Arşiv logosu
  • Türkçe
  • English
  • Giriş
    Yeni kullanıcı mısınız? Kayıt için tıklayın. Şifrenizi mi unuttunuz?
Arşiv logosu
  • Koleksiyonlar
  • Sistem İçeriği
  • Analiz
  • Talep/Soru
  • Türkçe
  • English
  • Giriş
    Yeni kullanıcı mısınız? Kayıt için tıklayın. Şifrenizi mi unuttunuz?
  1. Ana Sayfa
  2. Yazara Göre Listele

Yazar "Almessiere, M. A." seçeneğine göre listele

Listeleniyor 1 - 4 / 4
Sayfa Başına Sonuç
Sıralama seçenekleri
  • Yükleniyor...
    Küçük Resim
    Öğe
    An Investigation on Structure, AC Conductivity, and Dielectric Characteristics of Ni0.6Cu0.2Zn0.2Pd3xFe2-2xO4 (x ≤ 0.1) Nanospinel Ferrites
    (WILEY-V C H VERLAG GMBH, POSTFACH 101161, 69451 WEINHEIM, GERMANY, 2025) Almessiere, M. A.; Baykal, A.; Shirsath, Sagar E.; Trukhanov, A. V.; Demir Korkmaz, A.; Mihmanlı, Ahmet
    Partially palladium (Pd) substituted Ni0.6Cu0.2Zn0.2Pd3xFe2-2xO4 (x ≤ 0.1) nano-spinel ferrites (NCZPdx (x ≤ 0.1) NSFs) have been manufactured via sol–gel combustion route. The phase of all samples has been endorsed by XRD diffraction analysis. Their crystallite size (DXRD) were estimated within 36–72 nm range. Morphology and the chemical composition have been confirmed by EDX (Energy Dispersive X-ray) and SEM-TEM (Scanning-Transmission Emission Microscopy) respectively. Complex impedance spectroscopy (CIS) was utilized to explore the dielectric characteristics within 20 to 120 ºC temperature and from 1 to 106 Hz frequency ranges. The two-dimentional frequency and temperature dependencies of the real and imaginary components of permittivity (𝝐/ and 𝝐//), the dielectric loss tangent (tan(𝜹)), the real and imaginary parts of dielectric modulus (M/ real and M//), 𝝈 ac-conductivity (s), the real and imaginary components of impedance (Z/ and Z//), along with the experimental Nyquist diagrams Z//(Z/ ), were constructed and illustrated for all samples. The main feature of the frequencybehavior of the tan(𝜹) dielectric loss tangent is the presence of pronounced maxima depending on both frequency and temperature. The maximum value of the tan(𝜹) observed for the significantly doped x = 0.06-0.10 samples. The Pd substitution changes the electron relaxation and microwave absorption resonance.
  • Yükleniyor...
    Küçük Resim
    Öğe
    Comprehensive investigation on microstructure, electrical/dielectric and magnetic features of novel equimolar Co3-4x(MnxFexNixCrx)O4 (x = 0.05, 0.10, and 0.15) nanoparticles
    (Elsevier Ltd, 2025) Almessiere, M. A.; Baykal, A.; Slimani, Y.; Shirsath, Sagar E.; Gondal, M. A.; Ali, A.; Mihmanlı, Ahmet
    The main goal of this study is to understand the influence of Mn, Ni, Fe and Cr multi substitution on structural, dielectric, and magnetic properties of Co3O4 nanoparticles (NPs), which have been synthesized via sol-gel synthesis. The results revealed the successfully synthesized multi-substitution spinel oxides through X-ray powder patterns. DXRD are between 14 and 31 nm. AC conductivity exhibited strong temperature (T) and frequency (f) dependence, reflecting mechanisms dominated by interfacial polarization and polaronic conduction. The dielectric constant demonstrated a Maxwell-Wagner type response, influenced by grain boundary polarization and localized charge carriers. Magnetic measurements revealed the coexistence of ferromagnetic (or ferrimagnetic) and antiferromagnetic (or paramagnetic) contributions, with an enhancement in ferromagnetic behaviour attributed to the non-compensated spins, finite size effects, and higher magnetic moments of dopant ions. The coercivity, magnetization, and remanent magnetization were found to increase with the rise in the concentration of Fe, Mn, Ni, and Cr doping ions.
  • Yükleniyor...
    Küçük Resim
    Öğe
    Influence of temperature and selenium substitution on electrical and dielectric characteristics of CoFe2O4 nanoparticles
    (Elsevier B. V., 2025) Ünal, Bayram; Baykal, Abdülhadi; Almessiere, M. A.; Mihmanlı, Ahmet
