History of changes to: Nanoscale materials for energy harvesting
Date Action Change(s) User
Feb. 13, 2024, 4:19 p.m. Created 43 [{"model": "core.projectfund", "pk": 62214, "fields": {"project": 10407, "organisation": 2, "amount": 0, "start_date": "2020-10-01", "end_date": "2024-03-31", "raw_data": 176252}}]
Jan. 30, 2024, 4:24 p.m. Created 43 [{"model": "core.projectfund", "pk": 55058, "fields": {"project": 10407, "organisation": 2, "amount": 0, "start_date": "2020-10-01", "end_date": "2024-03-31", "raw_data": 151376}}]
Jan. 2, 2024, 4:15 p.m. Created 43 [{"model": "core.projectfund", "pk": 47857, "fields": {"project": 10407, "organisation": 2, "amount": 0, "start_date": "2020-10-01", "end_date": "2024-03-31", "raw_data": 131598}}]
Dec. 5, 2023, 4:23 p.m. Created 43 [{"model": "core.projectfund", "pk": 40609, "fields": {"project": 10407, "organisation": 2, "amount": 0, "start_date": "2020-09-30", "end_date": "2024-03-31", "raw_data": 97084}}]
Nov. 27, 2023, 2:14 p.m. Added 35 {"external_links": []}
Nov. 21, 2023, 4:37 p.m. Created 43 [{"model": "core.projectfund", "pk": 33313, "fields": {"project": 10407, "organisation": 2, "amount": 0, "start_date": "2020-09-30", "end_date": "2024-03-31", "raw_data": 55568}}]
Nov. 21, 2023, 4:37 p.m. Created 41 [{"model": "core.projectorganisation", "pk": 96233, "fields": {"project": 10407, "organisation": 13151, "role": "LEAD_ORG"}}]
Nov. 21, 2023, 4:37 p.m. Created 40 [{"model": "core.projectperson", "pk": 60412, "fields": {"project": 10407, "person": 15164, "role": "SUPER_PER"}}]
Nov. 20, 2023, 2:04 p.m. Updated 35 {"title": ["", "Nanoscale materials for energy harvesting"], "description": ["", "\nThe development of portable energy harvesting power sources as an alternative to batteries is an attractive prospect that will permit a new class of renewable energy devices that can operate indefinitely. We have identified a class of nanoscale perovskite materials that are ideal for device integration due to their unique properties that lead to enhanced functionality. Less is however known about the physical mechanism responsible for the enhancement and role of surface and interfacial effects within the composite device structure.\n\nThis project will focus on materials simulation with our state-of-the-art High Performance\nComputing (HPC) systems (Iridis) and device fabrication using the state-of-the-art facilities within the Southampton Nanofabrication Centre (Zepler Institute). optimal nanowire integration into a device setting and (2) fabrication of more exotic nanowires such as BaTiO. Both aspects will be explored on the project. We also want to explore mechanical durability and flexibility, charge extraction efficiency, compatibility with various substrates and failure tolerance when loaded or heated.\n\n"], "extra_text": ["", "\n\n\n\n"], "status": ["", "Active"]}
Nov. 20, 2023, 2:04 p.m. Added 35 {"external_links": [43112]}
Nov. 20, 2023, 2:04 p.m. Created 35 [{"model": "core.project", "pk": 10407, "fields": {"owner": null, "is_locked": false, "coped_id": "4ee26759-d97d-4440-bafd-f2f5a543c1e7", "title": "", "description": "", "extra_text": "", "status": "", "start": null, "end": null, "raw_data": 55551, "created": "2023-11-20T13:38:47.095Z", "modified": "2023-11-20T13:38:47.095Z", "external_links": []}}]