Showing 101 - 120 results of 998 for search '"silicon"', query time: 0.05s Refine Results
  1. 101

    A New Mechanism of Silicone Oil-Induced Glaucoma and Its Management by Harsh Kumar, Dinesh Talwar, Mithun Thulasidas, Surbi Taneja

    Published 2022-01-01
    “…To describe a case of secondary acute angle closure glaucoma due to silicone oil migration into the posterior chamber causing entrapment of aqueous and its successful management. …”
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    Article
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    AG-Based Thick-Film Front Metallization of Silicon Solar Cells by M. Prudenziati, L. Moro, B. Morten, F. Sirotti, L. Sardi

    Published 1989-01-01
    “…The evolution of microstructure and electrical properties of silver-based thick-film metallizations of silicon solar cells prepared by infrared firing processes has been investigated. …”
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  5. 105
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    Heterogeneous integration of amorphous silicon carbide on thin film lithium niobate by Zizheng Li, Naresh Sharma, Bruno Lopez-Rodriguez, Roald van der Kolk, Thomas Scholte, Hugo Voncken, Jasper van der Boom, Simon Gröblacher, Iman Esmaeil Zadeh

    Published 2025-01-01
    “…Most importantly, the fabrication only involves a standard, silicon-compatible, reactive ion etching step and leaves the LiNbO3 intact, hence its compatibility with standard foundry processes. …”
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    Fast timing silicon R&D for the future Electron-Ion Collider by Li Xuan, Renner Eric, Liu Ming, Sondheim Walter, Sanchez Carlos Solans, Nuñez Marcos Vazquez, Gonzalez Vicente, Morales Yasser Corrales

    Published 2025-01-01
    “…., MALTA2) based fast timing silicon tracking detector (FMT) has been proposed to provide additional hits for track reconstruction in the forward region at the EIC to improve the overall track reconstruction quality. …”
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    Article
  10. 110

    Vertical photon sorting by stacking silicon and germanium nanopillars for broadband absorbers by Xu Rongyang, Morimoto Takumi, Takahara Junichi

    Published 2023-03-01
    “…Hence, this study realizes broadband absorption via the stacking of amorphous silicon and germanium nanopillars with the same width at different peak absorption wavelengths. …”
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    Article
  11. 111

    Adsorption of Cr(VI) onto Hybrid Membrane of Carboxymethyl Chitosan and Silicon Dioxide by Yanling Deng, Naoki Kano, Hiroshi Imaizumi

    Published 2017-01-01
    “…In this study, a new adsorbent material was synthesized by using carboxymethyl chitosan and silicon dioxide. The hybrid membrane was used as an adsorbent for the removal of Cr(VI) from aqueous solutions. …”
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    Silicon: A Review of Its Potential Role in the Prevention and Treatment of Postmenopausal Osteoporosis by Charles T. Price, Kenneth J. Koval, Joshua R. Langford

    Published 2013-01-01
    “…Silicon improves bone matrix quality and facilitates bone mineralization. …”
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    Article
  15. 115

    TECHNOLOGY OF LASER CUTTING OF SILICON WAFERS INTO ORGANIC LIGHT-EMITTING DIODE CHIPS by V. S. Kondratenko, V. I. Ivanov

    Published 2016-06-01
    “…This work aimed at increasing the product yield in cutting a silicon device wafer into chips by a method based on laser controlled thermocracking (LCT). …”
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    Followup of a Dog with an Intraocular Silicone Prosthesis Combined with an Extraocular Glass Prosthesis by Gwendolyna Romkes, Johanna Corinna Eule

    Published 2012-01-01
    “…Because of unpredictable corneal changes, evisceration and implantation of a silicone prosthesis does not always lead to a satisfying cosmetic result. …”
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    Article
  19. 119

    Burst Laser-Driven Plasmonic Photochemical Nanolithography of Silicon with Active Structural Modulation by Liping Shi, Ji Yan, Shuyao Zhang, Panpan Niu, Jiao Geng, Günter Steinmeyer

    Published 2025-01-01
    “…Here, in terms of a rarely explored laser-induced photochemical mechanism for nonablative structuring, we demonstrate manufacturing of sub-wavelength oxidative grating structures on silicon films with active structural modulation. In this scenario, the plasmonic field plays a pivotal role in dragging oxygen ions from surface into the silicon, greatly speeding up oxidation rates. …”
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  20. 120