Editorial for Special Issue "Research on Friction, Wear and Corrosion Properties of Materials". [PDF]
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Achieving Maximum Chirality and Enhancing Third-Harmonic Generation via Quasi-Bound States in the Continuum in Nonlinear Metasurfaces. [PDF]
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Insights into Growing Silica Around Monocrystalline Magnetite Nanorods Leading to Colloids with Improved Magnetic Properties-Obstacles and Solutions. [PDF]
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Numerical Analysis of Bifacial Photovoltaic Panels Subjected to Repeated Loading. [PDF]
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Humidity Dependence of Tribochemical Wear of Monocrystalline Silicon
ACS Applied Materials & Interfaces, 2015The nanowear tests of monocrystalline silicon against a SiO2 microsphere were performed using an atomic force microscope in air as a function of relative humidity (RH=0%-90%) and in liquid water at a contact pressure of about 1.20 GPa. The experimental results indicated that RH played an important role in the nanowear of the Si/SiO2 interface.
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Friction-induced nanofabrication on monocrystalline silicon
Nanotechnology, 2009Fabrication of nanostructures has become a major concern as the scaling of device dimensions continues. In this paper, a friction-induced nanofabrication method is proposed to fabricate protrusive nanostructures on silicon. Without applying any voltage, the nanofabrication is completed by sliding an AFM diamond tip on a sample surface under a given ...
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Deformation of Monocrystalline Silicon under Nanoscratching
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Defects in Monocrystalline Silicon
2017The aggregation of instrinsic point defects (vacancies and Si interstitials) in monocrystalline silicon has a major impact on the functioning of electronic devices. While agglomeration of vacancies results in the formation of tiny holes (so-called voids, around 100 nm in size, which have almost no stress field), the aggregation of Si interstitials ...
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Micromirror Array of Monocrystalline Silicon
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GROWING MONOCRYSTALLINE SILICON
Materials of the International Scientific and Practical Conference dedicated to the 95th anniversary of Voronezh State Forest Engineering University named after G. F. Morozov and the 80th anniversary of the Victory in the Great Patriotic War of 1941-1945 «MODELING INFORMATION SYSTEMS AND TECHNOLOGIES – 2025»The work covers a wide range of issues, ranging from the physicochemical properties of silicon to, but not limited to the following methods of growing, such as the Chopril and Envisor Melting method. Particular attention is paid to the technological parameters affecting the quality of crystals.
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