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  1. 981

    Structural insights and biomedical potential of biosynthesized silver nanoparticles: antibacterial activity, anti-biofilm and cancer cell inhibition by Ikram Jemel, Najeh Krayem, Hajer Jlidi, Abir Ben Bacha, Mona Alonazi, Raihane Charguia, Areej Ali Alzahrani, Sami Aifa, Sami Mnif

    Published 2025-07-01
    “…Results XRD confirmed the face-centered cubic (fcc) crystal structure of AgNPs, with peaks at (111), (200), (220), and (311) planes. …”
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  2. 982

    Structural and optical analysis of GaN and InxGa1-xN photodetectors fabricated by PEALD on silicon by D. Tepatzi-Xahuentitla, D. Cortes-Salinas, D.A. Granada-Ramírez, Y. Panecatl Bernal, M. Pérez-González, S.A. Tomás, A.A. Durán-Ledezma, Salvador Alcantara-Iniesta, M.L. Gómez-Herrera, J.G. Mendoza-Alvarez, J. Alvarado

    Published 2025-09-01
    “…The optical, structural, morphological and chemical properties of Gallium nitride (GaN) and Indium Gallium nitride (InxGa1-xN) thin films grown on Si (100) by plasma-assisted atomic layer deposition (PEALD) technique at a temperature of 300°C. …”
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  3. 983

    Structural basis for C. elegans pairing center DNA binding specificity by the ZIM/HIM-8 family proteins by Meili Li, Chengming Zhu, Zheng Xu, Mingjing Xu, Yan Kuang, Xinhao Hou, Xinya Huang, Mengqi Lv, Yongrui Liu, Yong Zhang, Ziyan Xu, Xu Han, Suman Wang, Yunyu Shi, Shouhong Guang, Fudong Li

    Published 2024-11-01
    “…These structures demonstrated the ZF1-2-CTD folds as an integrated structural unit crucial for its DNA binding specificity. …”
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    Article
  4. 984

    Mechanism of fumonisin B1 on growth performance and intestinal structural integrity of juvenile grass carp (Ctenopharyngodon idella) by Daiyu Chen, Weidan Jiang, Pei Wu, Yang Liu, Hongmei Ren, Xiaowan Jin, Xiaoqiu Zhou, Lin Feng

    Published 2025-06-01
    “…Furthermore, increased levels of intestinal sphinganine (Sa), sphingosine (So), and FB1 residues were observed, along with disruptions in intestinal tissue structure and elevated serum D-lactic acid levels (P < 0.05). …”
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    Article
  5. 985

    LSE-CVCNet: A Generalized Stereoscopic Matching Network Based on Local Structural Entropy and Multi-Scale Fusion by Wenbang Yang, Yong Zhao, Ye Gu, Lu Huang, Jianhua Li, Jianchuan Zhao

    Published 2025-06-01
    “…By integrating three key innovations—local structural entropy (LSE) to quantify structural uncertainty in disparity maps and guide adaptive attention, a cross-image attention mechanism (CIAM-T) to asymmetrically extract features from left/right images for improved feature alignment, and multi-resolution cost volume fusion (MRCV-F) to preserve fine-grained details through multi-scale fusion—LSE-CVCNet enhances disparity estimation accuracy and cross-domain generalization. …”
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    Article
  6. 986

    The role of intrinsically disordered regions of SARS-CoV-2 nucleocapsid and non-structural protein 1 proteins by Getasew Shitaye, Getasew Shitaye, Nataliia Ventserova, Gianluca D’Abrosca, Martina Dragone, Eunice Wairimu Maina, Roberto Fattorusso, Rosa Iacovino, Luigi Russo, Carla Isernia, Carla Isernia, Gaetano Malgieri, Gaetano Malgieri

    Published 2025-06-01
    “…Furthermore, we also highlight the potential involvement of IDRs in the viral-host protein interaction and host cellular machinery. Thus, shading lights on the dark proteome of the virus and looking for therapeutic approaches beyond the classic structure-function paradigm may contribute to the efforts sparking the quest for therapeutics.…”
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    Article
  7. 987

    Study of running engines inertial and gyroscopic properties influence on the dynamic system engine – pylon – wing structural capabilities by V. V. Ovchinnikov, Yu. V. Petrov

    Published 2020-07-01
    “…The results of theoretical and experimental research show that with some engine attachment to the pylon structural modification it becomes possible to use the engines inertial and gyroscopic properties to absorb these oscillations. …”
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    Article
  8. 988

