Ausschreibung: Dänemark Spektrometer Raman Microscope for DTU Chemistry - DNK-Kgs. Spektrometer Dokument Nr...: 449806-2026 (ID: 2026070100471667815) Veröffentlicht: 01.07.2026 * DNK-Kgs.: Dänemark Spektrometer Raman Microscope for DTU Chemistry 2026/S 124/2026 449806 Dänemark Spektrometer Raman Microscope for DTU Chemistry OJ S 124/2026 01/07/2026 Freiwillige Ex-ante-Transparenzbekanntmachung Lieferleistungen 1. Beschaffer 1.1. Beschaffer Offizielle Bezeichnung: Danmarks Tekniske Universitet - DTU E-Mail: aasst@dtu.dk Rechtsform des Erwerbers: Einrichtung des öffentlichen Rechts Tätigkeit des öffentlichen Auftraggebers: Bildung 2. Verfahren 2.1. Verfahren Titel: Raman Microscope for DTU Chemistry Beschreibung: The Technical University of Denmark (DTU) intends to acquire one complete high-resolution confocal Raman microscopy and spectroelectrochemical characterization system, including all associated hardware, software, accessories, installation, commissioning, training, and warranty. The system will support research and education activities within catalysis, electrochemistry, materials science, energy conversion, sustainable fuels, and chemical synthesis. The primary purpose is to enable advanced in situ and operando characterization of functional materials, catalyst surfaces, and catalytic interfaces under realistic operating conditions, including electrochemical environments, elevated temperatures, controlled gas atmospheres, liquid-phase operation, and flow conditions. The instrument shall provide high-sensitivity Raman spectroscopy and microscopy with high spectral and spatial resolution. The system must support characterization of solids, liquids, heterogeneous materials, catalyst surfaces, thin films, nanostructured materials, powders, and solidliquid and solidgas interfaces. The equipment shall further enable investigation of reaction intermediates, catalyst transformations, phase transitions, adsorbates, reaction microenvironments, and dynamic processes occurring during electrochemical and catalytic reactions. The system shall include a confocal Raman microscope with automated operation, high-resolution spectroscopic capabilities, motorized sample positioning, automated focusing, Raman mapping and imaging functionality, and support for multiple excitation wavelengths covering the visible and near infrared spectral range, including excitation wavelengths of approximately 532 nm, 633 nm, and 785 nm. The system must be capable of performing both point measurements and spatially resolved Raman imaging of heterogeneous samples with automated data acquisition. The acquisition shall include low-noise detector technology suitable for weak Raman signals, time resolved measurements, and quantitative analysis of both Stokes and anti-Stokes Raman scattering. The system shall provide access to ultra-low- frequency vibrational information (down to 10 cm-1) relevant for studying structural changes, lattice dynamics, catalyst phase transformations, interfacial species, adsorption phenomena, and local temperature effects at catalytic interfaces. The instrument shall further enable simultaneous investigation of chemical composition, structural dynamics, and local thermal phenomena under operating conditions through acquisition of both Stokes and anti-Stokes Raman spectra. The system shall support automated Raman mapping and hyperspectral imaging of heterogeneous samples with micrometre-scale spatial resolution and high positional accuracy. The system must enable investigation of catalyst heterogeneity, dynamic restructuring processes, spatial distributions of reaction intermediates, and structureactivity relationships during operation. The system shall support time-resolved and operando measurements through direct integration be-tween electrochemical instrumentation and the spectroscopic platform, enabling synchronized electrochemical control and Raman data acquisition. The system shall allow simultaneous monitoring of electrochemical parameters and spectroscopic responses during catalytic operation and provide direct correlation between catalyst state, reaction intermediates, local temperature, and electrochemical performance. The equipment shall be suitable for spectroelectrochemical investigations of electro-chemical reactions and interfaces under controlled operating conditions. The acquisition shall further include dedicated spectroelectrochemical accessories, electrochemical cells suitable for operando measurements, flow-compatible accessories, control software, data acquisition and processing software, computer workstation, vibration-isolated installation platform, and all components necessary for full operation of the instrument. The