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Philips Healthcare 미세구조 분석을 위해 tem
Fig. 1. FE-SEM images of ZnO nanorod arrays and ZnO/ZnSe core/shell heterostructures for different chemical conversion reaction time of (a) 0 h, (b) 12 h, respectively.
미세구조 분석을 위해 Tem, supplied by Philips Healthcare, 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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Philips Healthcare 300 kv philips tecnai hrtem
High-resolution transmission electron microscopy <t>(HRTEM)</t> images of zinc- and copper-mediated cerium oxide nanoparticles. (a) Pristine CNPs display well-defined, crystalline primary particles with spherical morphology (yellow circles highlight individual nanocrystallites), and the inset reveals clear lattice fringes characteristic of the fluorite ceria structure. (b–d) Zn-mediated ceria (CNPZn5, CNPZn10, CNPZn20) exhibit densely packed aggregates of primary particles with visible lattice fringes (yellow circles). (e–g) Cu-mediated ceria (CNPCu5, CNPCu10, CNPCu20) display similar primary particle sizes and locally less dense aggregates. The average particle sizes determined from HRTEM analysis were 7 ± 2 nm for pristine CNPs, and 4 ± 1 nm to 6 ± 1 nm for Zn- and Cu-doped formulations , indicating that metal dopant incorporation reduces particle size. Scale bars: 5 nm.
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Philips Healthcare tem microscope
High-resolution transmission electron microscopy <t>(HRTEM)</t> images of zinc- and copper-mediated cerium oxide nanoparticles. (a) Pristine CNPs display well-defined, crystalline primary particles with spherical morphology (yellow circles highlight individual nanocrystallites), and the inset reveals clear lattice fringes characteristic of the fluorite ceria structure. (b–d) Zn-mediated ceria (CNPZn5, CNPZn10, CNPZn20) exhibit densely packed aggregates of primary particles with visible lattice fringes (yellow circles). (e–g) Cu-mediated ceria (CNPCu5, CNPCu10, CNPCu20) display similar primary particle sizes and locally less dense aggregates. The average particle sizes determined from HRTEM analysis were 7 ± 2 nm for pristine CNPs, and 4 ± 1 nm to 6 ± 1 nm for Zn- and Cu-doped formulations , indicating that metal dopant incorporation reduces particle size. Scale bars: 5 nm.
Tem Microscope, supplied by Philips Healthcare, 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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Philips Healthcare philips fei tecnai 12 microscope at 120 kv
High-resolution transmission electron microscopy <t>(HRTEM)</t> images of zinc- and copper-mediated cerium oxide nanoparticles. (a) Pristine CNPs display well-defined, crystalline primary particles with spherical morphology (yellow circles highlight individual nanocrystallites), and the inset reveals clear lattice fringes characteristic of the fluorite ceria structure. (b–d) Zn-mediated ceria (CNPZn5, CNPZn10, CNPZn20) exhibit densely packed aggregates of primary particles with visible lattice fringes (yellow circles). (e–g) Cu-mediated ceria (CNPCu5, CNPCu10, CNPCu20) display similar primary particle sizes and locally less dense aggregates. The average particle sizes determined from HRTEM analysis were 7 ± 2 nm for pristine CNPs, and 4 ± 1 nm to 6 ± 1 nm for Zn- and Cu-doped formulations , indicating that metal dopant incorporation reduces particle size. Scale bars: 5 nm.
Philips Fei Tecnai 12 Microscope At 120 Kv, supplied by Philips Healthcare, 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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Philips Healthcare particles
High-resolution transmission electron microscopy <t>(HRTEM)</t> images of zinc- and copper-mediated cerium oxide nanoparticles. (a) Pristine CNPs display well-defined, crystalline primary particles with spherical morphology (yellow circles highlight individual nanocrystallites), and the inset reveals clear lattice fringes characteristic of the fluorite ceria structure. (b–d) Zn-mediated ceria (CNPZn5, CNPZn10, CNPZn20) exhibit densely packed aggregates of primary particles with visible lattice fringes (yellow circles). (e–g) Cu-mediated ceria (CNPCu5, CNPCu10, CNPCu20) display similar primary particle sizes and locally less dense aggregates. The average particle sizes determined from HRTEM analysis were 7 ± 2 nm for pristine CNPs, and 4 ± 1 nm to 6 ± 1 nm for Zn- and Cu-doped formulations , indicating that metal dopant incorporation reduces particle size. Scale bars: 5 nm.
Particles, supplied by Philips Healthcare, 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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TECNA Srl transmission electron microscopy tecna-10
High-resolution transmission electron microscopy <t>(HRTEM)</t> images of zinc- and copper-mediated cerium oxide nanoparticles. (a) Pristine CNPs display well-defined, crystalline primary particles with spherical morphology (yellow circles highlight individual nanocrystallites), and the inset reveals clear lattice fringes characteristic of the fluorite ceria structure. (b–d) Zn-mediated ceria (CNPZn5, CNPZn10, CNPZn20) exhibit densely packed aggregates of primary particles with visible lattice fringes (yellow circles). (e–g) Cu-mediated ceria (CNPCu5, CNPCu10, CNPCu20) display similar primary particle sizes and locally less dense aggregates. The average particle sizes determined from HRTEM analysis were 7 ± 2 nm for pristine CNPs, and 4 ± 1 nm to 6 ± 1 nm for Zn- and Cu-doped formulations , indicating that metal dopant incorporation reduces particle size. Scale bars: 5 nm.
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High-resolution transmission electron microscopy <t>(HRTEM)</t> images of zinc- and copper-mediated cerium oxide nanoparticles. (a) Pristine CNPs display well-defined, crystalline primary particles with spherical morphology (yellow circles highlight individual nanocrystallites), and the inset reveals clear lattice fringes characteristic of the fluorite ceria structure. (b–d) Zn-mediated ceria (CNPZn5, CNPZn10, CNPZn20) exhibit densely packed aggregates of primary particles with visible lattice fringes (yellow circles). (e–g) Cu-mediated ceria (CNPCu5, CNPCu10, CNPCu20) display similar primary particle sizes and locally less dense aggregates. The average particle sizes determined from HRTEM analysis were 7 ± 2 nm for pristine CNPs, and 4 ± 1 nm to 6 ± 1 nm for Zn- and Cu-doped formulations , indicating that metal dopant incorporation reduces particle size. Scale bars: 5 nm.
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Image Search Results


