olex2 software package 67 transmission electron microscopy tem (Gatan Inc)
96
Structured Review
Gatan Inc
olex2 software package 67 transmission electron microscopy tem
Olex2 Software Package 67 Transmission Electron Microscopy Tem, supplied by Gatan Inc, used in various techniques. Bioz Stars score: 96/100, based on 188 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/olex2+software+package+67+transmission+electron+microscopy+tem/APEX+Software+for+EDS/10__1063_slash_5__0309916-198-6-55
Average 96 stars, based on 188 article reviews
Olex2 Software Package 67 Transmission Electron Microscopy Tem, supplied by Gatan Inc, used in various techniques. Bioz Stars score: 96/100, based on 188 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/olex2+software+package+67+transmission+electron+microscopy+tem/APEX+Software+for+EDS/10__1063_slash_5__0309916-198-6-55
Average 96 stars, based on 188 article reviews
olex2 software package 67 transmission electron microscopy tem - by Bioz Stars,
2026-09
96/100 stars
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Software:Article Title: Intrinsically ultralow thermal conductivity in all-inorganic superatomic bulk crystals Article Snippet: Superatomic compounds, composed of atomic clusters interwoven by weak chemical bonds exhibit large anharmonicity vibrations, are excellent candidates for ultralow thermal conductivity (j) materials.. However, growing bulk superatomic single crystals is challenging due to complex chemical composition and chemical bonds, and studies on their intrinsic thermal property are scarce.. Here, we grew high-quality superatomic single crystals of Re6Se8Te7 and Re6Te15, both of which are narrow-bandgap semiconductors that change into metals under external physical pressure. Transmission Assay:Article Title: Intrinsically ultralow thermal conductivity in all-inorganic superatomic bulk crystals Article Snippet: Superatomic compounds, composed of atomic clusters interwoven by weak chemical bonds exhibit large anharmonicity vibrations, are excellent candidates for ultralow thermal conductivity (j) materials.. However, growing bulk superatomic single crystals is challenging due to complex chemical composition and chemical bonds, and studies on their intrinsic thermal property are scarce.. Here, we grew high-quality superatomic single crystals of Re6Se8Te7 and Re6Te15, both of which are narrow-bandgap semiconductors that change into metals under external physical pressure. Electron Microscopy:Article Title: Intrinsically ultralow thermal conductivity in all-inorganic superatomic bulk crystals Article Snippet: Superatomic compounds, composed of atomic clusters interwoven by weak chemical bonds exhibit large anharmonicity vibrations, are excellent candidates for ultralow thermal conductivity (j) materials.. However, growing bulk superatomic single crystals is challenging due to complex chemical composition and chemical bonds, and studies on their intrinsic thermal property are scarce.. Here, we grew high-quality superatomic single crystals of Re6Se8Te7 and Re6Te15, both of which are narrow-bandgap semiconductors that change into metals under external physical pressure. Transmission Electron Microscopy:Article Title: Intrinsically ultralow thermal conductivity in all-inorganic superatomic bulk crystals Article Snippet: Superatomic compounds, composed of atomic clusters interwoven by weak chemical bonds exhibit large anharmonicity vibrations, are excellent candidates for ultralow thermal conductivity (j) materials.. However, growing bulk superatomic single crystals is challenging due to complex chemical composition and chemical bonds, and studies on their intrinsic thermal property are scarce.. Here, we grew high-quality superatomic single crystals of Re6Se8Te7 and Re6Te15, both of which are narrow-bandgap semiconductors that change into metals under external physical pressure. X-ray Spectroscopy:Article Title: Intrinsically ultralow thermal conductivity in all-inorganic superatomic bulk crystals Article Snippet: Superatomic compounds, composed of atomic clusters interwoven by weak chemical bonds exhibit large anharmonicity vibrations, are excellent candidates for ultralow thermal conductivity (j) materials.. However, growing bulk superatomic single crystals is challenging due to complex chemical composition and chemical bonds, and studies on their intrinsic thermal property are scarce.. Here, we grew high-quality superatomic single crystals of Re6Se8Te7 and Re6Te15, both of which are narrow-bandgap semiconductors that change into metals under external physical pressure. Microscopy:Article Title: Intrinsically ultralow thermal conductivity in all-inorganic superatomic bulk crystals Article Snippet: Superatomic compounds, composed of atomic clusters interwoven by weak chemical bonds exhibit large anharmonicity vibrations, are excellent candidates for ultralow thermal conductivity (j) materials.. However, growing bulk superatomic single crystals is challenging due to complex chemical composition and chemical bonds, and studies on their intrinsic thermal property are scarce.. Here, we grew high-quality superatomic single crystals of Re6Se8Te7 and Re6Te15, both of which are narrow-bandgap semiconductors that change into metals under external physical pressure. |