    Face Anti-spoofing Detection Based on Novel Encoder Convolutional Neural Network and Texture’s Grayscale Structural Information by Marwa Radad, Amira E. Enab, Salah S. Elagooz, Nawal A. El-Fishawy, Mohamed A. El-Rashidy

    Published 2025-07-01
    “…The texture descriptors of LBP and LTP are utilized to extract the texture's grayscale structural information to overcome different environmental situations. …”
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    Article
  9. 989

    A Comparative Study of the Structural, Morphological, and Functional Properties of Native Potato Starch and Spray-Dried Potato Starch by Anna Marinopoulou, Maria Zoumaki, Dimitrios Sampanis, Vassilis Karageorgiou, Stylianos Raphaelides, Athanasios Goulas

    Published 2025-04-01
    “…XRD, DSC, and FTIR revealed the formation of a semi-crystalline to amorphous structure in the spray-dried starch powders. Microscopic examination showed that the starch granules of native potato starch were spherical and regular in shape, while spray-dried (SD) starch powders displayed wrinkled granules. …”
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  10. 990
  11. 991
  12. 992

    Achieving tip-based down-milling forming of nanograting structures with variable heights through precise control of nano revolving trajectories by Bo Xue, Huilin Yan, Zhengchang Liu, Yongda Yan, Yanquan Geng

    Published 2025-01-01
    “…With the advantage of high light intensity due to low scatting, structural colors generated by metallic diffraction nanograting structures, used as a type of diffractive optical element, have shown great potential for application in industrial and scientific research fields such as optical anti-counterfeiting and sensors. …”
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  13. 993

    Low-frequency electrostatic structures associated with dust-acoustic waves in magnetized dusty plasmas in the presence of κ-nonthermal electrons and positrons by F. Faisal, S. Sultana, A. A. Mamun

    Published 2025-02-01
    “…Properties of low-frequency electrostatic structures (solitary and shock waves) associated with dust-acoustic waves (DAWs) in a magnetized dusty plasma in the presence of κ-distributed positrons and electrons have been examined. …”
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  14. 994
  15. 995

    Chunsheng Yang, Yiping Zhang, Wayne Wenchao He, L2 Acquisition of Chinese de Structures: A Comparative Study by Wenhua Jin, Chunsheng Yang, Yiping Zhang, Wayne Wenchao He

    Published 2025-07-01
    “…Findings of this study shed new light on the understanding of L2 acquisition of Chinese de structures, revealing its general across-the-board patterns, providing independent evidence for the much-debated easiness ranking of Chinese relative clauses from the perspective of the nominalization acquisition, and presenting new info for L2 Chinese feature processing. …”
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    Article
  16. 996

    The introduction and development of reinforced concrete structures in modern Suzhou(1919–1933): a case study of the Cline Hall at Soochow University by Xi Chen, Qinyi Shi, Shiruo Wang

    Published 2025-03-01
    “…The introduction of reinforced concrete structures to China occurred in the late 19th century via Shanghai and other cities. …”
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  17. 997

    Multilevel Hollow‐Structured Particles through Halogen‐Bond Regulated Polymer Assembly under 3D Confinement by Xihuang Zheng, Yi Zhao, Yuping Zhang, Renhua Deng, Baohui Li, Senbin Chen, Jintao Zhu

    Published 2024-11-01
    “…Abstract Engineering of hollow particles with tunable internal structures often requires complicated processes and/or invasive cleavage. …”
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  18. 998

    Design and Characterization of 2.5D Nature-Inspired Infill Structures under Out-Plane Quasi-Static Loading Condition by Dara Ashok, M. V. A. Raju Bahubalendruni

    Published 2023-01-01
    “…Photopolymer resin is used as the material for the structures, which are created using a digital light processing (DLP) method under AM technology. …”
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  19. 999
  20. 1000

    Simulation study of reducing reflection losses in all-perovskite tandem solar cells through dual serrated structure by Wenjiang Ye, Aoyue Chen, Ping Fu, Jiang Tang, Chao Chen

    Published 2025-04-01
    “…By adjusting the geometry of the periodic serrated structures at both the front interface and the back electrode, we enhance light absorption in the wide-bandgap perovskite layer and promote light scattering in the narrow-bandgap perovskite layer. …”
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