funding type |
Fundação para a Ciência e a Tecnologia |
programme |
Programa Nacional de Re-equipamento Científico (PNRC) |
acronym/
reference |
REDE/1509/RME/2005 |
research group(s) |
2 - multifunctional ferroic ceramics and nanostructures; |
department |
Materials and Ceramic Engineering (DEMaC) |
execution dates |
2005-07-08 - 2011-12-31 (
78 Months )
|
project extension date |
2014-06-30 (
30 Extra months )
|
abstract/
keywords |
The project REDE/1509/RME/2005-Network of Electron Microscopy - University of Aveiro started on 1/09/2005 and ended on 22/1/2008. It has as the local installation CICECO. Acquisition of equipments was initiated with 2 International Public Tenders authorized by orders of 15/03/2006 and 2/07/2006. It constitutes the Pole University of Aveiro of RNME, dated from 19/07/2007, managed by the management committee of 4 members and an advisory board of 4 specialists from international centers, invited on 2008. It houses two analytical electron microscopes of uppermost quality, with Schottky emission (SE), the SEM Hitachi SU-70 with Bruker Quantax 400 (B-U) EDS, opened on March 2007, and the filtered energy FE-TEM JEOL JEM-2200FS of atomic resolution with (FE) mapping, EELS and (B-U) EDS, fully available since November 2008. It provides services of electron microscopy, develops active research, participates in teaching of 8 curricular units of PhD programs (1), MSc courses (3) and 1st Cycle courses (4), and, together with the RNME, maintains a program of advanced training courses on electron microscopy, seminars and PhD thesis projects with international participation. Universal access is granted by registration and booking. Trained users, approved after assessment, may operate the equipments for extended periods of time, further than the regularly scheduled sessions. |
coordinator
/local pi |
Joaquim Manuel Vieira |
ciceco status |
Coordinator |
proponent institution |
Universidade de Aveiro (UA) |
partner institution(s) |
no
|
industrial partner(s) |
no |
international partner(s) |
no |
total budget |
2.806.444€
|
ciceco budget |
2.623.572€
|
project code |
3.50.103 |
link |
https://www.fct.pt/apoios/equipamento/rmicroscopia.phtml.en
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A strategy for improving peroxidase stability via immobilization on surface modified multi-walled carbon nanotubesAzevedo, RM; Costa, JB; Serp, P; Loureiro, JM; Faria, JL; Silva, CG; Tavares, APM 2015, JOURNAL OF CHEMICAL TECHNOLOGY AND BIOTECHNOLOGY, 90, 9, 1570-1578.
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Antimicrobial pullulan derivative prepared by grafting with 3-aminopropyltrimethoxysilane: Characterization and ability to form transparent filmsFernandes, SCM; Sadocco, P; Causio, J; Silvestre, AJD; Mondragon, I; Freire, CSR 2014, FOOD HYDROCOLLOIDS, 35, 247-252.
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Post-synthetic modification of crystal-like periodic mesoporous phenylene-silica with ferrocenyl groupsGomes, AC; Lourenco, MAO; Bruno, SM; Ferreira, P; Valente, AA; Pillinger, M; Goncalves, IS 2014, JOURNAL OF ORGANOMETALLIC CHEMISTRY, 751, 501-507.
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Non-aqueous sol-gel synthesis through a low-temperature solvothermal process of anatase showing visible-light photocatalytic activityKarmaoui, M; Tobaldi, DM; Skapin, AS; Pullar, RC; Seabra, MP; Labrincha, JA; Amaral, VS 2014, RSC ADVANCES, 4, 87, 46762-46770.
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FMR study of carbon nanotubes filled with Fe3O4 nanoparticlesKopyl, S; Timopheev, AA; Bystrov, VS; Bdikin, I; Teixeira, BMS; Maevskij, E; Sobolev, NA; Sousa, ACM 2014, JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS, 358, 44-49.
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Amperometric Sensing of H2O2 using Pt-TiO2/Reduced Graphene Oxide NanocompositesLeonardi, SG; Aloisio, D; Donato, N; Russo, PA; Ferro, MC; Pinna, N; Neri, G 2014, CHEMELECTROCHEM, 1, 3, 617-624.
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Ceramic tiles with controlled porosity and low thermal conductivity by using pore-forming agentsNovais, RM; Seabra, MP; Labrincha, JA 2014, CERAMICS INTERNATIONAL, 40, 8, 11637-11648.