    This study investigates the influence of Se⁴⁺ ion substitution on the electrical and dielectric properties of CoFe2O4 nanoparticles (CoFe2-4xSe3xO₄ (x ≤ 0.1) (NPs)) synthesized via a hydrothermal method. The electrical and dielectric characteristics were analyzed using a Novocontrol dielectric impedance analyzer. Results indicate that activation energies (Ea) remain stable at approximately 600 meV at higher temperatures (T ≥ 45 ◦C) but decrease significantly at lower temperatures, ranging from 300 meV (x = 0.02) to 20 meV (x = 0.08). A sharp reduction in DC conductivity, from 1.2 nS/cm (x = 0.04) to 0.27 nS/cm (x = 0.08), suggests enhanced electron mobility at this substitution level. AC conductivity exhibits strong frequency dependence, increasing from 0.15 nS/cm at 1 kHz to 0.13 μS/cm at 1 MHz for x = 0.08 at room temperature. Dielectric constant (ε′) and loss (ε′′) values exhibit significant variation with frequency, with ε′ reaching a maximum of 3.95 at 100 Hz for x = 0.08, reflecting enhanced polarization effects. Se⁴⁺ substitution also increases the real part of the electrical modulus (ReM) to 0.99 and the imaginary part (ImM) to 0.40 for x = 0.10, indicating improved energy storage and dissipation capabilities. The ImZ/ReZ ratio analysis reveals shifts in conduction mechanisms and polarization effects, with a notable transition at x = 0.04. Cole-Cole plots suggest multiple relaxation processes influenced by temperature and substitution levels, with relaxation times decreasing from 13 ms (70 ◦C) to 0.76 ms (120 ◦C) for x = 0.02. This study highlights the potential of Se⁴⁺-substituted Co-SFs for applications in electronic devices, particularly in energy storage and dissipation systems, and underscores the need for combined experimental and theoretical approaches to optimize these materials for advanced technological applications.
  • Yükleniyor...
    Küçük Resim
    Öğe
    Tunned the structure and magnetic characteristics of noble metal (Pd)-doped Ba-Sr nanohexaferrites
    (Elsevier B. V., 2025) Algarou, N. A.; Aldakheel, R. K.; Almessiere, M. A.; Baykal, Abdülhadi; Güngüneş, H.; Çalışkan, S.; Mihmanlı, Ahmet
    In this study, various ratios of Pd-doped Ba-Sr nanohexaferrites (NHFs) were studied. All samples were produced via sol–gel combustion and were designated as Ba0.5Sr0.5Pd3xFe12-2xO19 (x ≤ 0.1) NHFs. Detailed examinations of the magnetic and structural features were conducted. X-ray diffraction (XRD) confirmed the presence of a M-type HF phase, along with a small phase of iron oxide (Fe2O3) for some doping ratios. Both the SEM and TEM (Scanning and Transmission electron microscope respectively) revealed the formation of the hexagonal platelet morphology. The hyperfine parameters were determined by using Mossbauer ¨ spectroscopy. Pd2+ ions substituted Fe3+ ions at 12k site. The crystal symmetry not influenced by substitution. Fe3+ charge state was detected all samples. Magnetic properties are investigated through hysteresis loop analysis at room temperature (RT) and 10 K. Ms (saturation magnetization), Mr (remanence), Hc (coercivity), SQR (squareness ratio), and nB (experimental magnetic moment), were evaluated as a function of Pd doping. The pristine sample exhibited hard ferrimagnetic behavior with high Hc and Mr, while Pd-doped samples demonstrated reduced magnetic properties. Particularly, intermediate Pd concentrations (x = 0.04 and 0.06) resulted in slight increases in Ms. SQR values signify multidomain and single-domain nature for Pd-doped and undoped samples, respectively. XPS’ (X-ray photoelectron spectroscopy) broad spectrum of energies verified the presence of Ba, Sr, Pd, Fe, and O in the product.

| İstanbul Gelişim Üniversitesi | Kütüphane | Açık Erişim Politikası | Rehber | OAI-PMH |

Bu site Creative Commons Alıntı-Gayri Ticari-Türetilemez 4.0 Uluslararası Lisansı ile korunmaktadır.


Cihangir Mahallesi, Şehit Jandarma Komando Er Hakan Öner Sokak, No:1, Avcılar, İstanbul, TÜRKİYE
İçerikte herhangi bir hata görürseniz lütfen bize bildirin

DSpace 7.6.1, Powered by İdeal DSpace

DSpace yazılımı telif hakkı © 2002-2025 LYRASIS

  • Çerez Ayarları
  • Gizlilik Politikası
  • Son Kullanıcı Sözleşmesi
  • Geri Bildirim