keyword
https://read.qxmd.com/read/38647367/magnetostriction-measurements-at-milli-kelvin-temperatures-using-a-fabry-p%C3%A3-rot-interferometer
#21
JOURNAL ARTICLE
Finnian J Blaauw-Smith, Luke S Trainor, Gavin G G King, Nicholas J Lambert, Masaya Hiraishi, Jevon J Longdell
This paper demonstrates an optical technique to measure magnetostrictive strain in a cryogenic environment using a Fabry-Pérot resonator spaced by crystal samples. Optical measurement techniques are calibration-free and highly sensitive. This technique was used to measure the magnetostrictive strain of neodymium gallate at a temperature of 49 mK to be λ = 1.3 × 10-5 at 3 T, with a sensitivity of 3.0 × 10-8. We highlight the interesting properties of the crystal's magnetic ordering...
April 1, 2024: Review of Scientific Instruments
https://read.qxmd.com/read/38647097/structural-interactions-in-polymer-stabilized-magnetic-nanocomposites
#22
JOURNAL ARTICLE
Gauri M Nabar, Abhilasha V Dehankar, Elizabeth Jergens, Benworth B Hansen, Ezekiel Johnston-Halperin, Matthew Sheffield, Joshua Sangoro, Barbara E Wyslouzil, Jessica O Winter
Superparamagnetic iron oxide nanoparticles (SPIONs) have attracted significant attention because of their nanoscale magnetic properties. SPION aggregates may afford emergent properties, resulting from dipole-dipole interactions between neighbors. Such aggregates can display internal order, with high packing fractions (>20%), and can be stabilized with block co-polymers (BCPs), permitting design of tunable composites for potential nanomedicine, data storage, and electronic sensing applications. Despite the routine use of magnetic fields for aggregate actuation, the impact of those fields on polymer structure, SPION ordering, and magnetic properties is not fully understood...
April 22, 2024: Soft Matter
https://read.qxmd.com/read/38647013/magneto-optical-properties-of-chiral-co-2-ln-and-co-3-ln-2-ln-dy-and-er-clusters
#23
JOURNAL ARTICLE
Mukeremu Aibibula, Yu-Hong Song, Han Xu, Man-Ting Chen, Xiang-Jian Kong, La-Sheng Long, Lan-Sun Zheng
A series of chiral heterometallic Ln-Co clusters, denoted as Co 2 Ln and Co 3 Ln 2 (Ln = Dy and Er), were synthesized by reacting the chiral chelating ligand ( R / S )-2-(1-hydroxyethyl)pyridine (Hmpm), CoAc2 ·4H2 O, and Ln(NO3 )3 ·6H2 O. Co 2 Ln and Co 3 Ln 2 exhibit perfect mirror images in circular dichroism within the 320-700 nm range. Notably, the Co 2 Er and Co 3 Er 2 clusters display pronounced magnetic circular dichroism (MCD) responses of the hypersensitive f-f transitions 4 I15/2 -4 G11/2 at 375 nm and 4 I15/2 -2 H11/2 at 520 nm of ErIII ions...
April 22, 2024: Inorganic Chemistry
https://read.qxmd.com/read/38646931/advances-in-nanotechnology-for-improving-the-targeted-delivery-and-activity-of-amphotericin-b-2011-2023-a-systematic-review
#24
REVIEW
Tahereh Zadeh Mehrizi, Nariman Mossafa, Mohammad Vodjgani, Hasan Ebrahimi Shahmabadi
Amphotericin B (AmB) is a broad-spectrum therapeutic and effective drug, but it has serious side effects of toxicity and solubility. Therefore, reducing its toxicity should be considered in therapeutic applications. Nanotechnology has paved the way to improve drug delivery systems and reduce toxicity. The present study, for the first time, comprehensively reviews the studies from 2011 to 2023 on reducing the in vitro toxicity of AmB. The findings showed that loading AmB with micellar structures, nanostructured lipid carriers, liposomes, emulsions, poly lactide-co-glycolide acid, chitosan, dendrimers, and other polymeric nanoparticles increases the biocompatibility and efficacy of the drug and significantly reduces toxicity...
