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UCC-2025-28 Supply, Delivery, Installation, Commission, Calibration, and Validation of Integrated X-ray Photoelectron Spectroscopy (XPS) System with Collocated Raman Spectroscopy Module for TNI, UCC

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Public tender announcement organized by University College Cork

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Organizer

University College Cork

Tender title: Ireland – Laboratory, optical and precision equipments (excl. glasses) – UCC-2025-28 Supply, Delivery, Installation, Commission, Calibration, and Validation of Integrated X-ray Photoelectron Spectroscopy (XPS) System with Collocated Raman Spectroscopy Module for TNI, UCC

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Announcement publication date:

2026-06-16

Work implementation location:

Cork

This award procedure primarily concerns the project "UCC-2025-28 Supply, Delivery, Installation, Commission, Calibration, and Validation of Integrated X-ray Photoelectron Spectroscopy (XPS) System with Collocated Raman Spectroscopy Module for TNI, UCC", marked as a priority in the procurement plan.
The official organizer of this tender is University College Cork, the institution responsible for the procurement process.
The procedure falls under CPV code 38000000, corresponding to the category: Laboratory, optical and precision equipments (excl. glasses).
The contracting authority estimates a duration of 12 months for completing the project.
The tender documentation specifies Cork as the place of performance.

Public Tender Overview:

Tyndall National Institute, University College Cork (UCC) invites tenders for the supply, delivery, installation, commissioning, and validation of an integrated X-ray Photoelectron Spectrometer (XPS) System with Collocated Raman Spectroscopy Module, comprising two primary components: (i) XPS Module: For chemical composition and electronic structure analysis of thin films (metal oxides and 2D materials) produced by Atomic Layer Deposition (ALD) facility within Europe’s first beyond-2 nm System-on-Chip (SoC) pilot line. (ii) Raman Spectroscopy Module: For structural, vibrational, and stress analysis of the same thin-film materials (metal oxides and 2D materials) from the atomic layer processing facility. This fully integrated system will provide essential complementary surface and bulk characterisation capabilities for next-generation ALD materials research within the pilot line facility.

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