system shall be designed for long-term research use and support future expansion through additional optical components, detectors, excitation sources, analytical modules, environmental cells, and experimental accessories. Scope of supply: One complete confocal Raman spectroscopy and microscopy system. High-resolution spectrometer and detector system. Multiple excitation wavelengths. Automated sample positioning, focusing, and mapping capabilities. Raman imaging and hyperspectral mapping functionality. Ultra-low-frequency Raman measurement capability. Stokes and anti-Stokes Raman measurement capability. Integrated spectroelectrochemical measurement capability. Electrochemical cell and associated accessories for operando measurements. Instrument control, acquisition, synchronization, analysis, and visualization software. Computer workstation and control electronics. Optical table or equivalent vibration- isolated installation platform. Installation, commissioning, training, documentation, and warranty. Quantity: One complete integrated Raman microscopy and spectroelectrochemical characterization system. Kennung des Verfahrens: caec8653-ec6b-4c55-a1a7-cfc39ea99240 Interne Kennung: 10793 Verfahrensart: Verhandlungsverfahren ohne Aufruf zum Wettbewerb 2.1.1. Zweck Art des Auftrags: Lieferleistungen Haupteinstufung (cpv): 38433000 Spektrometer 2.1.2. Erfüllungsort Postanschrift: DTU Kemi, Kemikalievej, Building 209 Stadt: Kongens Lyngby Postleitzahl: 2800 Land, Gliederung (NUTS): Københavns omegn (DK012) Land: Dänemark Zusätzliche Informationen: Building 209 2.1.4. Allgemeine Informationen Rechtsgrundlage: Richtlinie 2014/24/EU The Public Procurement Act - The Danish Public Procurement Act 5. Los 5.1. Los: LOT-0000 Titel: Raman Microscope for DTU Chemistry Beschreibung: The Technical University of Denmark (DTU) intends to acquire one complete high-resolution confocal Raman microscopy and spectroelectrochemical characterization system, including all associated hardware, software, accessories, installation, commissioning, training, and warranty. The system will support research and education activities within catalysis, electrochemistry, materials science, energy conversion, sustainable fuels, and chemical synthesis. The primary purpose is to enable advanced in situ and operando characterization of functional materials, catalyst surfaces, and catalytic interfaces under realistic operating conditions, including electrochemical environments, elevated temperatures, controlled gas atmospheres, liquid-phase operation, and flow conditions. The instrument shall provide high-sensitivity Raman spectroscopy and microscopy with high spectral and spatial resolution. The system must support characterization of solids, liquids, heterogeneous materials, catalyst surfaces, thin films, nanostructured materials, powders, and solidliquid and solidgas interfaces. The equipment shall further enable investigation of reaction intermediates, catalyst transformations, phase transitions, adsorbates, reaction microenvironments, and dynamic processes occurring during electrochemical and catalytic reactions. The system shall include a confocal Raman microscope with automated operation, high-resolution spectroscopic capabilities, motorized sample positioning, automated focusing, Raman mapping and imaging functionality, and support for multiple excitation wavelengths covering the visible and near infrared spectral range, including excitation wavelengths of approximately 532 nm, 633 nm, and 785 nm. The system must be capable of performing both point measurements and spatially resolved Raman imaging of heterogeneous samples with automated data acquisition. The acquisition shall include low-noise detector technology suitable for weak Raman signals, time resolved measurements, and quantitative analysis of both Stokes and anti-Stokes Raman scattering. The system shall provide access to ultra-low- frequency vibrational information (down to 10 cm-1) relevant for studying structural changes, lattice dynamics, catalyst phase transformations, interfacial species, adsorption phenomena, and local temperature effects at catalytic interfaces. The instrument shall further enable simultaneous investigation of chemical composition, structural dynamics, and local thermal phenomena under operating conditions through acquisition of both Stokes and anti-Stokes Raman spectra. The system shall support automated Raman mapping and hyperspectral imaging of heterogeneous samples with micrometre-scale spatial resolution and high positional accuracy. The system must enable investigation of catalyst heterogeneity, dynamic restructuring processes, spatial distributions of reaction intermediates, and