tem 10 Search Results


95
Norcada Inc silicon nitride holey tem grid
a Schematic illustrating four-dimensional scanning transmission electron microscopy (4D-STEM) of a 2 H –TaS 2 flake with a patterned Fe x C y O z precursor. b Mean diffraction patterns, displayed on a logarithmic scale, of 4D-STEM datasets obtained during in-situ heating of a 2 H –TaS 2 flake with a patterned Fe x C y O z precursor. Diffraction reflections of the 2 H –TaS 2 lattice and the Fe superlattice are indicated in violet and red, respectively. The precursor was made by drop-casting a solution of Fe(CO) 5 /isopropanol. Data was collected along the c -axis of the flake after a 30-minute temperature equilibration period. c Plan-view STEM micrograph (∥ c -axis) of a 2 H –TaS 2 crystal with a patterned Fe x C y O z precursor after ex-situ vacuum annealing for 1 hour at 350 °C. The Fe x C y O z precursor was made by drop-casting a solution of Fe(CO) 5 /isopropanol. The 2 H –TaS 2 crystal and the Fe x C y O z patterned precursor are false-colored in blue and red, respectively. Number labels for the <t>TEM</t> <t>grid</t> holes are marked in white. Scale bar: 2 μ m ( d ) STEM-EDS maps of sample ( c ). In the Fe EDS map, 2 H –TaS 2 is outlined in a dashed line. Scale bars: 2 μ m. Selected area electron diffraction (SAED) patterns of ( c ) obtained for grid hole 1 ( e ), hole 2 ( f ), hole 3 ( g ). The Fe/Ta ratio ( x ) is marked on the SAED patterns. First-order diffraction peaks from the 2 H –TaS 2 lattice and the Fe superlattice are highlighted in blue and red, respectively. Scale bars ( e – g ): 5 nm −1 .
Silicon Nitride Holey Tem Grid, supplied by Norcada Inc, used in various techniques. Bioz Stars score: 95/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/tem+10/pmc11782516-238-7-12?v=Norcada+Inc
Average 95 stars, based on 1 article reviews
silicon nitride holey tem grid - by Bioz Stars, 2026-07
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99
Gatan Inc cryo em imaging
a Schematic illustrating four-dimensional scanning transmission electron microscopy (4D-STEM) of a 2 H –TaS 2 flake with a patterned Fe x C y O z precursor. b Mean diffraction patterns, displayed on a logarithmic scale, of 4D-STEM datasets obtained during in-situ heating of a 2 H –TaS 2 flake with a patterned Fe x C y O z precursor. Diffraction reflections of the 2 H –TaS 2 lattice and the Fe superlattice are indicated in violet and red, respectively. The precursor was made by drop-casting a solution of Fe(CO) 5 /isopropanol. Data was collected along the c -axis of the flake after a 30-minute temperature equilibration period. c Plan-view STEM micrograph (∥ c -axis) of a 2 H –TaS 2 crystal with a patterned Fe x C y O z precursor after ex-situ vacuum annealing for 1 hour at 350 °C. The Fe x C y O z precursor was made by drop-casting a solution of Fe(CO) 5 /isopropanol. The 2 H –TaS 2 crystal and the Fe x C y O z patterned precursor are false-colored in blue and red, respectively. Number labels for the <t>TEM</t> <t>grid</t> holes are marked in white. Scale bar: 2 μ m ( d ) STEM-EDS maps of sample ( c ). In the Fe EDS map, 2 H –TaS 2 is outlined in a dashed line. Scale bars: 2 μ m. Selected area electron diffraction (SAED) patterns of ( c ) obtained for grid hole 1 ( e ), hole 2 ( f ), hole 3 ( g ). The Fe/Ta ratio ( x ) is marked on the SAED patterns. First-order diffraction peaks from the 2 H –TaS 2 lattice and the Fe superlattice are highlighted in blue and red, respectively. Scale bars ( e – g ): 5 nm −1 .
