micro computed tomography microct scanning Search Results


90
Carl Zeiss x-ray microtomography (xradia 520 versa
a Effect of the c-IPN cathode on the specific energy of cells (excluding packaging substances) and the specific capacity of electrode active materials ( C sp ) of NCM811 as a function of the areal-mass-loading ( M / A ). b Photograph of the double-stacked pouch-type cell (area = 34 × 34 (mm × mm)), in which the c-IPN cathode ( C/A = 18 mAh cm –2 ) was coupled with a Li-metal anode (20 mAh cm –2 , negative to positive electrode capacity ratio ( N / P ) of 1.1) under a limited amount (electrolyte mass/cell capacity ( E / C ) ratio of 2.5 g Ah –1 ) of carbonate-based liquid electrolyte). c X-ray <t>microtomography</t> image showing the cross-sectional structure of the double-stacked pouch cell. d Cycling performance of the double-stacked pouch-type cell at a charge/discharge current density of 0.9 mA cm –2 /1.8 mA cm –2 and a voltage range of 3.0–4.4 V at 25 °C.
X Ray Microtomography (Xradia 520 Versa, 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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Carl Zeiss versa 520d 3d microct device
a Effect of the c-IPN cathode on the specific energy of cells (excluding packaging substances) and the specific capacity of electrode active materials ( C sp ) of NCM811 as a function of the areal-mass-loading ( M / A ). b Photograph of the double-stacked pouch-type cell (area = 34 × 34 (mm × mm)), in which the c-IPN cathode ( C/A = 18 mAh cm –2 ) was coupled with a Li-metal anode (20 mAh cm –2 , negative to positive electrode capacity ratio ( N / P ) of 1.1) under a limited amount (electrolyte mass/cell capacity ( E / C ) ratio of 2.5 g Ah –1 ) of carbonate-based liquid electrolyte). c X-ray <t>microtomography</t> image showing the cross-sectional structure of the double-stacked pouch cell. d Cycling performance of the double-stacked pouch-type cell at a charge/discharge current density of 0.9 mA cm –2 /1.8 mA cm –2 and a voltage range of 3.0–4.4 V at 25 °C.
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Carl Zeiss versa x-ray micro-computed tomography scanner
a Effect of the c-IPN cathode on the specific energy of cells (excluding packaging substances) and the specific capacity of electrode active materials ( C sp ) of NCM811 as a function of the areal-mass-loading ( M / A ). b Photograph of the double-stacked pouch-type cell (area = 34 × 34 (mm × mm)), in which the c-IPN cathode ( C/A = 18 mAh cm –2 ) was coupled with a Li-metal anode (20 mAh cm –2 , negative to positive electrode capacity ratio ( N / P ) of 1.1) under a limited amount (electrolyte mass/cell capacity ( E / C ) ratio of 2.5 g Ah –1 ) of carbonate-based liquid electrolyte). c X-ray <t>microtomography</t> image showing the cross-sectional structure of the double-stacked pouch cell. d Cycling performance of the double-stacked pouch-type cell at a charge/discharge current density of 0.9 mA cm –2 /1.8 mA cm –2 and a voltage range of 3.0–4.4 V at 25 °C.
Versa X Ray Micro Computed Tomography Scanner, 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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Carl Zeiss microct zeiss metrotom 1500 g3
a Effect of the c-IPN cathode on the specific energy of cells (excluding packaging substances) and the specific capacity of electrode active materials ( C sp ) of NCM811 as a function of the areal-mass-loading ( M / A ). b Photograph of the double-stacked pouch-type cell (area = 34 × 34 (mm × mm)), in which the c-IPN cathode ( C/A = 18 mAh cm –2 ) was coupled with a Li-metal anode (20 mAh cm –2 , negative to positive electrode capacity ratio ( N / P ) of 1.1) under a limited amount (electrolyte mass/cell capacity ( E / C ) ratio of 2.5 g Ah –1 ) of carbonate-based liquid electrolyte). c X-ray <t>microtomography</t> image showing the cross-sectional structure of the double-stacked pouch cell. d Cycling performance of the double-stacked pouch-type cell at a charge/discharge current density of 0.9 mA cm –2 /1.8 mA cm –2 and a voltage range of 3.0–4.4 V at 25 °C.
Microct Zeiss Metrotom 1500 G3, 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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SCANCO USA INC 50 microct scanner
a Effect of the c-IPN cathode on the specific energy of cells (excluding packaging substances) and the specific capacity of electrode active materials ( C sp ) of NCM811 as a function of the areal-mass-loading ( M / A ). b Photograph of the double-stacked pouch-type cell (area = 34 × 34 (mm × mm)), in which the c-IPN cathode ( C/A = 18 mAh cm –2 ) was coupled with a Li-metal anode (20 mAh cm –2 , negative to positive electrode capacity ratio ( N / P ) of 1.1) under a limited amount (electrolyte mass/cell capacity ( E / C ) ratio of 2.5 g Ah –1 ) of carbonate-based liquid electrolyte). c X-ray <t>microtomography</t> image showing the cross-sectional structure of the double-stacked pouch cell. d Cycling performance of the double-stacked pouch-type cell at a charge/discharge current density of 0.9 mA cm –2 /1.8 mA cm –2 and a voltage range of 3.0–4.4 V at 25 °C.
50 Microct Scanner, supplied by SCANCO USA INC, 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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SCANCO USA INC medical microct evaluation program
a Effect of the c-IPN cathode on the specific energy of cells (excluding packaging substances) and the specific capacity of electrode active materials ( C sp ) of NCM811 as a function of the areal-mass-loading ( M / A ). b Photograph of the double-stacked pouch-type cell (area = 34 × 34 (mm × mm)), in which the c-IPN cathode ( C/A = 18 mAh cm –2 ) was coupled with a Li-metal anode (20 mAh cm –2 , negative to positive electrode capacity ratio ( N / P ) of 1.1) under a limited amount (electrolyte mass/cell capacity ( E / C ) ratio of 2.5 g Ah –1 ) of carbonate-based liquid electrolyte). c X-ray <t>microtomography</t> image showing the cross-sectional structure of the double-stacked pouch cell. d Cycling performance of the double-stacked pouch-type cell at a charge/discharge current density of 0.9 mA cm –2 /1.8 mA cm –2 and a voltage range of 3.0–4.4 V at 25 °C.
Medical Microct Evaluation Program, supplied by SCANCO USA INC, 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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SCANCO USA INC micro computed topography microct 35