structureactivity relationships during operation. The system shall support time-resolved and operando measurements through direct integration be-tween electrochemical instrumentation and the spectroscopic platform, enabling synchronized electrochemical control and Raman data acquisition. The system shall allow simultaneous monitoring of electrochemical parameters and spectroscopic responses during catalytic operation and provide direct correlation between catalyst state, reaction intermediates, local temperature, and electrochemical performance. The equipment shall be suitable for spectroelectrochemical investigations of electro-chemical reactions and interfaces under controlled operating conditions. The acquisition shall further include dedicated spectroelectrochemical accessories, electrochemical cells suitable for operando measurements, flow-compatible accessories, control software, data acquisition and processing software, computer workstation, vibration-isolated installation platform, and all components necessary for full operation of the instrument. The system shall be designed for long-term research use and support future expansion through additional optical components, detectors, excitation sources, analytical modules, environmental cells, and experimental accessories. Scope of supply: One complete confocal Raman spectroscopy and microscopy system. High-resolution spectrometer and detector system. Multiple excitation wavelengths. Automated sample positioning, focusing, and mapping capabilities. Raman imaging and hyperspectral mapping functionality. Ultra-low-frequency Raman measurement capability. Stokes and anti-Stokes Raman measurement capability. Integrated spectroelectrochemical measurement capability. Electrochemical cell and associated accessories for operando measurements. Instrument control, acquisition, synchronization, analysis, and visualization software. Computer workstation and control electronics. Optical table or equivalent vibration- isolated installation platform. Installation, commissioning, training, documentation, and warranty. Quantity: One complete integrated Raman microscopy and spectroelectrochemical characterization system. Interne Kennung: 10793 5.1.1. Zweck Art des Auftrags: Lieferleistungen Haupteinstufung (cpv): 38433000 Spektrometer 5.1.2. Erfüllungsort Postanschrift: DTU Kemi, Kemikalievej, Building 209 Stadt: Kongens Lyngby Postleitzahl: 2800 Land, Gliederung (NUTS): Københavns omegn (DK012) Land: Dänemark Zusätzliche Informationen: Building 209 5.1.3. Geschätzte Dauer Laufzeit: 1 Jahr 5.1.6. Allgemeine Informationen Auftragsvergabeprojekt nicht aus EU-Mitteln finanziert Die Beschaffung fällt unter das Übereinkommen über das öffentliche Beschaffungswesen: ja 5.1.15. Techniken Rahmenvereinbarung: Keine Rahmenvereinbarung Informationen über das dynamische Beschaffungssystem: Kein dynamisches Beschaffungssystem 5.1.16. Weitere Informationen, Schlichtung und Nachprüfung Überprüfungsstelle: Klagenævnet for Udbud Informationen über die Überprüfungsfristen: Complaint that the Contracting Authority, contrary to the Public Procurement Act, has concluded a contract without prior publication of a contract notice in the European Union Official Journal must be submitted no later than 30 calendar days from the date after a contract award notice has been published by the Contracting Authority in the European Union Official Journal and that contract award notice includes the grounds for the decision to award the contract directly, cf. lov om Klagenævnet for Udbud (Complaints Board for Tenders) § 7, section 3. Organisation, die zusätzliche Informationen über das Vergabeverfahren bereitstellt: Danmarks Tekniske Universitet - DTU Organisation, die einen Offline-Zugang zu den Vergabeunterlagen bereitstellt: Danmarks Tekniske Universitet - DTU Organisation, die weitere Informationen für die Nachprüfungsverfahren bereitstellt: Konkurrence- og Forbrugerstyrelsen Organisation, aus deren Mitteln der Auftrag bezahlt wird: Danmarks Tekniske Universitet - DTU Organisation, die die Zahlung ausführt: Danmarks Tekniske Universitet - DTU Organisation, die den Auftrag unterzeichnet: Danmarks Tekniske Universitet - DTU 6. Ergebnisse Direktvergabe : Begründung der Direktvergabe: Der Auftrag kann nur von einem bestimmten Wirtschaftsteilnehmer ausgeführt werden, da aus technischen Gründen kein Wettbewerb vorhanden ist Sonstige Begründung: DTU intends to acquire a high-resolution confocal Raman microscopy and spectroelectrochemical characterization system for advanced operando studies of catalytic and electrochemical interfaces. The instrument will enable research on electrocatalytic reactions, chemical synthesis, carbonheteroatom