Cryo Em Imaging, supplied by Gatan Inc, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/tem+10/pm33548201-247-0-12?v=Gatan+Inc
Average 99 stars, based on 1 article reviews
cryo em imaging - by Bioz Stars, 2026-07
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90
Carl Zeiss tem zeiss 10
a Schematic illustrating four-dimensional scanning transmission electron microscopy (4D-STEM) of a 2 H –TaS 2 flake with a patterned Fe x C y O z precursor. b Mean diffraction patterns, displayed on a logarithmic scale, of 4D-STEM datasets obtained during in-situ heating of a 2 H –TaS 2 flake with a patterned Fe x C y O z precursor. Diffraction reflections of the 2 H –TaS 2 lattice and the Fe superlattice are indicated in violet and red, respectively. The precursor was made by drop-casting a solution of Fe(CO) 5 /isopropanol. Data was collected along the c -axis of the flake after a 30-minute temperature equilibration period. c Plan-view STEM micrograph (∥ c -axis) of a 2 H –TaS 2 crystal with a patterned Fe x C y O z precursor after ex-situ vacuum annealing for 1 hour at 350 °C. The Fe x C y O z precursor was made by drop-casting a solution of Fe(CO) 5 /isopropanol. The 2 H –TaS 2 crystal and the Fe x C y O z patterned precursor are false-colored in blue and red, respectively. Number labels for the <t>TEM</t> <t>grid</t> holes are marked in white. Scale bar: 2 μ m ( d ) STEM-EDS maps of sample ( c ). In the Fe EDS map, 2 H –TaS 2 is outlined in a dashed line. Scale bars: 2 μ m. Selected area electron diffraction (SAED) patterns of ( c ) obtained for grid hole 1 ( e ), hole 2 ( f ), hole 3 ( g ). The Fe/Ta ratio ( x ) is marked on the SAED patterns. First-order diffraction peaks from the 2 H –TaS 2 lattice and the Fe superlattice are highlighted in blue and red, respectively. Scale bars ( e – g ): 5 nm −1 .
Tem Zeiss 10, 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
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90
Carl Zeiss 10ca tem
a Schematic illustrating four-dimensional scanning transmission electron microscopy (4D-STEM) of a 2 H –TaS 2 flake with a patterned Fe x C y O z precursor. b Mean diffraction patterns, displayed on a logarithmic scale, of 4D-STEM datasets obtained during in-situ heating of a 2 H –TaS 2 flake with a patterned Fe x C y O z precursor. Diffraction reflections of the 2 H –TaS 2 lattice and the Fe superlattice are indicated in violet and red, respectively. The precursor was made by drop-casting a solution of Fe(CO) 5 /isopropanol. Data was collected along the c -axis of the flake after a 30-minute temperature equilibration period. c Plan-view STEM micrograph (∥ c -axis) of a 2 H –TaS 2 crystal with a patterned Fe x C y O z precursor after ex-situ vacuum annealing for 1 hour at 350 °C. The Fe x C y O z precursor was made by drop-casting a solution of Fe(CO) 5 /isopropanol. The 2 H –TaS 2 crystal and the Fe x C y O z patterned precursor are false-colored in blue and red, respectively. Number labels for the <t>TEM</t> <t>grid</t> holes are marked in white. Scale bar: 2 μ m ( d ) STEM-EDS maps of sample ( c ). In the Fe EDS map, 2 H –TaS 2 is outlined in a dashed line. Scale bars: 2 μ m. Selected area electron diffraction (SAED) patterns of ( c ) obtained for grid hole 1 ( e ), hole 2 ( f ), hole 3 ( g ). The Fe/Ta ratio ( x ) is marked on the SAED patterns. First-order diffraction peaks from the 2 H –TaS 2 lattice and the Fe superlattice are highlighted in blue and red, respectively. Scale bars ( e – g ): 5 nm −1 .
