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Micron-Sized Silicon Secondary Particles Anchored by as High-Capacity, High-Stability Li-Ion Battery Anode ACS Applied Materials & Interfaces
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KAIST team extends cycle of silicon anodes with pulley polyrotaxane in - Green Congress
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One-pot of surface functionalized spherical silica particles - ScienceDirect
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effect of Si particles on the electrochemical Si/C composite anodes
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Silica Particles CD Bioparticles
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SOLAS™ Porous Silica Particles -
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Polystyrene‐Core–Silica‐Shell Hybrid Particles Containing and Magnetic - - 2016 - Chemistry – An Asian Journal - Wiley Online
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OFFERS SURFACE FUNCTIONALIZED SILICA - Industries
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SEM images of a bare silicon, b NiSi-Si composite particle, c | Download Scientific Diagram
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The Size of Si Particles on the Final Si@C | Industrial & Engineering Chemistry Research
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Subtoxic cell responses to silica particles with different size | Reports
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Hybrid hollow silica particles: synthesis and comparison properties with particles - RSC Advances Publishing)
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Spherical Particles - Matyjaszewski Polymer Group -
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morphologies for the silicon particles. | Download Diagram
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Precisely Endowing Colloidal Particles with Silica Branches | Scientific
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Silica Physical Properties nanoComposix
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Effect of Silica Particle Size on Inflammatory Responses PLOS ONE
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Nanosized Si particles with rich surface organic functional as high-performance Li-battery anodes - ScienceDirect
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The Size of Si Particles on the Final Si@C | Industrial & Engineering Chemistry Research
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effect of Si particles on the electrochemical Si/C composite anodes
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silica microspheres are ceramic spherical with tight particle size distributions
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Silica particles with three levels of porosity for efficient amorphisation of - ScienceDirect
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IJERPH | Full-Text | Physicochemical and Occupational Exposure of Particles as Byproducts a Semiconductor Sub Fab
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New Silica Particles for Researchers
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Spheroidization and Coarsening of Eutectic Si Particles in
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PDF] Surface-modification of Silica-particles by nano-scaled particles Sol-Gel-Process | Semantic
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Nanomaterials | Free Full-Text | High Effective Preparation of Amorphous-Like Si Nanoparticles Using Erosion Followed by Bead Milling