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Carbonate-Free Zn-Al (1:1) Layered Double Hydroxide Film Directly Grown on Zinc-Aluminum Alloy CoatingSalak, AN; Lisenkov, AD; Zheludkevich, ML; Ferreira, MGS 2014, ECS ELECTROCHEMISTRY LETTERS, 3, 1, C9-C11.
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Unveiling the Chemistry behind the Green Synthesis of Metal NanoparticlesSantos, SAO; Pinto, RJB; Rocha, SM; Marques, PAAP; Neto, CP; Silvestre, AJD; Freire, CSR 2014, CHEMSUSCHEM, 7, 9, 2704-2711.
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Cationic release behaviour of antimicrobial cellulose/silver nanocompositesSilva, FM; Pinto, RJB; Daniel-da-Silva, AL; Trindade, T 2014, CELLULOSE, 21, 5, 3551-3560.
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Topical caffeine delivery using biocellulose membranes: a potential innovative system for cellulite treatmentSilva, NHCS; Drumond, I; Almeida, IF; Costa, P; Rosado, CF; Neto, CP; Freire, CSR; Silvestre, AJD 2014, CELLULOSE, 21, 1, 665-674.
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Silver-Modified Nano-titania as an Antibacterial Agent and PhotocatalystTobaldi, DM; Piccirillo, C; Pullar, RC; Gualtieri, AF; Seabra, MP; Castro, PML; Labrincha, JA 2014, JOURNAL OF PHYSICAL CHEMISTRY C, 118, 9, 4751-4766.
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Study of multi-carbide B4C-SiC/(Al, Si) reaction infiltrated composites by SEM with EBSDAlmeida, BA; Ferro, MC; Ravanan, A; Grave, PMF; Wu, HY; Gao, MX; Pan, Y; Oliveira, FJ; Lopes, AB; Vieira, JM 2014, EMAS 2013 WORKSHOP: 13TH EUROPEAN WORKSHOP ON MODERN DEVELOPMENTS AND APPLICATIONS IN MICROBEAM ANALYSIS, 55,
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Molecular modeling of the piezoelectric effect in the ferroelectric polymer poly(vinylidene fluoride) (PVDF)Bystrov, VS; Paramonova, EV; Bdikin, IK; Bystrova, AV; Pullar, RC; Kholkin, AL 2013, JOURNAL OF MOLECULAR MODELING, 19, 9, 3591-3602.
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A Computational Study of the Properties and Surface Interactions of HydroxyapatiteBystrov, VS; Paramonova, EV; Costa, MEV; Santos, C; Almeida, M; Kopyl, S; Dekhtyar, Y; Bystrova, AV; Maevsky, EI; Pullar, RC; Kholkin, AL 2013, FERROELECTRICS, 449, 1, 94-101.
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Ratiometric Nanothermometer Based on an Emissive Ln(3+)-Organic FrameworkCadiau, A; Brites, CDS; Costa, PMFJ; Ferreira, RAS; Rocha, J; Carlos, LD 2013, ACS NANO, 7, 8, 7213-7218.
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All-In-One Optical Heater-Thermometer Nanoplatform Operative From 300 to 2000 K Based on Er3+ Emission and Blackbody RadiationDebasu, ML; Ananias, D; Pastoriza-Santos, I; Liz-Marzan, LM; Rocha, J; Carlos, LD 2013, ADVANCED MATERIALS, 25, 35, 4868-4874.
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Energy-transfer from Gd(III) to Tb(III) in (Gd,Yb,Tb)PO4 nanocrystalsDebasu, ML; Ananias, D; Rocha, J; Malta, OL; Carlos, LD 2013, PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 15, 37, 15565-15571.
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Bioinspired Antimicrobial and Biocompatible Bacterial Cellulose Membranes Obtained by Surface Functionalization with Aminoalkyl GroupsFernandes, SCM; Sadocco, P; Aonso-Varona, A; Palomares, T; Eceiza, A; Silvestre, AJD; Mondragon, I; Freire, CSR 2013, ACS APPLIED MATERIALS & INTERFACES, 5, 8, 3290-3297.
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Biocompatible Bacterial Cellulose-Poly(2-hydroxyethyl methacrylate) Nanocomposite FilmsFigueiredo, AGPR; Figueiredo, ARP; Alonso-Varona, A; Fernandes, SCM; Palomares, T; Rubio-Azpeitia, E; Barros-Timmons, A; Silvestre, AJD; Neto, CP; Freire, CSR 2013, BIOMED RESEARCH INTERNATIONAL,
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