April 22, 2024: Nanotoxicology
https://read.qxmd.com/read/38645357/fe-3-o-4-graphene-oxide-chitosan-nanocomposite-a-smart-nanosorbent-for-lead-ii-ion-removal-from-contaminated-water
#25
JOURNAL ARTICLE
Linh Quang Vo, Anh-Tuan Vu, Thu Dieu Le, Chinh Dang Huynh, Hoang Vinh Tran
A new graphene oxide (GO) nanocomposite that contains chitosan, a biological polymer, combined with a magnetic nanoparticle inorganic material (Fe3 O4 ) was successfully prepared and applied for the adsorption of Pb(II) from aqueous solutions. The structural and morphological properties of the GO/Fe3 O4 /CS (GFC) nanocomposites were characterized by X-ray diffraction, scanning electron microscopy, and energy-dispersive X-ray spectroscopy. Influent factors for Pb(II) adsorption, including the contacting time, pH of the working medium, working temperature, and adsorbent dosage on the adsorption efficiency, have been optimized...
April 16, 2024: ACS Omega
https://read.qxmd.com/read/38645319/imbibition-characteristics-and-influencing-factors-of-the-fracturing-fluid-in-a-tight-sandstone-reservoir
#26
JOURNAL ARTICLE
Tian Li, Dazhong Ren, Haipeng Sun, Hu Wang, Tao Tian, Qihui Li, Zhen Yan
The strong reservoir heterogeneity and complex microscopic pore structure in the Linxing area make it prone to water block damage during imbibition development. In order to explore the influence of reservoir microscopic characteristics on imbibition efficiency, taking the tight sandstone gas reservoir in the Linxing area of Ordos Basin as an example, the heterogeneity of the tight sandstone reservoir in the study area is characterized in terms of physical and chemical characteristics as well as the microscopic pore structure...
April 16, 2024: ACS Omega
https://read.qxmd.com/read/38644966/nanocomposites-based-on-magnetic-nanoparticles-and-metal-organic-frameworks-for-therapy-diagnosis-and-theragnostics
#27
REVIEW
Darina Francesca Picchi, Catalina Biglione, Patricia Horcajada
In the last two decades, metal-organic frameworks (MOFs) with highly tunable structure and porosity, have emerged as drug nanocarriers in the biomedical field. In particular, nanoscaled MOFs (nanoMOFs) have been widely investigated because of their potential biocompatibility, high drug loadings, and progressive release. To enhance their properties, MOFs have been combined with magnetic nanoparticles (MNPs) to form magnetic nanocomposites (MNP@MOF) with additional functionalities. Due to the magnetic properties of the MNPs, their presence in the nanosystems enables potential combinatorial magnetic targeted therapy and diagnosis...
April 17, 2024: ACS Nanosci Au
https://read.qxmd.com/read/38644798/potential-biomedical-applications-of-terbium-based-nanoparticles-tbnps-a-review-on-recent-advancement
#28
REVIEW
Sourav Mohanto, Aritra Biswas, Amol Dilip Gholap, Shadma Wahab, Adrija Bhunia, Sagnik Nag, Mohammed Gulzar Ahmed
The scientific world is increasingly focusing on rare earth metal oxide nanomaterials due to their consequential biological prospects, navigated by breakthroughs in biomedical applications. Terbium belongs to rare earth elements (lanthanide series) and possesses remarkably strong luminescence at lower energy emission and signal transduction properties, ushering in wide applications for diagnostic measurements (i.e., bioimaging, biosensors, fluorescence imaging, etc.) in the biomedical sectors. In addition, the theranostic applications of terbium-based nanoparticles further permit the targeted delivery of drugs to the specific site of the disease...