a Effect of the c-IPN cathode on the specific energy of cells (excluding packaging substances) and the specific capacity of electrode active materials ( C sp ) of NCM811 as a function of the areal-mass-loading ( M / A ). b Photograph of the double-stacked pouch-type cell (area = 34 × 34 (mm × mm)), in which the c-IPN cathode ( C/A = 18 mAh cm –2 ) was coupled with a Li-metal anode (20 mAh cm –2 , negative to positive electrode capacity ratio ( N / P ) of 1.1) under a limited amount (electrolyte mass/cell capacity ( E / C ) ratio of 2.5 g Ah –1 ) of carbonate-based liquid electrolyte). c X-ray <t>microtomography</t> image showing the cross-sectional structure of the double-stacked pouch cell. d Cycling performance of the double-stacked pouch-type cell at a charge/discharge current density of 0.9 mA cm –2 /1.8 mA cm –2 and a voltage range of 3.0–4.4 V at 25 °C.
Micro Computed Topography Microct 35, supplied by SCANCO USA INC, 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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MILabs microct scanner milabs b.v
a Effect of the c-IPN cathode on the specific energy of cells (excluding packaging substances) and the specific capacity of electrode active materials ( C sp ) of NCM811 as a function of the areal-mass-loading ( M / A ). b Photograph of the double-stacked pouch-type cell (area = 34 × 34 (mm × mm)), in which the c-IPN cathode ( C/A = 18 mAh cm –2 ) was coupled with a Li-metal anode (20 mAh cm –2 , negative to positive electrode capacity ratio ( N / P ) of 1.1) under a limited amount (electrolyte mass/cell capacity ( E / C ) ratio of 2.5 g Ah –1 ) of carbonate-based liquid electrolyte). c X-ray <t>microtomography</t> image showing the cross-sectional structure of the double-stacked pouch cell. d Cycling performance of the double-stacked pouch-type cell at a charge/discharge current density of 0.9 mA cm –2 /1.8 mA cm –2 and a voltage range of 3.0–4.4 V at 25 °C.
Microct Scanner Milabs B.V, supplied by MILabs, 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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86
Malvern Panalytical origin 6 0
a Effect of the c-IPN cathode on the specific energy of cells (excluding packaging substances) and the specific capacity of electrode active materials ( C sp ) of NCM811 as a function of the areal-mass-loading ( M / A ). b Photograph of the double-stacked pouch-type cell (area = 34 × 34 (mm × mm)), in which the c-IPN cathode ( C/A = 18 mAh cm –2 ) was coupled with a Li-metal anode (20 mAh cm –2 , negative to positive electrode capacity ratio ( N / P ) of 1.1) under a limited amount (electrolyte mass/cell capacity ( E / C ) ratio of 2.5 g Ah –1 ) of carbonate-based liquid electrolyte). c X-ray <t>microtomography</t> image showing the cross-sectional structure of the double-stacked pouch cell. d Cycling performance of the double-stacked pouch-type cell at a charge/discharge current density of 0.9 mA cm –2 /1.8 mA cm –2 and a voltage range of 3.0–4.4 V at 25 °C.
Origin 6 0, supplied by Malvern Panalytical, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Malvern Panalytical origin 6 0 software
a Effect of the c-IPN cathode on the specific energy of cells (excluding packaging substances) and the specific capacity of electrode active materials ( C sp ) of NCM811 as a function of the areal-mass-loading ( M / A ). b Photograph of the double-stacked pouch-type cell (area = 34 × 34 (mm × mm)), in which the c-IPN cathode ( C/A = 18 mAh cm –2 ) was coupled with a Li-metal anode (20 mAh cm –2 , negative to positive electrode capacity ratio ( N / P ) of 1.1) under a limited amount (electrolyte mass/cell capacity ( E / C ) ratio of 2.5 g Ah –1 ) of carbonate-based liquid electrolyte). c X-ray <t>microtomography</t> image showing the cross-sectional structure of the double-stacked pouch cell. d Cycling performance of the double-stacked pouch-type cell at a charge/discharge current density of 0.9 mA cm –2 /1.8 mA cm –2 and a voltage range of 3.0–4.4 V at 25 °C.
Origin 6 0 Software, supplied by Malvern Panalytical, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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90
GraphPad Software Inc prism software
a Effect of the c-IPN cathode on the specific energy of cells (excluding packaging substances) and the specific capacity of electrode active materials ( C sp ) of NCM811 as a function of the areal-mass-loading ( M / A ). b Photograph of the double-stacked pouch-type cell (area = 34 × 34 (mm × mm)), in which the c-IPN cathode ( C/A = 18 mAh cm –2 ) was coupled with a Li-metal anode (20 mAh cm –2 , negative to positive electrode capacity ratio ( N / P ) of 1.1) under a limited amount (electrolyte mass/cell capacity ( E / C ) ratio of 2.5 g Ah –1 ) of carbonate-based liquid electrolyte). c X-ray <t>microtomography</t> image showing the cross-sectional structure of the double-stacked pouch cell. d Cycling performance of the double-stacked pouch-type cell at a charge/discharge current density of 0.9 mA cm –2 /1.8 mA cm –2 and a voltage range of 3.0–4.4 V at 25 °C.
Prism Software, supplied by GraphPad Software Inc, 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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97
Revvity quantum fx microct
a Effect of the c-IPN cathode on the specific energy of cells (excluding packaging substances) and the specific capacity of electrode active materials ( C sp ) of NCM811 as a function of the areal-mass-loading ( M / A ). b Photograph of the double-stacked pouch-type cell (area = 34 × 34 (mm × mm)), in which the c-IPN cathode ( C/A = 18 mAh cm –2 ) was coupled with a Li-metal anode (20 mAh cm –2 , negative to positive electrode capacity ratio ( N / P ) of 1.1) under a limited amount (electrolyte mass/cell capacity ( E / C ) ratio of 2.5 g Ah –1 ) of carbonate-based liquid electrolyte). c X-ray <t>microtomography</t> image showing the cross-sectional structure of the double-stacked pouch cell. d Cycling performance of the double-stacked pouch-type cell at a charge/discharge current density of 0.9 mA cm –2 /1.8 mA cm –2 and a voltage range of 3.0–4.4 V at 25 °C.
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Image Search Results


