continuum 1065 er electron energy loss spectrometer (Gatan Inc)
98
Structured Review
Gatan Inc
continuum 1065 er electron energy loss spectrometer
Continuum 1065 Er Electron Energy Loss Spectrometer, supplied by Gatan Inc, used in various techniques. Bioz Stars score: 98/100, based on 106 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/continuum+1065+electron+energy+loss+spectrometer/GIF+Continuum+ER%2FHR+with+Stela+System/10__1007_slash_s00445___026___01955___z-49-13-12
Average 98 stars, based on 106 article reviews
Continuum 1065 Er Electron Energy Loss Spectrometer, supplied by Gatan Inc, used in various techniques. Bioz Stars score: 98/100, based on 106 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/continuum+1065+electron+energy+loss+spectrometer/GIF+Continuum+ER%2FHR+with+Stela+System/10__1007_slash_s00445___026___01955___z-49-13-12
Average 98 stars, based on 106 article reviews
continuum 1065 er electron energy loss spectrometer - by Bioz Stars,
2026-09
98/100 stars
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Transmission Assay:Article Title: Microstructure and mechanical properties of laser printed Ti-25V-15Cr burn-resistant alloy using elemental powders including ball-milled Ti Article Snippet: .. Transmission electron microscopy (TEM) analysis was performed using a FEI Tecnai F30 TEM and a FEI Themis Z double-aberrationcorrected TEM equipped with a Gatan Article Title: Burn-Resistant Ti-25V-15Cr Alloy Revisited: Laser 3D Printing via In-Situ Alloying and the Resultant Evolution of Microstructure and Mechanical Properties Article Snippet: This study investigates the fabrication of Ti-25V-15Cr burn-resistant titanium alloy using laser powder bed fusion (PBF-LB) with in-situ alloying, overcoming cracking susceptibility in conventional casting/forging and cold working difficulties.. Through optimization of PBF-LB process parameters, high-quality forming was achieved with a relative density exceeding 99.80 % and an alloy element melting rate of 96.79 %.. The as-printed material exhibited a tensile strength (1185 MPa) over 10 % higher than its forged counterpart, but limited plasticity (elongation εf = 1.23 %). Electron Microscopy:Article Title: Microstructure and mechanical properties of laser printed Ti-25V-15Cr burn-resistant alloy using elemental powders including ball-milled Ti Article Snippet: .. Transmission electron microscopy (TEM) analysis was performed using a FEI Tecnai F30 TEM and a FEI Themis Z double-aberrationcorrected TEM equipped with a Gatan Article Title: Burn-Resistant Ti-25V-15Cr Alloy Revisited: Laser 3D Printing via In-Situ Alloying and the Resultant Evolution of Microstructure and Mechanical Properties Article Snippet: This study investigates the fabrication of Ti-25V-15Cr burn-resistant titanium alloy using laser powder bed fusion (PBF-LB) with in-situ alloying, overcoming cracking susceptibility in conventional casting/forging and cold working difficulties.. Through optimization of PBF-LB process parameters, high-quality forming was achieved with a relative density exceeding 99.80 % and an alloy element melting rate of 96.79 %.. The as-printed material exhibited a tensile strength (1185 MPa) over 10 % higher than its forged counterpart, but limited plasticity (elongation εf = 1.23 %). Transmission Electron Microscopy:Article Title: Microstructure and mechanical properties of laser printed Ti-25V-15Cr burn-resistant alloy using elemental powders including ball-milled Ti Article Snippet: .. Transmission electron microscopy (TEM) analysis was performed using a FEI Tecnai F30 TEM and a FEI Themis Z double-aberrationcorrected TEM equipped with a Gatan Article Title: Burn-Resistant Ti-25V-15Cr Alloy Revisited: Laser 3D Printing via In-Situ Alloying and the Resultant Evolution of Microstructure and Mechanical Properties Article Snippet: This study investigates the fabrication of Ti-25V-15Cr burn-resistant titanium alloy using laser powder bed fusion (PBF-LB) with in-situ alloying, overcoming cracking susceptibility in conventional casting/forging and cold working difficulties.. Through optimization of PBF-LB process parameters, high-quality forming was achieved with a relative density exceeding 99.80 % and an alloy element melting rate of 96.79 %.. The as-printed material exhibited a tensile strength (1185 MPa) over 10 % higher than its forged counterpart, but limited plasticity (elongation εf = 1.23 %). Spectroscopy:Article Title: Advances in photo-assisted seawater splitting promoted by green iron oxide-carbon nitride photoelectrocatalysts Article Snippet: Transmission electron microscopy (TEM) including high-resolution TEM (HRTEM), bright-eld scanning TEM (BF-STEM), high angle annular dark-eld scanning TEM (HAADF-STEM), electron diffraction (ED), and EDXS elemental mapping were performed using a JEOL ARM200F cold FEG double aberration corrected microscope, equipped with a large-angle CENTURIO EDX detector, an Orius CCD camera, and a Quantum GIF. .. Electron energy loss spectroscopy (EELS) and additional EDXS measurements were performed using a Thermo Fisher Scientic Themis Z 80-300 microscope equipped with a spherical aberration corrector at the probe side, a SuperX G2 EDX spectrometer, and a Gatan Microscopy:Article Title: Advances in photo-assisted seawater splitting promoted by green iron oxide-carbon nitride photoelectrocatalysts Article Snippet: Transmission electron microscopy (TEM) including high-resolution TEM (HRTEM), bright-eld scanning TEM (BF-STEM), high angle annular dark-eld scanning TEM (HAADF-STEM), electron diffraction (ED), and EDXS elemental mapping were performed using a JEOL ARM200F cold FEG double aberration corrected microscope, equipped with a large-angle CENTURIO EDX detector, an Orius CCD camera, and a Quantum GIF. .. Electron energy loss spectroscopy (EELS) and additional EDXS measurements were performed using a Thermo Fisher Scientic Themis Z 80-300 microscope equipped with a spherical aberration corrector at the probe side, a SuperX G2 EDX spectrometer, and a Gatan |