization & Contact Information

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AgencyGovernment of Canada → Université Concordia
Contacts1 person available
OfficeN/A
Organization / Agency
Government of Canada → Université Concordia
Office AddressN/A
Contacts
McDonald HelenContracting Authority

Full Description

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Concordia demande des Soumissions pour l’acquisition d’un spectromètre de résonance magnétique nucléaire (« RMN ») de 500 MHz, équipé d’une sonde cryogénique, dont les spécifications techniques sont précisées davantage à l’article 2.2 (Spécifications techniques) de la présente Annexe 1 « DESCRIPTION DES BESOINS, MODALITÉS D’EXÉCUTION ET CRITÈRES D’ÉVALUATION » (le « Spectromètre »). Le Spectromètre, demandé pour le département de chimie et biochimie de Concordia, constituera une pierre angulaire des recherches en cours et futures dans les domaines des nanomatériaux, de la chimie organique et des sciences biomoléculaires. La sensibilité accrue de la sonde cryogénique du Spectromètre permettra une caractérisation détaillée des nanomatériaux émergents, tels les points de carbone, y compris leurs propriétés physico-chimiques, leurs mécanismes de formation et leur fonctionnalisation de surface avec des ligands organiques. En chimie médicinale et organique, le Spectromètre soutiendra l’élucidation des structures, le suivi des réactions et l’évaluation rigoureuse de la pureté des composés, accélérant ainsi la découverte et l’optimisation de nouvelles molécules thérapeutiques, y compris des molécules candidates pour le traitement du cancer du sein triple négatif et du cancer du foie. En sciences biomoléculaires, le Spectromètre permettra l’élucidation à haute résolution de structures et des informations dynamiques pour les protéines, les acides nucléiques et autres macromolécules, offrant un aperçu mécanistique du fonctionnement moléculaire, des voies pathologiques et des cibles thérapeutiques. Plus précisément, cette infrastructure sera essentielle dans les domaines tels : Les nanomatériaux : Permettra la caractérisation des propriétés physicochimiques des nanomatériaux, élucidation de mécanismes de formation et étude de la fonctionnalisation de surface des nanomatériaux avec des groupements organiques. • La chimie organique et médicinale : Permettra une élucidation des structures moléculaires, un suivi des réactions in situ et une évaluation de la pureté des composés pour soutenir la catalyse, le développement de méthodes et les pipelines de découverte de médicaments. • Les sciences biomoléculaires : Détermination des structures 3D haute résolution et des interactions des protéines de petite à moyenne taille, des acides nucléiques et autres biomolécules en solution, essentielles pour comprendre les mécanismes moléculaires liés à la santé et aux maladies, y compris les modèles de cancer.