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Journal articles on the topic 'Iron phosphorus trisulfide'

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1

Bernasconi, M., G. Benedek, and L. Miglio. "Phonon dispersion curves and densities of lithium-intercalated iron phosphorus trisulfide." Il Nuovo Cimento D 12, no. 8 (1990): 1061–78. http://dx.doi.org/10.1007/bf02451950.

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2

Budniak, Adam K., Szymon J. Zelewski, Magdalena Birowska, et al. "Spectroscopy and Structural Investigation of Iron Phosphorus Trisulfide—FePS 3." Advanced Optical Materials 10, no. 7 (2022): 2102489. http://dx.doi.org/10.1002/adom.202102489.

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3

Wang, Xingzhi, Kezhao Du, Yu Yang Fredrik Liu, et al. "Raman spectroscopy of atomically thin two-dimensional magnetic iron phosphorus trisulfide (FePS 3 ) crystals." 2D Materials 3, no. 3 (2016): 031009. http://dx.doi.org/10.1088/2053-1583/3/3/031009.

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4

Lenus, Syama, Pallavi Thakur, Sai Smruti Samantaray, Tharangattu N. Narayanan, and Zhengfei Dai. "Two-Dimensional Iron Phosphorus Trisulfide as a High-Capacity Cathode for Lithium Primary Battery." Molecules 28, no. 2 (2023): 537. http://dx.doi.org/10.3390/molecules28020537.

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Metal phosphorus trichalcogenide (MPX3) materials have aroused substantial curiosity in the evolution of electrochemical storage devices due to their environment-friendliness and advantageous X-P synergic effects. The interesting intercalation properties generated due to the presence of wide van der Waals gaps along with high theoretical specific capacity pose MPX3 as a potential host electrode in lithium batteries. Herein, we synthesized two-dimensional iron thio-phosphate (FePS3) nanoflakes via a salt-template synthesis method, using low-temperature time synthesis conditions in single step.
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5

Xu, Qinqin, Zheng Zhou, and Xiaoli Chai. "Micro- and Nano-Bubbles Enhanced the Treatment of an Urban Black-Odor River." Sustainability 15, no. 24 (2023): 16695. http://dx.doi.org/10.3390/su152416695.

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Black-odor water is prevalent in southeastern coastal regions of China, compromising both the aquatic ecosystem and urban aesthetics. Micro- and nano-bubbles (MNBs) aeration, identified as an innovative approach, offers potential improvements in water ecological function. This study introduces and implements an MNBs technique to rehabilitate an urban black-odor river. Results indicate that MNBs aeration achieved a significantly higher increment rate of dissolved oxygen (89.4%) and higher removal efficiencies of biological oxygen demand (54.4%), chemical oxygen demand (39.0%), ammonia nitrogen
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6

Wang, Han, Zhongjian Li, Yan Li, et al. "An exfoliated iron phosphorus trisulfide nanosheet with rich sulfur vacancy for efficient dinitrogen fixation and Zn-N2 battery." Nano Energy 81 (March 2021): 105613. http://dx.doi.org/10.1016/j.nanoen.2020.105613.

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7

Ahmad, H., M. K. A. Zaini, M. Z. Samion та N. Yusoff. "Generation of Mode-Locked Thulium-Doped Fiber Laser in 2.0-μm Wavelength Operation by Polymer-Coated Iron Phosphorus Trisulfide (FePS3)-Based Saturable Absorber". IEEE Journal of Quantum Electronics 58, № 2 (2022): 1–8. http://dx.doi.org/10.1109/jqe.2022.3141388.

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8

Kuzminskii, Y. V., B. M. Voronin, and N. N. Redin. "Iron and nickel phosphorus trisulfides as electroactive materials for primary lithium batteries." Journal of Power Sources 55, no. 2 (1995): 133–41. http://dx.doi.org/10.1016/0378-7753(94)02177-5.

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9

Yao-Dong, Dai, Wang Lin, Yang Ya-Xin, He Yun, Huang Hong-Bo, and Xia Yuan-Fu. "A M ssbauer study of the magnetic coupling in iron phosphorous trisulfides." Chinese Physics 13, no. 10 (2004): 1652–56. http://dx.doi.org/10.1088/1009-1963/13/10/013.

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10

Chang, Aldrin G., Liang-Wei Lan, Yao-Jui Chan, et al. "Trigonal distortion in zigzag-antiferromagnet iron phosphorus trisulfide." Physical Review B 106, no. 12 (2022). http://dx.doi.org/10.1103/physrevb.106.125412.

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11

Nitschke, Jonah Elias, and Mirko Cinchetti. "Valence band electronic structure of the van der Waals antiferromagnet FePS3." Materials Today Electronics 6 (September 11, 2023). https://doi.org/10.5281/zenodo.10890953.