10ca Tem, 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/tem+10/10__1645_slash_ge___230r-34-15-14?v=Carl+Zeiss
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10ca tem - by Bioz Stars, 2026-07
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90
Tem Systems Inc startem reagent #503-10-us
a Schematic illustrating four-dimensional scanning transmission electron microscopy (4D-STEM) of a 2 H –TaS 2 flake with a patterned Fe x C y O z precursor. b Mean diffraction patterns, displayed on a logarithmic scale, of 4D-STEM datasets obtained during in-situ heating of a 2 H –TaS 2 flake with a patterned Fe x C y O z precursor. Diffraction reflections of the 2 H –TaS 2 lattice and the Fe superlattice are indicated in violet and red, respectively. The precursor was made by drop-casting a solution of Fe(CO) 5 /isopropanol. Data was collected along the c -axis of the flake after a 30-minute temperature equilibration period. c Plan-view STEM micrograph (∥ c -axis) of a 2 H –TaS 2 crystal with a patterned Fe x C y O z precursor after ex-situ vacuum annealing for 1 hour at 350 °C. The Fe x C y O z precursor was made by drop-casting a solution of Fe(CO) 5 /isopropanol. The 2 H –TaS 2 crystal and the Fe x C y O z patterned precursor are false-colored in blue and red, respectively. Number labels for the <t>TEM</t> <t>grid</t> holes are marked in white. Scale bar: 2 μ m ( d ) STEM-EDS maps of sample ( c ). In the Fe EDS map, 2 H –TaS 2 is outlined in a dashed line. Scale bars: 2 μ m. Selected area electron diffraction (SAED) patterns of ( c ) obtained for grid hole 1 ( e ), hole 2 ( f ), hole 3 ( g ). The Fe/Ta ratio ( x ) is marked on the SAED patterns. First-order diffraction peaks from the 2 H –TaS 2 lattice and the Fe superlattice are highlighted in blue and red, respectively. Scale bars ( e – g ): 5 nm −1 .
Startem Reagent #503 10 Us, supplied by Tem Systems Inc, 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/tem+10/pm30980757-68-11-14?v=Tem+Systems+Inc
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startem reagent #503-10-us - by Bioz Stars, 2026-07
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90
Plano gmbh tem cu grids covered by an ac film of 6–10 thickness
a Schematic illustrating four-dimensional scanning transmission electron microscopy (4D-STEM) of a 2 H –TaS 2 flake with a patterned Fe x C y O z precursor. b Mean diffraction patterns, displayed on a logarithmic scale, of 4D-STEM datasets obtained during in-situ heating of a 2 H –TaS 2 flake with a patterned Fe x C y O z precursor. Diffraction reflections of the 2 H –TaS 2 lattice and the Fe superlattice are indicated in violet and red, respectively. The precursor was made by drop-casting a solution of Fe(CO) 5 /isopropanol. Data was collected along the c -axis of the flake after a 30-minute temperature equilibration period. c Plan-view STEM micrograph (∥ c -axis) of a 2 H –TaS 2 crystal with a patterned Fe x C y O z precursor after ex-situ vacuum annealing for 1 hour at 350 °C. The Fe x C y O z precursor was made by drop-casting a solution of Fe(CO) 5 /isopropanol. The 2 H –TaS 2 crystal and the Fe x C y O z patterned precursor are false-colored in blue and red, respectively. Number labels for the <t>TEM</t> <t>grid</t> holes are marked in white. Scale bar: 2 μ m ( d ) STEM-EDS maps of sample ( c ). In the Fe EDS map, 2 H –TaS 2 is outlined in a dashed line. Scale bars: 2 μ m. Selected area electron diffraction (SAED) patterns of ( c ) obtained for grid hole 1 ( e ), hole 2 ( f ), hole 3 ( g ). The Fe/Ta ratio ( x ) is marked on the SAED patterns. First-order diffraction peaks from the 2 H –TaS 2 lattice and the Fe superlattice are highlighted in blue and red, respectively. Scale bars ( e – g ): 5 nm −1 .