a Effect of the c-IPN cathode on the specific energy of cells (excluding packaging substances) and the specific capacity of electrode active materials ( C sp ) of NCM811 as a function of the areal-mass-loading ( M / A ). b Photograph of the double-stacked pouch-type cell (area = 34 × 34 (mm × mm)), in which the c-IPN cathode ( C/A = 18 mAh cm –2 ) was coupled with a Li-metal anode (20 mAh cm –2 , negative to positive electrode capacity ratio ( N / P ) of 1.1) under a limited amount (electrolyte mass/cell capacity ( E / C ) ratio of 2.5 g Ah –1 ) of carbonate-based liquid electrolyte). c X-ray microtomography image showing the cross-sectional structure of the double-stacked pouch cell. d Cycling performance of the double-stacked pouch-type cell at a charge/discharge current density of 0.9 mA cm –2 /1.8 mA cm –2 and a voltage range of 3.0–4.4 V at 25 °C.

Journal: Nature Communications

Article Title: Regulating electrostatic phenomena by cationic polymer binder for scalable high-areal-capacity Li battery electrodes

doi: 10.1038/s41467-023-41513-1

Figure Lengend Snippet: a Effect of the c-IPN cathode on the specific energy of cells (excluding packaging substances) and the specific capacity of electrode active materials ( C sp ) of NCM811 as a function of the areal-mass-loading ( M / A ). b Photograph of the double-stacked pouch-type cell (area = 34 × 34 (mm × mm)), in which the c-IPN cathode ( C/A = 18 mAh cm –2 ) was coupled with a Li-metal anode (20 mAh cm –2 , negative to positive electrode capacity ratio ( N / P ) of 1.1) under a limited amount (electrolyte mass/cell capacity ( E / C ) ratio of 2.5 g Ah –1 ) of carbonate-based liquid electrolyte). c X-ray microtomography image showing the cross-sectional structure of the double-stacked pouch cell. d Cycling performance of the double-stacked pouch-type cell at a charge/discharge current density of 0.9 mA cm –2 /1.8 mA cm –2 and a voltage range of 3.0–4.4 V at 25 °C.

Article Snippet: The internal structure of the pouch-type cell was characterized using X-ray microtomography (Xradia 520 Versa, Carl Zeiss Inc.).

Techniques: