Publications

6,078 articles found

271

Development of new scaffolds for bone substitution by electrospinning and laser ablation

Oprica, IMA; Beregoi, M; Popescu-Pelin, GF; Constantinoiu, I; Bacalum, M; Draghici, CI; Jinga, SI; Busuioc, C

MAR-APR 2025, JOURNAL OF MATERIALS RESEARCH AND TECHNOLOGY-JMR&T, 35

DOI: 10.1016/j.jmrt.2025.02.225

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The present study aims to develop and investigate the biological response of a bone substitute based on electrospun polyvinylidene fluoride (PVDF) fibres, which are either embedded or coated with a silicate bioglass belonging to SiO2-P2O5-CaO-Na2O oxide system. This bioglass is substituted with antibacterial agents, silver (Ag) and cerium (Ce), while deposition methods utilized include pulsed laser deposition (PLD) and matrixassisted pulsed laser evaporation (MAPLE). The results showed the inhomogeneous distribution of the glassy particulate phase in the polymer fibres when using electrospinning as single processing technique. In contrast, the materials achieved by combining the electrospinning with laser ablation displayed a continuous coating of glass at the polymer fibres surface. The thickness and roughness of this layer can be easily tuned as a function of deposition conditions, as it was demonstrated when changing the dispersion medium or working pressure. Good results were obtained for all coated PVDF fibres, but especially in the case of PLD processing with a thicker layer of silicate glass, the imaging evaluation suggested a superior beneficial impact on cellular metabolism. Such scaffolds, with controlled porosity, engineered surface and potential piezoelectric properties represent important candidates for the field of personalized bone substitutes.

272

DIELECTRIC AND RHEOLOGICAL CHARACTERIZATION OF PHYSICAL GELS BASED ON LIQUID CRYSTALS MIXTURE E7 AND THIOUREA LOW MOLECULAR WEIGHT GELATORS

Alkali, M; Micutz, M; Ilis, M; Ganea, CP; Radulescu, M; Cîrcu, V

2025, UNIVERSITY POLITEHNICA OF BUCHAREST SCIENTIFIC BULLETIN-SERIES A-APPLIED MATHEMATICS AND PHYSICS, 87

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This work investigates the gelation behavior and phase stability of E7 liquid crystals using a series of mesogenic benzoylthiourea (BTU) gelators with different alkyl chain lengths (6, 10, 12) at concentrations as low as 2.5 wt.%. Polarized optical microscopy (POM) and differential scanning calorimetry (DSC) confirm that the BTU gelators effectively stabilize the E7/gel composites through hydrogen bonding and pi-pi interactions. DSC studies reveal a concentration-dependent shift in transition temperatures, with evidence of distinct LC-isotropic and isotropic-gel transitions. Rheological and dielectric studies further demonstrate a reversible gel-sol transition and enhanced dipolar relaxation times (37.7 ns), indicating strong interactions between E7 and the BTU network.

273

Recent highlights from INDRA and FAZIA

Gruyer, D; Baldesi, L; Barlini, S; Borderie, B; Bougault, R; Camaiani, A; Casini, G; Chbihi, A; Ciampi, C; Dueñas, JA; Fable, Q; Fabris, D; Frankland, JD; Frosin, C; Génard, T; Gramegna, F; Henri, M; Hong, B; Kim, S; Kordyasz, A; Kozik, T; Kweon, MJ; LE Neindre, N; Lombardo, I; Lopez, O; Marchi, T; Mazurek, K; Nam, SH; Park, J; Parlog, M; Pasquali, G; Piantelli, S; Poggi, G; Rebillard-Soulié, A; Stefanini, AA; Upadhyaya, S; Valdre, S; Verdé, G; Vient, E; Vigilante, M

MAR-APR 2025, NUOVO CIMENTO C-COLLOQUIA AND COMMUNICATIONS IN PHYSICS, 48, 43

DOI: 10.1393/ncc/i2025-25043-0

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In this contribution, we review the recent results from the INDRA and FAZIA Collaborations. It will cover the results from INDRA-VAMOS experiments at GANIL, the first two INDRA-FAZIA campaigns at GANIL and FAZIA experiments at LNS Catania. Recent detector upgrades and developpements will also be discussed. Those results are better explained and more detailed in the following report presentations of this issue and just a brief overview will be mentionned here, with mostly the main conclusions addressed.

274

Grain size effects in BaTi0.90Hf0.10O3 ceramics with phase coexistence: the influence of nanostructuring and of the internal stress on the functional properties

Soare, EM; Stanciu, CA; Patru, RE; Surdu, VA; Padurariu, L; Horchidan, N; Nicoara, AI; Trupina, L; Vasile, BS; Trusca, RD; Mitoseriu, L; Ianculescu, AC

SEP-OCT 2025, JOURNAL OF MATERIALS RESEARCH AND TECHNOLOGY-JMR&T, 38

DOI: 10.1016/j.jmrt.2025.08.195

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The present study is focused on describing the influence of the sintering method (fast field-assisted Spark Plasma Sintering vs. conventional sintering) on the functional properties of BaTi0.90Hf0.10O3 ceramics with polymorph superposition around room temperature. Dense ceramics, derived from nanopowders synthesized via Pechini method, with grain size downscaled from 3.7 to 0.07 mu m were prepared using different sintering strategies. XRD data at room temperature revealed the presence of mixtures of dissimilar structural modifications either for the starting nanopowder, as well as for the related ceramics. The Landau-based calculations indicated that different amounts of polymorphs are stable in these ceramics, by considering the grain size reduction and the strain-stress fields produced by the fast sintering method, thus confirming the experimental results of the structural and Raman analyses. By decreasing the average grain size from micro-to nanoscale, a slight decrease of the Curie temperature, accompanied by the increase of the diffuseness of the ferroelectric-to-paraelectric phase transition and the decrease of both the permittivity maxima and the dielectric losses was detected. Both the dielectric response and the ferroelectric P(E) loops indicated a ferroelectric-relaxor crossover as the grain size decreased in the nanometre range. The beneficial effect of the nanostructuring on the energy storage efficiency was also revealed.

275

PETROGRAPHIC CHARACTERIZATION OF THE URANIUM ORE OF TAHAGGART (EL-HOGGAR, SE ALGERIA)

Mekti, Z; Boutemedjet, A; Tahri, T; Benselhoub, A; Soliman, AM; Bellucci, S

2025, VISNYK OF TARAS SHEVCHENKO NATIONAL UNIVERSITY OF KYIV-GEOLOGY

DOI: 10.17721/1728-2713.109.09

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Background . Algeria has long sought to exploit its uranium deposits in the Hoggar region, whose objective is to market the ore, and use part of the production exclusively in the civil field, especially in electricity generation. The exploitation and valorisation of this ore; require a very specific process of exploitation, characterization and treatment. The main objective of this work is to establish a detailed and complete technical data sheet for the Tahaggart deposit, enabling the implementation of a uranium ore mining and beneficiation technique to obtain a marketable product known as "yellow cake". Methods . To achieve this objective, samples were taken from the site understudy, followed by microscopic and macroscopic analyses non-thin sections to obtain petrographic, mineralogical and geochemical identifications. Results . The analyses confirmed the sandstone character of the ore and the predominance of quartz, clays, oxides and iron hydroxides as well as uranium and rutile minerals. The uranium contents in the mineralized altered levels varied from 0.90 to 1.32 and from 0.34 to 0.74 % in the mineralized conglomeratic sandstones. Uranium occurred either in the high-grade uranium minerals or low-grade apatite, zircon, rutile, and in traces in monazite. & Scy; o n c l u s ions . Different studies carried out on the Tahaggart region have proven the presence of Uranium ores with remarkable quantities, varying between 0.90 to 1.32 % in the mineralized altered levels and 0.34 to 0.74 % in the mineralized conglomeratic sandstones, however, despite this, and in view of the strategic value that uranium enjoys at the international level; to date, there is no exploitation this mine by the state. The best treatment method in this case is heap leaching; the recovery rate by this method can reach 70 % in uranium as "yellow cake".

276 Open Access

Antimicrobial and Antioxidant Properties of Polyvinyl Alcohol Biocomposite Films Containing Ferulic Acid and Cellulose Extracted from Robinia Pseudoacacia Pods

Marinas, IC; Oprea, E; Gaboreanu, DM; Matei, E; Nedelcu, L; Zgura, I; Angheloiu, M; Chifiriuc, MC

DEC 31 2024, JOURNAL OF NATURAL FIBERS, 21, 2355297

DOI: 10.1080/15440478.2024.2355297

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Capitalizing on invasive plant species and stopping their aggressive spread might be achieved by using them as a renewable source of useful products such as cellulose. The study aimed to develop new cellulose-based food packaging materials with antioxidant and antimicrobial activity. The cellulose was extracted from the invasive plant species Robinia pseudoacacia pods, crosslinked with citric acid, used as reinforcement for polyvinyl alcohol (PVA) and functionalized with ferulic acid (FA). The obtained materials were characterized by XRD, ATR-FTIR, contact angle and SEM. The materials exhibited low solubility in water and the swelling degree was proportional to the FA content. The FA release from the matrix was assessed by HPLC and the antioxidant profile by CUPRAC, FRAP, and TEAC methods. The obtained materials inhibited the growth of bacteria, yeasts and molds, being especially active on Gram-positive bacteria and yeasts. Overall, the most promising formulation for further developing new packaging materials for products with water activity less than 0.95 was the one with the highest FA content.

277

Floquet topological spin filters

Pena, A; Radu, C

DEC 30 2024, PHYSICAL REVIEW B, 110, L241113

DOI: 10.1103/PhysRevB.110.L241113

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Floquet topological insulators (FTIs) are materials which undergo topological phase transitions under a time periodic perturbation causing time reversal symmetry breaking. In this Letter, we propose a spin filter model based on a FTI realized by irradiating a honeycomb lattice with circularly polarized light, in the presence of intrinsic spin-orbit coupling. The main ingredient of our proposed mechanism of Floquet topological spin filter (FTSF) implementation is the presence of an on-site staggered potential which controls independently the topological phases of the two existent spin states. After giving a numerical example of the occurrence of the FTSF phase, we argue that the origin of the FTSF phase resides in the spatial inversion symmetry breaking due to the presence of a staggered potential. The light helicity degree of freedom may be used to select the filtered spin state. Moreover, due to the topological properties of our model, the spin will be purely filtered in a Hall transport experiment. We discuss also the experimental feasibility.

278

Optimization of CZTSe Thin Films Using Sequential Annealing in Selenium and Tin-Selenium Environments

Zaki, MY; Sava, F; Simandan, ID; Stavarache, I; Velea, A; Pintilie, L

DEC 26 2024, INORGANIC CHEMISTRY, 64

DOI: 10.1021/acs.inorgchem.4c04082

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Cu2ZnSnSe4 (CZTSe) is a promising material for thin-film solar cells due to its suitable band gap, high absorption coefficient, and composition of earth-abundant and nontoxic elements. In this study, we prepared CZTSe thin films from Cu/SnSe2 and ZnSe stacks using a two-step annealing process. Initially, Cu-Sn-Se (CTSe) films were synthesized by sequential deposition and annealing of Cu and SnSe2 precursors in either a selenium (Se) or tin-selenium (Sn+Se) atmosphere. After the deposition of a ZnSe layer on top of CTSe films, the stack underwent a second annealing process, again in either a Se or Sn+Se atmosphere, resulting in four distinct annealing combinations: Se -> Se, Sn+Se -> Se, Se -> Sn+Se, and Sn+Se -> Sn+Se. The first annealing step enabled the formation of CTSe, while the second annealing step, performed after ZnSe deposition, led to the formation of the CZTSe phase. Comprehensive characterization including grazing incidence X-ray diffraction (GIXRD), Raman spectroscopy, scanning electron microscopy (SEM), energy-dispersive X-ray spectroscopy (EDS), and electrical measurements was conducted. GIXRD and Raman analysis revealed kesterite CZTSe phase peaks, with some samples showing a split in the main peak at similar to 27 degrees (2 theta), indicating the presence of Cu x Se and ZnSe secondary phases. SEM analysis showed the impact of Sn and Se annealing on grain size, with larger grains observed in films annealed in Sn+Se atmospheres, particularly in the second heat treatment process. EDS results displayed consistent elemental composition across samples, with varying Cu/(Zn+Sn), Zn/Sn and Se/metal ratios influencing the band gap values from 1.09 to 1.63 eV. Hall measurements indicated p-type conductivity with carrier concentrations between 1016 and 1023 cm-3. These results highlight the effectiveness of our two-step annealing process, particularly the Sn+Se atmosphere, in optimizing CZTSe thin films for potential use in high-efficiency thin-film solar cells.

279 Open Access

Effect of transition metal ions on the dielectric properties of chromium potassium phosphates

Mighri, Z; Patru, RE; Leonat, LN; El Khouja, O; Nasri, H; Rostas, AM; Galca, AC

DEC 25 2024, JOURNAL OF ALLOYS AND COMPOUNDS, 1009, 176870

DOI: 10.1016/j.jallcom.2024.176870

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Potassium ions are important for developing electrode materials because they have similar properties to lithium and sodium ions. Mixed chromium phosphates (KMIICr(PO4)2) II Cr (PO 4 ) 2 ) with substituted M II sites using divalent elements (M = Ni, Co, Cu) were synthesized using a solid-state reaction method. The samples were analyzed using various techniques such as powder X-ray diffraction, Fourier transform infrared, Raman, and electron paramagnetic resonance spectroscopy. The proposed phosphates had a monoclinic phase structure with a P21/n 1 /n space group, and they contained large tunnels occupied by K+ + cations. The dielectric properties showed that the Ni-based phosphates had slower dielectric relaxation, while the Co and Cu-based phosphates had quicker polarization and depolarization processes. Additionally, the resistance of the grains decreased from Ni to Co to Cu-based phosphates, indicating easier charge movement in each material, consistent with the increase in conductive losses and a.c. conductivity when changing the M II ions.

280 Open Access

Expression of concern: Iron oxide magnetic nanoparticles with versatile surface functions based on dopamine anchors

Mazur, M; Barras, A; Kuncser, V; Galatanu, A; Zaitzev, V; Turcheniuk, KV; Woisel, P; Lyskawa, J; Laure, W; Siriwardena, A; Boukherroub, R; Szunerits, S

DEC 19 2024, NANOSCALE, 17

DOI: 10.1039/d4nr90209b

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Expression of concern for 'Iron oxide magnetic nanoparticles with versatile surface functions based on dopamine anchors' by Mykola Mazur et al., Nanoscale, 2013, 5, 2692-2702, https://doi.org/10.1039/C3NR33506B.