Tem Cu Grids Covered By An Ac Film Of 6–10 Thickness, supplied by Plano gmbh, 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/tem+10/10__1002_slash_ppsc__202000209-234-7-16?v=Plano+gmbh
Average 90 stars, based on 1 article reviews
tem cu grids covered by an ac film of 6–10 thickness - by Bioz Stars, 2026-07
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90
Plano gmbh tem window grid with 10-nm thick silicon nitride membranes
a Schematic illustrating four-dimensional scanning transmission electron microscopy (4D-STEM) of a 2 H –TaS 2 flake with a patterned Fe x C y O z precursor. b Mean diffraction patterns, displayed on a logarithmic scale, of 4D-STEM datasets obtained during in-situ heating of a 2 H –TaS 2 flake with a patterned Fe x C y O z precursor. Diffraction reflections of the 2 H –TaS 2 lattice and the Fe superlattice are indicated in violet and red, respectively. The precursor was made by drop-casting a solution of Fe(CO) 5 /isopropanol. Data was collected along the c -axis of the flake after a 30-minute temperature equilibration period. c Plan-view STEM micrograph (∥ c -axis) of a 2 H –TaS 2 crystal with a patterned Fe x C y O z precursor after ex-situ vacuum annealing for 1 hour at 350 °C. The Fe x C y O z precursor was made by drop-casting a solution of Fe(CO) 5 /isopropanol. The 2 H –TaS 2 crystal and the Fe x C y O z patterned precursor are false-colored in blue and red, respectively. Number labels for the <t>TEM</t> <t>grid</t> holes are marked in white. Scale bar: 2 μ m ( d ) STEM-EDS maps of sample ( c ). In the Fe EDS map, 2 H –TaS 2 is outlined in a dashed line. Scale bars: 2 μ m. Selected area electron diffraction (SAED) patterns of ( c ) obtained for grid hole 1 ( e ), hole 2 ( f ), hole 3 ( g ). The Fe/Ta ratio ( x ) is marked on the SAED patterns. First-order diffraction peaks from the 2 H –TaS 2 lattice and the Fe superlattice are highlighted in blue and red, respectively. Scale bars ( e – g ): 5 nm −1 .
Tem Window Grid With 10 Nm Thick Silicon Nitride Membranes, supplied by Plano gmbh, 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/tem+10/pmc06107015__41377_2018_54_MOESM1_ESM-11-9-18?v=Plano+gmbh
Average 90 stars, based on 1 article reviews
tem window grid with 10-nm thick silicon nitride membranes - by Bioz Stars, 2026-07
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90
Plano gmbh tem grids with 6–10-nm thick amorphous carbon
a Schematic illustrating four-dimensional scanning transmission electron microscopy (4D-STEM) of a 2 H –TaS 2 flake with a patterned Fe x C y O z precursor. b Mean diffraction patterns, displayed on a logarithmic scale, of 4D-STEM datasets obtained during in-situ heating of a 2 H –TaS 2 flake with a patterned Fe x C y O z precursor. Diffraction reflections of the 2 H –TaS 2 lattice and the Fe superlattice are indicated in violet and red, respectively. The precursor was made by drop-casting a solution of Fe(CO) 5 /isopropanol. Data was collected along the c -axis of the flake after a 30-minute temperature equilibration period. c Plan-view STEM micrograph (∥ c -axis) of a 2 H –TaS 2 crystal with a patterned Fe x C y O z precursor after ex-situ vacuum annealing for 1 hour at 350 °C. The Fe x C y O z precursor was made by drop-casting a solution of Fe(CO) 5 /isopropanol. The 2 H –TaS 2 crystal and the Fe x C y O z patterned precursor are false-colored in blue and red, respectively. Number labels for the <t>TEM</t> <t>grid</t> holes are marked in white. Scale bar: 2 μ m ( d ) STEM-EDS maps of sample ( c ). In the Fe EDS map, 2 H –TaS 2 is outlined in a dashed line. Scale bars: 2 μ m. Selected area electron diffraction (SAED) patterns of ( c ) obtained for grid hole 1 ( e ), hole 2 ( f ), hole 3 ( g ). The Fe/Ta ratio ( x ) is marked on the SAED patterns. First-order diffraction peaks from the 2 H –TaS 2 lattice and the Fe superlattice are highlighted in blue and red, respectively. Scale bars ( e – g ): 5 nm −1 .