April 22, 2024: ACS Biomaterials Science & Engineering
https://read.qxmd.com/read/38643351/synthesis-docking-study-and-antitumor-evaluation-of-benzamides-and-oxadiazole-derivatives-of-3-phenoxybenzoic-acid-as-vegfr-2-inhibitors
#29
JOURNAL ARTICLE
Mohammad H Heriz, Ammar A R Mahmood, Salem R Yasin, Khaled M Saleh, Mai F AlSakhen, Sana I Kanaan, Nisreen Himsawi, Abdulrahman M Saleh, Lubna H Tahtamouni
Current chemotherapeutic agents have several limitations, including lack of selectivity, the development of undesirable side effects, and chemoresistance. As a result, there is an unmet need for the development of novel small molecules with minimal side effects and the ability to specifically target tumor cells. A new series of 3-phenoxybenzoic acid derivatives, including 1,3,4-oxadiazole derivatives (4a-d) and benzamides derivatives (5a-e) were synthesized; their chemical structures were confirmed by Fourier-transform infrared spectroscopy, 1 H nuclear magnetic resonance (NMR), 13 C NMR, and mass spectra; and various physicochemical properties were determined...
May 2024: Drug Development Research
https://read.qxmd.com/read/38642186/magnetism-and-electronic-properties-of-co-n-mop-n%C3%A2-%C3%A2-1%C3%A2-%C3%A2-5-cluster-a-dft-study
#30
JOURNAL ARTICLE
Tinghui Wu, Zhigang Fang, Jingli Song, Li'e Liu, Jia Song
CONTEXT: Hydrogen has emerged as a promising clean energy carrier, underscoring the imperative need to comprehend its adsorption mechanisms. This study delves into the magnetic and electronic properties of Co-Mo-P clusters, aiming to unveil their catalytic potential in hydrogen production. Employing density functional theory (DFT), we optimized cluster configurations and scrutinized their magnetic behaviors. Our investigation unveiled 16 stable configurations of the Con MoP (n = 1 ~ 5) cluster, predominantly in steric forms...
April 20, 2024: Journal of Molecular Modeling
https://read.qxmd.com/read/38641696/observation-of-giant-non-reciprocal-charge-transport-from-quantum-hall-states-in-a-topological-insulator
#31
JOURNAL ARTICLE
Chunfeng Li, Rui Wang, Shuai Zhang, Yuyuan Qin, Zhe Ying, Boyuan Wei, Zheng Dai, Fengyi Guo, Wei Chen, Rong Zhang, Baigeng Wang, Xuefeng Wang, Fengqi Song
Symmetry breaking in quantum materials is of great importance and can lead to non-reciprocal charge transport. Topological insulators provide a unique platform to study non-reciprocal charge transport due to their surface states, especially quantum Hall states under an external magnetic field. Here we report the observation of non-reciprocal charge transport mediated by quantum Hall states in devices composed of the intrinsic topological insulator Sn-Bi1.1 Sb0.9 Te2 S, which is attributed to asymmetric scattering between quantum Hall states and Dirac surface states...
April 19, 2024: Nature Materials
https://read.qxmd.com/read/38641656/mnfe-2-o-4-nh-2-hkust-1-mof-magnetic-composite-as-a-novel-sorbent-for-efficient-dye-removal-fabrication-characterization-and-isotherm-studies
#32
JOURNAL ARTICLE
Masoumeh Mohammadnejad, Sedigheh Alizadeh
Dye in industrial wastewater is one of the most serious environmental concerns due to its potentially harmful effects on human health. Many industrial dyes are carcinogenic, toxic and teratogenic. Removal and recovery of hazardous dyes from the effluents requires efficient adsorbents. In this study, magnetic adsorbent MnFe2 O4 -NH2 -HKUST-1 was synthesized to remove methylene blue and crystal violet dyes from aqueous solutions. The synthesized adsorbent was characterized using FTIR, XRD, BET, VSM, SEM, TGA and Zeta potential techniques...
