Advanced Analytical (Scanning) Transmission Electron Microscope ((S)TEM) optimised for structural and chemical characterisation of beam sensitive materials
key details
| Status | active |
|---|---|
| Category (CPV) | 38511200 +2 more |
| Region | North West |
| Deadline | 19 Nov 2019 |
| Contract start | 2 Dec 2019 |
| Contract end | 31 Mar 2020 |
| Procedure | open |
| SME suitable | No |
| OCID | ocds-b5fd17-63835241-be73-4394-b1f4-4f3588a29d89 |
description
The University of Manchester is looking to acquire an advanced analytical (scanning) transmission electron microscope ((S)TEM) optimised for structural and chemical characterisation of beam sensitive materials.
Currently TEM is used extensively in the study of inorganic materials which often exhibit good thermal and electrical conductivity or highly stable bonding and structure, making them able to withstand the high energy density experienced in focussed electron beams and several hundred kilovolt acceleration. The development of new generation high sensitivity and high speed direct or hybrid detectors means that the energy dose can be reduced to the point where other types of materials, notably organic, hybrid organic-inorganic and pharmaceutical materials can be analysed in TEM.
With this capability we intend to extend the significant understanding and experience of microstructure-property relationships into the regime of these beam-sensitive materials.
To achieve this, the system must be able to perform scanning precession electron diffraction (SPED), which will be used for the microstructure analysis of materials. This needs to be operated through a direct electron detector or hybrid detector system (minimum 512x512 pixels) in order to achieve detection even at the low doses required for beam-sensitive materials. The ability to perform strain analysis is also required.
The TEM is also required to perform high-speed energy dispersive X-ray spectroscopy (EDS) experiments. There must be the ability to acquire and save both EDS and SPED measurements simultaneously. This combination of measurement methods will make the instrument unique in the world with regards to structure and composition analysis of a huge range of materials types.
Furthermore to improve the stability of many materials in the electron beam a cryogenic cooling holder capable of lowering samples to liquid nitrogen temperatures (~100K) is required and this will complement the wide range of other TEM sample holders available in the University of Manchester for in-situ experimentation.
Additional information: To express an interest in this project please visit the website below where you will need to register to obtain tender documentation.
https://in-tendhost.co.uk/universityofmanchester/aspx/Home
Delivery Notes
The University of Manchester is looking to acquire an advanced analytical (scanning) transmission electron microscope ((S)TEM) optimised for structural and chemical characterisation of beam sensitive materials.
Currently TEM is used extensively in the study of inorganic materials which often exhibit good thermal and electrical conductivity or highly stable bonding and structure, making them able to withstand the high energy density experienced in focussed electron beams and several hundred kilovolt acceleration. The development of new generation high sensitivity and high speed direct or hybrid detectors means that the energy dose can be reduced to the point where other types of materials, notably organic, hybrid organic-inorganic and pharmaceutical materials can be analysed in TEM.
With this capability we intend to extend the significant understanding and experience of microstructure-property relationships into the regime of these beam-sensitive materials.
To achieve this, the system must be able to perform scanning precession electron diffraction (SPED), which will be used for the microstructure analysis of materials. This needs to be operated through a direct electron detector or hybrid detector system (minimum 512x512 pixels) in order to achieve detection even at the low doses required for beam-sensitive materials. The ability to perform strain analysis is also required.
The TEM is also required to perform high-speed energy dispersive X-ray spectroscopy (EDS) experiments. There must be the ability to acquire and save both EDS and SPED measurements simultaneously. This combination of measurement methods will make the instrument unique in the world with regards to structure and composition analysis of a huge range of materials types.
Furthermore to improve the stability of many materials in the electron beam a cryogenic cooling holder capable of lowering samples to liquid nitrogen temperatures (~100K) is required and this will complement the wide range of other TEM sample holders available in the University of Manchester for in-situ experimentation.
Funding Description
The University of Manchester is looking to acquire an advanced analytical (scanning) transmission electron microscope ((S)TEM) optimised for structural and chemical characterisation of beam sensitive materials.
Currently TEM is used extensively in the study of inorganic materials which often exhibit good thermal and electrical conductivity or highly stable bonding and structure, making them able to withstand the high energy density experienced in focussed electron beams and several hundred kilovolt acceleration. The development of new generation high sensitivity and high speed direct or hybrid detectors means that the energy dose can be reduced to the point where other types of materials, notably organic, hybrid organic-inorganic and pharmaceutical materials can be analysed in TEM.
With this capability we intend to extend the significant understanding and experience of microstructure-property relationships into the regime of these beam-sensitive materials.
To achieve this, the system must be able to perform scanning precession electron diffraction (SPED), which will be used for the microstructure analysis of materials. This needs to be operated through a direct electron detector or hybrid detector system (minimum 512x512 pixels) in order to achieve detection even at the low doses required for beam-sensitive materials. The ability to perform strain analysis is also required.
The TEM is also required to perform high-speed energy dispersive X-ray spectroscopy (EDS) experiments. There must be the ability to acquire and save both EDS and SPED measurements simultaneously. This combination of measurement methods will make the instrument unique in the world with regards to structure and composition analysis of a huge range of materials types.
Is a Recurrent Procurement Type? : No
documents
- https://in-tendhost.co.uk/universityofmanchester/aspx/ , tenderNotice
- https://www.contractsfinder.service.gov.uk/Notice/bd531f10-4c59-4731-80a2-98969d94f0e7 , tenderNotice
Documents are linked, not mirrored. They are served by the publishing authority and may require registration.
notice history
1 notice published against this procurement.
| Published | Type | Regime | Notice |
|---|---|---|---|
| 1 Nov 2019 | Tender amendment (tenderAmendment) | · | bd531f10-4c59-4731-80a2-98969d94f0e7-323385 |
more from The University Of Manchester
- ePortfolio Tools - Request for Information (RFI) · 19 Feb 2025
- Manchester Open Research Environment, advancing the University's green open access (OA) strategy - Request for Information · 12 Feb 2025
- Energy C&B Services · £150,000 · 24 Jan 2025
- Request for Information (RFI) - Full Time MBA Residential · 20 Jan 2025
- Software Asset Management - Request for Information · 14 Jan 2025
- Digital Customer Experience Strategy Partner · £200,000 · 19 Dec 2024
- Partner to provide network equipment and related professional services - Request for Information (RFI) · 6 Dec 2024
- Automation Systems For DNA & RNA Sequencing Preparation - AWARD · 26 Nov 2024
all contracts from this buyer →
similar contracts awarded
Other awarded contracts in the same category. Useful for seeing who normally wins this kind of work, and at what value.
- One-off service of 16x operating microscopes - DP Medical · King's College Trust · £2,456
- Contract Award for the provision of a Transmission Electron Microscope · Swansea University
- Provision of Transmission Electron Microscope · UK Health Security Agency · £710,884
- CF Awarded Contract - Procurement of a Transmission Electron Microscope · University of Bristol · £697,686
- GB-Cambridge: UKRI-3177 High Resolution Polepiece (UHR) · UK Research & Innovation · £26,121
- GB-Cambridge: UKRI-2584 MRC LMB High Resolution TEM · UK Research & Innovation · £4,999,995
- GB-Cambridge: UKRI-2677 PURCHASE OF PRE-OWNED TEM · UK Research & Innovation · £45,000
- Mini Competition for the Maintenance and Service of Associated Equipment for FEI Talos TEM to the University of Birmingham · THE UNIVERSITY OF BIRMINGHAM · £49,825
source
Published on Contracts Finder. Contact details for named individuals are not reproduced on this site.