Tem Grids With 6–10 Nm Thick Amorphous Carbon, supplied by Plano gmbh, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Average 90 stars, based on 1 article reviews
tem grids with 6–10-nm thick amorphous carbon - by Bioz Stars, 2026-07
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90
Ayerst Laboratories tem-10
a Schematic illustrating four-dimensional scanning transmission electron microscopy (4D-STEM) of a 2 H –TaS 2 flake with a patterned Fe x C y O z precursor. b Mean diffraction patterns, displayed on a logarithmic scale, of 4D-STEM datasets obtained during in-situ heating of a 2 H –TaS 2 flake with a patterned Fe x C y O z precursor. Diffraction reflections of the 2 H –TaS 2 lattice and the Fe superlattice are indicated in violet and red, respectively. The precursor was made by drop-casting a solution of Fe(CO) 5 /isopropanol. Data was collected along the c -axis of the flake after a 30-minute temperature equilibration period. c Plan-view STEM micrograph (∥ c -axis) of a 2 H –TaS 2 crystal with a patterned Fe x C y O z precursor after ex-situ vacuum annealing for 1 hour at 350 °C. The Fe x C y O z precursor was made by drop-casting a solution of Fe(CO) 5 /isopropanol. The 2 H –TaS 2 crystal and the Fe x C y O z patterned precursor are false-colored in blue and red, respectively. Number labels for the <t>TEM</t> <t>grid</t> holes are marked in white. Scale bar: 2 μ m ( d ) STEM-EDS maps of sample ( c ). In the Fe EDS map, 2 H –TaS 2 is outlined in a dashed line. Scale bars: 2 μ m. Selected area electron diffraction (SAED) patterns of ( c ) obtained for grid hole 1 ( e ), hole 2 ( f ), hole 3 ( g ). The Fe/Ta ratio ( x ) is marked on the SAED patterns. First-order diffraction peaks from the 2 H –TaS 2 lattice and the Fe superlattice are highlighted in blue and red, respectively. Scale bars ( e – g ): 5 nm −1 .
Tem 10, supplied by Ayerst Laboratories, 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/tem+10/pm11843914-327-39-82?v=Ayerst+Laboratories
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90
Tem Innovations GmbH starteg solution #503-10
a Schematic illustrating four-dimensional scanning transmission electron microscopy (4D-STEM) of a 2 H –TaS 2 flake with a patterned Fe x C y O z precursor. b Mean diffraction patterns, displayed on a logarithmic scale, of 4D-STEM datasets obtained during in-situ heating of a 2 H –TaS 2 flake with a patterned Fe x C y O z precursor. Diffraction reflections of the 2 H –TaS 2 lattice and the Fe superlattice are indicated in violet and red, respectively. The precursor was made by drop-casting a solution of Fe(CO) 5 /isopropanol. Data was collected along the c -axis of the flake after a 30-minute temperature equilibration period. c Plan-view STEM micrograph (∥ c -axis) of a 2 H –TaS 2 crystal with a patterned Fe x C y O z precursor after ex-situ vacuum annealing for 1 hour at 350 °C. The Fe x C y O z precursor was made by drop-casting a solution of Fe(CO) 5 /isopropanol. The 2 H –TaS 2 crystal and the Fe x C y O z patterned precursor are false-colored in blue and red, respectively. Number labels for the <t>TEM</t> <t>grid</t> holes are marked in white. Scale bar: 2 μ m ( d ) STEM-EDS maps of sample ( c ). In the Fe EDS map, 2 H –TaS 2 is outlined in a dashed line. Scale bars: 2 μ m. Selected area electron diffraction (SAED) patterns of ( c ) obtained for grid hole 1 ( e ), hole 2 ( f ), hole 3 ( g ). The Fe/Ta ratio ( x ) is marked on the SAED patterns. First-order diffraction peaks from the 2 H –TaS 2 lattice and the Fe superlattice are highlighted in blue and red, respectively. Scale bars ( e – g ): 5 nm −1 .