April 20, 2024: Scientific Reports
https://read.qxmd.com/read/38640531/the-impact-of-magnetic-field-assisted-freeze-thaw-treatment-on-the-quality-of-foxtail-millet-sourdough-and-steamed-bread
#33
JOURNAL ARTICLE
Wei Zhao, Jintong Weng, Xiaodi Zhang, Yunting Wang, Pengliang Li, Lei Yang, Qinghai Sheng, Jingke Liu
Foxtail millet and sourdough are used to make foxtail millet sourdough steamed bread to improve the flavor and taste. Compared with the conventional freeze-thaw treatment (CFT), the effect of magnetic field-assisted freeze-thaw treatment (MFT) on the storage quality of foxtail millet sourdough and steamed bread is explored. The results showed that compared with CFT, MFT shortened the phase transition time of dough; decreased the water loss rate, the water mobility, and the freezable water content; increased the fermentation volume; stabilized the rheological properties; and minimized the damage of freezing and thawing to the secondary structure and microstructure of the gluten...
April 2, 2024: Food Chemistry
https://read.qxmd.com/read/38640460/controlled-release-of-the-anticancer-drug-cyclophosphamide-from-a-superparamagnetic-%C3%AE-cyclodextrin-nanosponge-by-local-hyperthermia-generated-by-an-alternating-magnetic-field
#34
REVIEW
Sebastián Salazar Sandoval, Patricia Díaz-Saldívar, Ingrid Araya, Freddy Celis, Diego Cortés-Arriagada, Ana Riveros, Carlos Rojas-Romo, Carolina Jullian, Nataly Silva, Nicolás Yutronic, Marcelo J Kogan, Paul Jara
A β-cyclodextrin (β-CD) nanosponge (NS) was synthesized using diphenyl carbonate (DPC) as a cross-linker to encapsulate the antitumor drug cyclophosphamide (CYC), thus obtaining the NSs-CYC system. The formulation was then associated with magnetite nanoparticles (MNPs) to develop the MNPs-NSs-CYC ternary system. The formulations mentioned above were characterized to confirm the deposition of the MNPs onto the organic matrix and that the superparamagnetic nature of the MNPs was preserved upon association...
April 19, 2024: ACS Applied Materials & Interfaces
https://read.qxmd.com/read/38640367/floquet-fermi-liquid
#35
JOURNAL ARTICLE
Li-Kun Shi, Oles Matsyshyn, Justin C W Song, Inti Sodemann Villadiego
We demonstrate the existence of a nonequilibrium "Floquet Fermi liquid" state arising in partially filled Floquet Bloch bands weakly coupled to ideal fermionic baths, which possess a collection of "Floquet Fermi surfaces" enclosed inside each other, resembling matryoshka dolls. We elucidate several properties of these states, including their quantum oscillations under magnetic fields which feature slow beating patterns of their amplitude reflecting the different areas of the Floquet Fermi surfaces, consistent with those observed in microwave induced resistance oscillation experiments...
April 5, 2024: Physical Review Letters
https://read.qxmd.com/read/38640239/carbon-capture-in-polymer-based-electrolytes
#36
JOURNAL ARTICLE
Yang Wang, Tony G Feric, Jing Tang, Chao Fang, Sara T Hamilton, David M Halat, Bing Wu, Hasan Celik, Guanhe Rim, Tara DuBridge, Julianne Oshiro, Rui Wang, Ah-Hyung Alissa Park, Jeffrey A Reimer
Nanoparticle organic hybrid materials (NOHMs) have been proposed as excellent electrolytes for combined CO2 capture and electrochemical conversion due to their conductive nature and chemical tunability. However, CO2 capture behavior and transport properties of these electrolytes after CO2 capture have not yet been studied. Here, we use a variety of nuclear magnetic resonance (NMR) techniques to explore the carbon speciation and transport properties of branched polyethylenimine (PEI) and PEI-grafted silica nanoparticles (denoted as NOHM-I-PEI) after CO2 capture...
