scanning electron microscopy with field emission gun (feg)-sem (zeiss gemini leo 1530) (Carl Zeiss)
90
Structured Review
Carl Zeiss
scanning electron microscopy with field emission gun (feg)-sem (zeiss gemini leo 1530)
Scanning Electron Microscopy With Field Emission Gun (Feg) Sem (Zeiss Gemini Leo 1530), supplied by Carl Zeiss, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/scanning+electron+microscopy+(sem)+gemini+1530/1530+electron+leo+microscope+scanning/pmc11271121-34-12-20
Average 90 stars, based on 1 article reviews
Scanning Electron Microscopy With Field Emission Gun (Feg) Sem (Zeiss Gemini Leo 1530), supplied by Carl Zeiss, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/scanning+electron+microscopy+(sem)+gemini+1530/1530+electron+leo+microscope+scanning/pmc11271121-34-12-20
Average 90 stars, based on 1 article reviews
scanning electron microscopy with field emission gun (feg)-sem (zeiss gemini leo 1530) - by Bioz Stars,
2026-09
90/100 stars
Images
Related Articles
other:Article Title: Improved biocompatibility of Ti-based bulk metallic glasses by electrochemical formation of nanoporous oxide layers. Article Snippet: Furthermore, scanning Article Title: Fabrication of filigree parts via laser powder bed fusion: From melt spots to stents Article Snippet: The powder particles were additionally investigated by scanning Article Title: Local lattice distortions and chemical short-range order in MoNbTaW Article Snippet: A heat treatment of 2273K for 24 h in Ar was subsequently applied at the University of Bayreuth to the specimen, which was then mechanically ground and Article Title: Functionalization strategy of carboxymethyl cotton gauze fabrics with zeolitic imidazolate framework-67 (ZIF-67) as a recyclable material for biomedical applications. Article Snippet: The accumulation of uremic toxins in the human body poses a deadly risk because it causes chronic kidney disease.. To increase the effectiveness of hemodialysis and raise the survival rate, these toxins must be effectively removed from the bloodstream.. Developing effective materials for removing these dangerous substances requires a thorough understanding of the interactions between an adsorbent and the uremic toxins. Article Title: Tribocorrosion behaviour of additively manufactured β-type Ti–Nb alloy for implant applications Article Snippet: The microstructure of the LPBF-produced alloys was studied by scanning Electron Microscopy:Article Title: How the multi-phase microstructure of a novel tool steel determines its corrosion behaviour in sulphuric acids Article Snippet: .. The microstructure of the steel samples was studied before and after corrosion tests using Article Title: Preparation and Characterization of Silver Ferrite Nanoparticles (AgFeO2) and Investigation of Their Cytotoxicity Properties Article Snippet: Silver ferrite nanoparticles (AgFeO2 NPs) were successfully synthesized using a co-precipitation method and characterized through a comprehensive array of analytical techniques.. Structural confirmation of AgFeO2 was achieved through FTIR and XRD, while TEM analysis revealed uniformly spherical nanoparticles with an average diameter of 28 ± 3 nm.. Surface morphology and elemental composition were investigated using SEM and EDX, while DLS measurements indicated a slightly larger average size of 71.02 nm, attributed to minor aggregation in solution. Article Title: Improved biocompatibility of Ti-based bulk metallic glasses by electrochemical formation of nanoporous oxide layers. Article Snippet: .. After the scratch tests, the surface wear tracks were analysed by using X-ray Spectroscopy:Article Title: How the multi-phase microstructure of a novel tool steel determines its corrosion behaviour in sulphuric acids Article Snippet: .. The microstructure of the steel samples was studied before and after corrosion tests using Imaging:Article Title: Preparation and Characterization of Silver Ferrite Nanoparticles (AgFeO2) and Investigation of Their Cytotoxicity Properties Article Snippet: Silver ferrite nanoparticles (AgFeO2 NPs) were successfully synthesized using a co-precipitation method and characterized through a comprehensive array of analytical techniques.. Structural confirmation of AgFeO2 was achieved through FTIR and XRD, while TEM analysis revealed uniformly spherical nanoparticles with an average diameter of 28 ± 3 nm.. Surface morphology and elemental composition were investigated using SEM and EDX, while DLS measurements indicated a slightly larger average size of 71.02 nm, attributed to minor aggregation in solution. |