Starteg Solution #503 10, supplied by Tem Innovations GmbH, 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/tem+10/pm40280129-954-13-16?v=Tem+Innovations+GmbH
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90
U.S Research Nanomaterials znfe2o4, nanopowder 10–30 nm particle size (tem), 98.5%
a Schematic illustrating four-dimensional scanning transmission electron microscopy (4D-STEM) of a 2 H –TaS 2 flake with a patterned Fe x C y O z precursor. b Mean diffraction patterns, displayed on a logarithmic scale, of 4D-STEM datasets obtained during in-situ heating of a 2 H –TaS 2 flake with a patterned Fe x C y O z precursor. Diffraction reflections of the 2 H –TaS 2 lattice and the Fe superlattice are indicated in violet and red, respectively. The precursor was made by drop-casting a solution of Fe(CO) 5 /isopropanol. Data was collected along the c -axis of the flake after a 30-minute temperature equilibration period. c Plan-view STEM micrograph (∥ c -axis) of a 2 H –TaS 2 crystal with a patterned Fe x C y O z precursor after ex-situ vacuum annealing for 1 hour at 350 °C. The Fe x C y O z precursor was made by drop-casting a solution of Fe(CO) 5 /isopropanol. The 2 H –TaS 2 crystal and the Fe x C y O z patterned precursor are false-colored in blue and red, respectively. Number labels for the <t>TEM</t> <t>grid</t> holes are marked in white. Scale bar: 2 μ m ( d ) STEM-EDS maps of sample ( c ). In the Fe EDS map, 2 H –TaS 2 is outlined in a dashed line. Scale bars: 2 μ m. Selected area electron diffraction (SAED) patterns of ( c ) obtained for grid hole 1 ( e ), hole 2 ( f ), hole 3 ( g ). The Fe/Ta ratio ( x ) is marked on the SAED patterns. First-order diffraction peaks from the 2 H –TaS 2 lattice and the Fe superlattice are highlighted in blue and red, respectively. Scale bars ( e – g ): 5 nm −1 .
Znfe2o4, Nanopowder 10–30 Nm Particle Size (Tem), 98.5%, supplied by U.S Research Nanomaterials, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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znfe2o4, nanopowder 10–30 nm particle size (tem), 98.5% - by Bioz Stars, 2026-07
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90
Carl Zeiss me 10 tem
a Schematic illustrating four-dimensional scanning transmission electron microscopy (4D-STEM) of a 2 H –TaS 2 flake with a patterned Fe x C y O z precursor. b Mean diffraction patterns, displayed on a logarithmic scale, of 4D-STEM datasets obtained during in-situ heating of a 2 H –TaS 2 flake with a patterned Fe x C y O z precursor. Diffraction reflections of the 2 H –TaS 2 lattice and the Fe superlattice are indicated in violet and red, respectively. The precursor was made by drop-casting a solution of Fe(CO) 5 /isopropanol. Data was collected along the c -axis of the flake after a 30-minute temperature equilibration period. c Plan-view STEM micrograph (∥ c -axis) of a 2 H –TaS 2 crystal with a patterned Fe x C y O z precursor after ex-situ vacuum annealing for 1 hour at 350 °C. The Fe x C y O z precursor was made by drop-casting a solution of Fe(CO) 5 /isopropanol. The 2 H –TaS 2 crystal and the Fe x C y O z patterned precursor are false-colored in blue and red, respectively. Number labels for the <t>TEM</t> <t>grid</t> holes are marked in white. Scale bar: 2 μ m ( d ) STEM-EDS maps of sample ( c ). In the Fe EDS map, 2 H –TaS 2 is outlined in a dashed line. Scale bars: 2 μ m. Selected area electron diffraction (SAED) patterns of ( c ) obtained for grid hole 1 ( e ), hole 2 ( f ), hole 3 ( g ). The Fe/Ta ratio ( x ) is marked on the SAED patterns. First-order diffraction peaks from the 2 H –TaS 2 lattice and the Fe superlattice are highlighted in blue and red, respectively. Scale bars ( e – g ): 5 nm −1 .