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Antiferromagnetic van der Waals materials have gained a lot of interest in recent years. They can be exfoliated down to the two-dimensional (2D) limit while potentially preserving intriguing properties of antiferromagnets, such as insensitivity to external magnetic fields and ultrafast spin dynamics in the THz range. The investigation of the electronic band structure of these materials is crucial to understand their behavior and thus to identify paths for future applications. Here, we investigate the valence band structure of one of the most studied 2D antiferromagnets –iron phosphorus t
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12

Disiena, Matthew N., Christopher Luth, S. S. Teja Nibhanupudi, et al. "Proximity effects of 2D antiferromagnets on superconductivity in exfoliated niobium disulfide." Journal of Applied Physics 134, no. 2 (2023). http://dx.doi.org/10.1063/5.0157393.

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The conventional theory of superconductivity holds that Cooper pairs form due to electron–phonon coupling; however, this description may not be adequate to describe certain unconventional superconductors such as cuprates and iron chalcogenides. In these unconventional superconductors, it has been proposed that spin fluctuations may be responsible for the formation of Cooper pairs. In this study, we explore spin interactions in the transition metal, dichalcogenide niobium disulfide, induced through proximity effects by fabricating antiferromagnet/NbS2 heterostructures. We tested three different
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13

ElMeligi, Amin A., Shaymaa E. El-shafe, Amal Abdel-karim, Hisham A. Saleh, and Mahmoud S. Tohamy. "Investigating Magnetic and Optical Properties of Layered Iron Phosphorus Trisulfide Intercalated with Organic Compounds." Physica Scripta, December 12, 2024. https://doi.org/10.1088/1402-4896/ad9e49.

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Abstract This study focuses on testing the optical and magnetic properties of the layered iron phosphorous trisulfide nanomaterial (FePS3) with methyl viologen (MV) (1,1′-dimethyl-4,4′-bipyridilium dichloride) and butyl amine (BA). The materials were characterized using X-ray diffraction (XRD), Scanning electron microscope (SEM), transmittance electron microscope (TEM), Infrared spectroscopy (IR), optical measurement, and magnetic property measurements (VSM). SEM image shows lamellar and layered structure of the FePS3, and TEM images represents nanoscale particles, approximately 14-26 nm in si
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14

Ahmad, H., M. K. A. Zaini, and M. Z. Samion. "Enhanced four-wave mixing with polymer-coated Iron phosphorus trisulfide (FePS3) arc-shaped fiber." Optical and Quantum Electronics 55, no. 1 (2022). http://dx.doi.org/10.1007/s11082-022-04172-y.

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15

Wang, Yunong, S. M. Enamul Hoque Yousuf, Xiao-Xiao Zhang, and Philip X. L. Feng. "Two-dimensional FePS3 nanoelectromechanical resonators with local-gate electrostatic tuning at room temperature." Journal of Applied Physics 136, no. 23 (2024). https://doi.org/10.1063/5.0243387.

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Nanoelectromechanical systems (NEMS) enabled by two-dimensional (2D) magnetic materials are promising candidates for exploring ultrasensitive detection and magnetostrictive phenomena, thanks to their high mechanical stiffness, high strength, and ultralow mass. The resonance modes of such vibrating membrane NEMS can be probed optically and also manipulated mechanically via electrostatically induced strain. Electrostatic frequency tuning of 2D magnetic NEMS resonators is, thus, an important means of investigating magneto-mechanical coupling mechanisms. Toward realizing magneto-mechanical coupled
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16

Low, Mei Xian, Taimur Ahmed, Saurabh K. Saini, et al. "FePS3-MoS2 p-n junctions for broadband optoelectronics." npj 2D Materials and Applications 9, no. 1 (2025). https://doi.org/10.1038/s41699-025-00541-9.

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Abstract Broadband photodetectors and photovoltaic devices are crucial components in various optoelectronic applications, spanning self-powered photodetectors, solar energy harvesting and optical imaging systems, where optical sensitivity and efficient charge carrier generation are paramount. Two dimensional (2D) materials can be used to form p-n junctions for these applications, without crystal lattice or grain boundary constraints, which are common issues in bulk semiconductors. However, a key challenge lies in developing 2D heterojunctions that can efficiently harvest light across a broad s
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17

Wu, Binglan, Karim Harrath, Marshet Getaye Sendeku, et al. "Electrochemical evolution of a metal oxyhydroxide surface on two‐dimensional layered metal phosphorus trisulfides enables the oxidation of amine to nitrile." Carbon Energy, January 7, 2025. https://doi.org/10.1002/cey2.672.

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AbstractSelective oxidation of amines to imines through electrocatalysis is an attractive and efficient way for the chemical industry to produce nitrile compounds, but it is limited by the difficulty of designing efficient catalysts and lack of understanding the mechanism of catalysis. Herein, we demonstrate a novel strategy by generation of oxyhydroxide layers on two‐dimensional iron‐doped layered nickel phosphorus trisulfides (Ni1−xFexPS3) during the oxidation of benzylamine (BA). In‐depth structural and surface chemical characterizations during the electrocatalytic process combined with the
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