April 19, 2024: Science Advances
https://read.qxmd.com/read/38640054/magnetic-resonance-electrical-properties-tomography-based-on-modified-physics-informed-neural-network-and-multiconstraints
#37
JOURNAL ARTICLE
Guohui Ruan, Zhaonian Wang, Chunyi Liu, Ling Xia, Huafeng Wang, Li Qi, Wufan Chen
This paper presents a novel method based on leveraging physics-informed neural networks for magnetic resonance electrical property tomography (MREPT). MREPT is a noninvasive technique that can retrieve the spatial distribution of electrical properties (EPs) of scanned tissues from measured transmit radiofrequency (RF) in magnetic resonance imaging (MRI) systems. The reconstruction of EP values in MREPT is achieved by solving a partial differential equation derived from Maxwell's equations that lacks a direct solution...
April 19, 2024: IEEE Transactions on Medical Imaging
https://read.qxmd.com/read/38639483/design-of-excellent-mechanical-performances-and-magnetic-refrigeration-via-in-situ-forming-dual-phase-alloys
#38
JOURNAL ARTICLE
Hong Zhong, Yuzhu Song, Feixiang Long, Hao Lu, Minjun Ai, Tianyu Li, Yonghao Yao, Yuki Sakai, Masahito Ikeda, Kazuki Takahashi, Masaki Azuma, Fengxia Hu, Xianran Xing, Jun Chen
Magnetic refrigeration technology can achieve higher energy efficiency based on the magnetocaloric effect. However, the practical application of MCE materials is hindered by their poor mechanical properties, making them challenging to process into devices. Conventional strengthening strategies usually lead to a trade-off with refrigeration capacity reduction. Here, a novel design is presented to overcome this dilemma by forming dual-phase alloys through in-situ precipitation of a tough magnetic refrigeration phase within an intermetallic compound with excellent MCE...
April 19, 2024: Advanced Materials
https://read.qxmd.com/read/38639064/magnetism-of-single-doped-paramagnetic-tin-clusters-studied-using-temperature-dependent-stern-gerlach-experiments-with-enhanced-sensitivity-impact-of-the-diamagnetic-ligand-field-and-paramagnetic-dopant
#39
JOURNAL ARTICLE
Filip Rivic, Rolf Schäfer
In this work, the magnetic properties of tetrel clusters Sn N TM, which are singly doped with transition metals (TM), are investigated. On the one hand, the number of tetrel atoms ( N = 11, 12, 14 and 17 with TM = Mn) is varied; on the other hand, different transition metals ( N = 14, TM = Cr, Mn, Fe) are studied. Magnetic deflection experiments under cryogenic conditions show that the variation of the number of tetrel atoms strongly changes the magnetic properties of the Mn-doped clusters. It is observed that Sn12 Mn, Sn11 Mn and Sn14 Mn partially show super-atomic behaviour, while spin relaxation occurs in Sn17 Mn...
April 19, 2024: Physical Chemistry Chemical Physics: PCCP
https://read.qxmd.com/read/38639061/ligand-dependent-folding-and-unfolding-dynamics-and-free-energy-landscapes-of-acylphosphatase
#40
JOURNAL ARTICLE
Li Yuan, Hao Sun, Xuening Ma, Yang Wang, Zilong Guo, Xingyu Qi, Shimin Le, Hu Chen
Acylphosphatase (AcP) is an enzyme which catalyses the hydrolysis of acylphosphate. The binding with the phosphate ion (Pi) assumes significance in preserving both the stability and enzymatic activity of AcP. While previous studies using single molecule force spectroscopy explored the mechanical properties of AcP, the influence of Pi on its folding and unfolding dynamic behaviors remains unexplored. In this work, using stable magnetic tweezers, we measured and compared the force-dependent folding and unfolding rates of AcP in the Tris buffer and phosphate buffer within a force range from 2 pN to 40 pN...
April 19, 2024: Soft Matter
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