coupling reactions, catalyst degradation, and sustainable energy-conversion and storage processes. The scientific objective is to identify transient reaction intermediates, catalyst transformations, local temperature effects, and dynamic structureactivity relationships under realistic operating conditions. This requires a combination of functionalities that are technically necessary for the planned research programme and that, based on the conducted market survey, are not available as an equivalent integrated solution from alternative suppliers. Alternative modular or multi-supplier solutions were assessed and found not to provide equivalent technical capability, synchronization ac-curacy, data quality, or experimental reliability. The following functionalities are considered essential for the planned research programme: Direct synchronization between Raman spectroscopy and electrochemical control is necessary be- cause the primary purpose of the instrument is operando investigation of electrochemical interfaces during dynamic experiments such as pulsed electrolysis, catalyst activation, and degradation studies. Without direct synchronization, Raman spectra and electrochemical data must be acquired separately and aligned afterwards. This would reduce the necessary temporal accuracy and prevent the ability to correlate spectroscopic transformations with specific electrochemical events. Based on the market survey performed, no alternative supplier was identified to provide the direct integration and synchronized operation. Automated laser-scanning mapping of heterogeneous sensitive catalyst and material surfaces is necessary because the catalyst materials investigated are heterogeneous and often undergo spatially dependent transformations during operation. Without rapid laser-scanning measurements, investigation of catalyst heterogeneity becomes significantly slower and increase local laser exposure. This results in sample heating, photochemical damage, and measurement-induced irreversible surface modification, thereby significantly compromising the validity, reliability, and scientific integrity of the measurements. The market survey identified a patented laser-scanning implementation specifically designed to perform rapid measurements while minimizing local laser exposure and measurement-induced perturbation of sensitive catalyst surfaces. Ultra-low-frequency Raman capability (approximately 5 cm-1 or lower) is necessary because many catalyst transformations relevant to electrocatalysis and novel materials involve low-frequency vibrational modes associated with catalyst restructuring, lattice dynamics, phase transitions, and adsorb-ate-surface interactions. Without access to the ultra- low-frequency spectral region, these processes cannot be directly observed. Ultra-low- frequency Raman measurements are not available from other suppliers below 10 cm-1; additionally. Quantitative Stokes and anti-Stokes Raman measurements are necessary for investigating local thermal effects and non-equilibrium phenomena at catalytic interfaces through Raman thermometry. Without reliable anti-Stokes measurements, local catalyst temperatures and thermal gradients cannot be determined directly. Some suppliers offer anti- Stokes measurements; however, no alternative supplier was identified as providing this functionality in combination DTU needs. Time-resolved operando Raman measurements are necessary because catalytic interfaces evolve dynamically on timescales ranging from milliseconds to seconds. Without sufficient temporal resolution, transient reaction intermediates and catalyst restructuring processes cannot be observed directly, preventing mechanistic investigation of dynamic catalytic phenomena. Several suppliers offer time- resolved Raman measurements. No alternative supplier was identified as providing time- resolved operando Raman measurements together with synchronized Raman electrochemistry. The market survey included detailed assessment of commercially available systems from the industry. While several suppliers offer individual elements of the required functionality, significant limitations were identified. Some suppliers do not provide integrated spectroelectrochemical control and lacks the required combination of synchronized electrochemistry and automated laser-scanning functionality. Others did not provide integrated spectroelectrochemical control and relies on fibredefined confocality rather than a continuously adjustable confocal system. And some did not provide integrated spectroelectrochemical control and does not offer ultra-low-frequency Raman capability. Consequently, none of the assessed alternative suppliers were found capable