Me 10 Tem, 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
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me 10 tem - by Bioz Stars, 2026-07
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Image Search Results


a Schematic illustrating four-dimensional scanning transmission electron microscopy (4D-STEM) of a 2 H –TaS 2 flake with a patterned Fe x C y O z precursor. b Mean diffraction patterns, displayed on a logarithmic scale, of 4D-STEM datasets obtained during in-situ heating of a 2 H –TaS 2 flake with a patterned Fe x C y O z precursor. Diffraction reflections of the 2 H –TaS 2 lattice and the Fe superlattice are indicated in violet and red, respectively. The precursor was made by drop-casting a solution of Fe(CO) 5 /isopropanol. Data was collected along the c -axis of the flake after a 30-minute temperature equilibration period. c Plan-view STEM micrograph (∥ c -axis) of a 2 H –TaS 2 crystal with a patterned Fe x C y O z precursor after ex-situ vacuum annealing for 1 hour at 350 °C. The Fe x C y O z precursor was made by drop-casting a solution of Fe(CO) 5 /isopropanol. The 2 H –TaS 2 crystal and the Fe x C y O z patterned precursor are false-colored in blue and red, respectively. Number labels for the TEM grid holes are marked in white. Scale bar: 2 μ m ( d ) STEM-EDS maps of sample ( c ). In the Fe EDS map, 2 H –TaS 2 is outlined in a dashed line. Scale bars: 2 μ m. Selected area electron diffraction (SAED) patterns of ( c ) obtained for grid hole 1 ( e ), hole 2 ( f ), hole 3 ( g ). The Fe/Ta ratio ( x ) is marked on the SAED patterns. First-order diffraction peaks from the 2 H –TaS 2 lattice and the Fe superlattice are highlighted in blue and red, respectively. Scale bars ( e – g ): 5 nm −1 .

Journal: Nature Communications

Article Title: Tailored topotactic chemistry unlocks heterostructures of magnetic intercalation compounds

doi: 10.1038/s41467-025-56467-9

Figure Lengend Snippet: a Schematic illustrating four-dimensional scanning transmission electron microscopy (4D-STEM) of a 2 H –TaS 2 flake with a patterned Fe x C y O z precursor. b Mean diffraction patterns, displayed on a logarithmic scale, of 4D-STEM datasets obtained during in-situ heating of a 2 H –TaS 2 flake with a patterned Fe x C y O z precursor. Diffraction reflections of the 2 H –TaS 2 lattice and the Fe superlattice are indicated in violet and red, respectively. The precursor was made by drop-casting a solution of Fe(CO) 5 /isopropanol. Data was collected along the c -axis of the flake after a 30-minute temperature equilibration period. c Plan-view STEM micrograph (∥ c -axis) of a 2 H –TaS 2 crystal with a patterned Fe x C y O z precursor after ex-situ vacuum annealing for 1 hour at 350 °C. The Fe x C y O z precursor was made by drop-casting a solution of Fe(CO) 5 /isopropanol. The 2 H –TaS 2 crystal and the Fe x C y O z patterned precursor are false-colored in blue and red, respectively. Number labels for the TEM grid holes are marked in white. Scale bar: 2 μ m ( d ) STEM-EDS maps of sample ( c ). In the Fe EDS map, 2 H –TaS 2 is outlined in a dashed line. Scale bars: 2 μ m. Selected area electron diffraction (SAED) patterns of ( c ) obtained for grid hole 1 ( e ), hole 2 ( f ), hole 3 ( g ). The Fe/Ta ratio ( x ) is marked on the SAED patterns. First-order diffraction peaks from the 2 H –TaS 2 lattice and the Fe superlattice are highlighted in blue and red, respectively. Scale bars ( e – g ): 5 nm −1 .

Article Snippet: Flakes were transferred onto a 200 nm silicon nitride holey TEM grid (Norcada), treated with an O 2 plasma for 5 minutes immediately before stacking.

Techniques: Transmission Assay, Electron Microscopy, In Situ, Ex Situ