Showing 341 - 360 results of 641 for search '"nanomaterial"', query time: 0.06s Refine Results
  1. 341

    Characterization and optimization of cerium oxide nanoparticle-doped cellulose acetate films using the Box-Behnken Design by Lívia Viana Aguiar de Oliveira, Noemi Raquel Checca Huaman, Sergio Neves Monteiro, Ulisses Oliveira Costa, Letícia Vitorazi

    Published 2025-03-01
    “…The integration of BBD with advanced nanomaterial characterization provides a data-driven framework for optimizing multifunctional materials.…”
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    Article
  2. 342

    A Trihybrid Approach for Enhancing Crude Oil Recovery Using Effervescent‐Tablet‐Based Nanofluids by Naser Ali, Husain Bahzad, Nawaf F. Aljuwayhel, Shikha A. Ebrahim, Abbas T. Hamoud, Hussain Al‐Mazidi, Huda B. Al‐Naser, Mohammad A. Al‐Attar, Sohaib Kholosy, Ayas Al‐Zanki, Mohammad Banyan, Mumayaz Alenezi

    Published 2025-02-01
    “…The concentration and stability of the dispersed nanomaterial significantly affect the amount, properties, and composition of the recovered oil. …”
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    Article
  3. 343

    Non Linear Thermal Radiation Analysis of Electromagnetic Chemically Reacting Ternary Nanofluid Flow over a Bilinear Stretching Surface by Shobha V, Hasan Mulki, Baskar P, S. Suresh Kumar Raju, Saleh Mahmoud, Mostafa Abdrabboh, S.V.K. Varma

    Published 2025-03-01
    “…Background: The study investigates three-dimensional boundary layer flow in a reactive, rotating nanomaterial liquid, emphasizing non-linear thermal diffusion and radiation effects over a stretchable surface influenced by a Lorentz force. …”
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    Article
  4. 344

    Artificial intelligence analysis of thermal energy for convectively heated ternary nanofluid flow in radiated channel considering viscous dissipations aspects by Hamid Qureshi, Amjad Ali Pasha, Muhammad Asif Zahoor Raja, Zahoor Shah, Salem Algarni, Talal Alqahtani, Waqar Azeem Khan, Moinul Haq

    Published 2025-02-01
    “…With focus on technological advancements in the field of thermal heat, these studies show great promise of THF in enhancing rate of heat transfer-issues which complete several energy storage systems, cooling techniques in aeronautics as well as electric vehicle operational convenience via thermal layout.A synergetic composition of three distinct nanomaterial oxides of Copper, Iron and Silicon in engine oil, contributes unique thermophysical character in thermal management. …”
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    Article
  5. 345

    Carboxylated Graphene: An Innovative Approach to Enhanced IgA-SARS-CoV-2 Electrochemical Biosensing by Luciana de Souza Freire, Ariamna María Dip Gandarilla, Yonny Romaguera Barcelay, Camila Macena Ruzo, Barbara Batista Salgado, Ana P. M. Tavares, Francisco Xavier Nobre, Julio Nino de Souza Neto, Spartaco Astolfi-Filho, Ștefan Țălu, Pritesh Lalwani, Niranjan Patra, Walter Ricardo Brito

    Published 2025-01-01
    “…This device shows considerable potential because of its fast response time, miniaturized design facilitated by SPCEs, reduced sample volume requirements, high sensitivity and specificity, low detection limits, and signal enhancement achieved through nanomaterial integration.…”
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    Article
  6. 346

    Development of a Cationic Polymeric Micellar Structure with Endosomal Escape Capability Enables Enhanced Intramuscular Transfection of mRNA-LNPs by Siyuan Deng, Han Shao, Hongtao Shang, Lingjin Pang, Xiaomeng Chen, Jingyi Cao, Yi Wang, Zhao Zhao

    Published 2024-12-01
    “…Consequently, this polymer-based nanomaterial holds immense potential for clinical applications in mRNA-based vaccines.…”
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    Article
  7. 347

    PLGA-based biocompatible nanoparticles improved anti-breast tumor efficacy of 1,25(OH)2D3 through the SOCS3/STAT3/EMT signaling axis by JinJing Pan, Ping Wang, Linghong Xiong, Wenqing Yang, Jie Li, Kai Yang, Bingyan Li

    Published 2025-03-01
    “…This elevated dosage could lead to significant side effects, thereby constraining its practical application in clinical settings. The FDA-approved nanomaterial poly (lactic-co-glycolic acid) (PLGA) had the potential for utilization in clinical settings. …”
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    Article
  8. 348
  9. 349

    LcProt: Proteomics‐based identification of plasma biomarkers for lung cancer multievent, a multicentre study by Hengrui Liang, Runchen Wang, Ran Cheng, Zhiming Ye, Na Zhao, Xiaohong Zhao, Ying Huang, Zhanpeng Jiang, Wangzhong Li, Jianqi Zheng, Hongsheng Deng, Yu Jiang, Yuechun Lin, Yun Yan, Lei Song, Jie Li, Xin Xu, Wenhua Liang, Jun Liu, Jianxing He

    Published 2025-01-01
    “…Key points Our study developed an innovative nanomaterial, Zeolite NaY, which addressed the masking effect and improved the depth of the proteome. …”
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    Article
  10. 350

    Insights into the Enhancement Mechanisms of Molten Salt Nanofluids by Xiong Yaxuan, Wang Huixiang, Wang Zhenyu, Wu Yuting, Xu Qian, Wang Gang, Li Chuan, Ding Yulong, Ma Chongfang

    Published 2022-01-01
    “…The addition of nanomaterials to molten salts can significantly improve their thermal performance. …”
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    Article
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  15. 355

    On the Stability of Graphene-Based Aqueous Dispersions and Their Performance in Cement Mortar by Teresa Gerace, Sebastiano Candamano, Simone Bartucci, Carlo Poselle Bonaventura, Alfonso Policicchio, Raffaele Giuseppe Agostino, Milena Marroccoli, Antonio Telesca, Mariano Davoli, Andrea Scarcello, Lorenzo S. Caputi, Daniela Pacilè

    Published 2025-01-01
    “…Cement composites containing different carbon nanomaterials, namely graphene technical grade, graphene super grade, and graphene oxide, up to 1.0% by weight of cement, were prepared. …”
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    Article
  16. 356

    Prospects of Nanobiomaterials for Biosensing by Ravindra P. Singh

    Published 2011-01-01
    “…Progress and development in biosensor development will inevitably focus upon the technology of the nanomaterials that offer promise to solve the biocompatibility and biofouling problems. …”
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    Article
  17. 357

    Effects of Exposure to Semiconductor Nanoparticles on Aquatic Organisms by Kenton Leigh, Jennifer Bouldin, Roger Buchanan

    Published 2012-01-01
    “…Because of their unique physical, optical, and mechanical properties, nanomaterials hold great promise in improving on a wide variety of current technologies. …”
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