of providing the necessary technically required functionalities within a single integrated commercial platform. Alternative solutions would require combinations of third-party hardware, custom software integration, external synchronization systems, and modified experimental workflows. Such approaches would introduce additional synchronization uncertainty between spectroscopic and electrochemical measurements, increase system complexity, require extensive validation and maintenance, and limit reproducibility of the experiments. Because the planned research depends on precise temporal correlation between electrochemical events and spectroscopic observations, these approaches were assessed as not providing the necessary technical solution. Accordingly, no reasonable alternative solution was identified that could fulfil the scientific and technical requirements of the research programme. 6.1. Ergebnis, Los- Kennung: LOT-0000 6.1.2. Informationen über die Gewinner Wettbewerbsgewinner: Offizielle Bezeichnung: Horiba Europe GmbH Angebot: Kennung des Angebots: Offer Kennung des Loses oder der Gruppe von Losen: LOT-0000 Wert der Ausschreibung: 418 298,00 EUR Vergabe von Unteraufträgen: Nein Informationen zum Auftrag: Kennung des Auftrags: Contract Datum der Auswahl des Gewinners: 26/06/2026 Organisation, die den Auftrag unterzeichnet: Danmarks Tekniske Universitet - DTU 8. Organisationen 8.1. ORG-0001 Offizielle Bezeichnung: Danmarks Tekniske Universitet - DTU Registrierungsnummer: 30060946 Postanschrift: Anker Engelunds Vej 1 Stadt: Kgs. Lyngby Postleitzahl: 2800 Land, Gliederung (NUTS): Københavns omegn (DK012) Land: Dänemark Kontaktperson: Anna Storch E-Mail: aasst@dtu.dk Telefon: +45 999999 Internetadresse: https://www.dtu.dk Profil des Erwerbers: https://eu.eu-supply.com/ctm/company/companyinformation/index /165863 Rollen dieser Organisation: Beschaffer Organisation, die zusätzliche Informationen über das Vergabeverfahren bereitstellt Organisation, die einen Offline-Zugang zu den Vergabeunterlagen bereitstellt Organisation, die den Auftrag unterzeichnet Organisation, aus deren Mitteln der Auftrag bezahlt wird Organisation, die die Zahlung ausführt 8.1. ORG-0002 Offizielle Bezeichnung: Klagenævnet for Udbud Registrierungsnummer: 37795526 Postanschrift: Nævnenes hus, Toldboden 2 Stadt: Viborg Postleitzahl: 8800 Land, Gliederung (NUTS): Østjylland (DK042) Land: Dänemark E-Mail: klfu@naeveneshus.dk Telefon: +45 35291000 Internetadresse: http://www.klfu.dk Rollen dieser Organisation: Überprüfungsstelle 8.1. ORG-0003 Offizielle Bezeichnung: Konkurrence- og Forbrugerstyrelsen Registrierungsnummer: 10294819 Postanschrift: Carl Jacobsens Vej 35 Stadt: Valby Postleitzahl: 2500 Land, Gliederung (NUTS): Byen København (DK011) Land: Dänemark E-Mail: kfst@kfst.dk Telefon: +45 41715000 Internetadresse: http://www.kfst.dk Rollen dieser Organisation: Organisation, die weitere Informationen für die Nachprüfungsverfahren bereitstellt 8.1. ORG-0004 Offizielle Bezeichnung: Horiba Europe GmbH Stadt: Göteborg Postleitzahl: 41705 Land, Gliederung (NUTS): Skåne län (SE224) Land: Schweden Rollen dieser Organisation: Bieter Gewinner dieser Lose: LOT-0000 8.1. ORG-0005 Offizielle Bezeichnung: Mercell Holding ASA Registrierungsnummer: 980921565 Postanschrift: Askekroken 11 Stadt: Oslo Postleitzahl: 0277 Land, Gliederung (NUTS): Oslo (NO081) Land: Norwegen Kontaktperson: eSender E-Mail: publication@mercell.com Telefon: +47 21018800 Fax: +47 21018801 Internetadresse: http://mercell.com/ Rollen dieser Organisation: TED eSender Informationen zur Bekanntmachung Kennung/Fassung der Bekanntmachung: 7463206a-35af-44b0-8d7a-2d508bd51765 - 01 Formulartyp: Vorankündigung Direktvergabe Art der Bekanntmachung: Freiwillige Ex-ante-Transparenzbekanntmachung Unterart der Bekanntmachung: 25 Datum der Übermittlung der Bekanntmachung: 29/06/2026 15:55:58 (UTC+00:00) Westeuropäische Zeit, GMT Bekanntmachung eSender-Übermittlungsdatum: 29/06/2026 15:56:06 (UTC+00:00) Westeuropäische Zeit, GMT Sprachen, in denen diese Bekanntmachung offiziell verfügbar ist: Englisch ABl. S Nummer der Ausgabe: 124/2026 Datum der Veröffentlichung: 01/07/2026 Referenzen: http://mercell.com/ https://eu.eu-supply.com/ctm/company/companyinformation/index/165863 https://www.dtu.dk http://www.kfst.dk http://www.klfu.dk http://icc-hofmann.net/NewsTicker/202607/ausschreibung-449806-2026-DNK.txt -------------------------------------------------------------------------------- Database Operation & Alert Service (icc-hofmann) for: The Office for Official Publications of the European Communities The Federal Office of Foreign Trade Information Phone: +49 6082-910101, Fax: +49 6082-910200, URL: http://www.icc-hofmann.de