Fig. 1. FE-SEM images of ZnO nanorod arrays and ZnO/ZnSe core/shell heterostructures for different chemical conversion reaction time of (a) 0 h, (b) 12 h, respectively.

Journal: Journal of the Korean Institute of Electrical and Electronic Material Engineers

Article Title: Synthesis and Characteristics of Type-II ZnO/ZnSe Core/Shell Heterostructures for High Efficient Photocatalytic Activity

doi: 10.4313/jkem.2014.27.3.178

Figure Lengend Snippet: Fig. 1. FE-SEM images of ZnO nanorod arrays and ZnO/ZnSe core/shell heterostructures for different chemical conversion reaction time of (a) 0 h, (b) 12 h, respectively.

Article Snippet: 미세구조 분석을 위해 TEM (Philips, TECNAI F20 TEM) 및 STEM, EDX 을 통해 보다 자세한 구조 분석을 하였다.

Techniques:

Fig. 2. X-ray diffraction results of ZnO nanorod arrays and ZnO/ZnSe core/shell heterostructures.

Journal: Journal of the Korean Institute of Electrical and Electronic Material Engineers

Article Title: Synthesis and Characteristics of Type-II ZnO/ZnSe Core/Shell Heterostructures for High Efficient Photocatalytic Activity

doi: 10.4313/jkem.2014.27.3.178

Figure Lengend Snippet: Fig. 2. X-ray diffraction results of ZnO nanorod arrays and ZnO/ZnSe core/shell heterostructures.

Article Snippet: 미세구조 분석을 위해 TEM (Philips, TECNAI F20 TEM) 및 STEM, EDX 을 통해 보다 자세한 구조 분석을 하였다.

Techniques:

Fig. 3. Schematic illustrations for chemical conversion process from ZnO nanorods to ZnO/ZnSe core/shell heterostructures with a conversion solution of NaHSe.

Journal: Journal of the Korean Institute of Electrical and Electronic Material Engineers

Article Title: Synthesis and Characteristics of Type-II ZnO/ZnSe Core/Shell Heterostructures for High Efficient Photocatalytic Activity

doi: 10.4313/jkem.2014.27.3.178

Figure Lengend Snippet: Fig. 3. Schematic illustrations for chemical conversion process from ZnO nanorods to ZnO/ZnSe core/shell heterostructures with a conversion solution of NaHSe.

Article Snippet: 미세구조 분석을 위해 TEM (Philips, TECNAI F20 TEM) 및 STEM, EDX 을 통해 보다 자세한 구조 분석을 하였다.

Techniques:

Fig. 4. TEM, HR-TEM(inset) and compositional line profiles of ZnO nanorod(a-b), ZnO/ZnSe core/shell

Journal: Journal of the Korean Institute of Electrical and Electronic Material Engineers

Article Title: Synthesis and Characteristics of Type-II ZnO/ZnSe Core/Shell Heterostructures for High Efficient Photocatalytic Activity

doi: 10.4313/jkem.2014.27.3.178

Figure Lengend Snippet: Fig. 4. TEM, HR-TEM(inset) and compositional line profiles of ZnO nanorod(a-b), ZnO/ZnSe core/shell

Article Snippet: 미세구조 분석을 위해 TEM (Philips, TECNAI F20 TEM) 및 STEM, EDX 을 통해 보다 자세한 구조 분석을 하였다.

Techniques:

Fig. 5. The XPS scanning spectrum for ZnO/ZnSe

Journal: Journal of the Korean Institute of Electrical and Electronic Material Engineers

Article Title: Synthesis and Characteristics of Type-II ZnO/ZnSe Core/Shell Heterostructures for High Efficient Photocatalytic Activity

doi: 10.4313/jkem.2014.27.3.178

Figure Lengend Snippet: Fig. 5. The XPS scanning spectrum for ZnO/ZnSe

Article Snippet: 미세구조 분석을 위해 TEM (Philips, TECNAI F20 TEM) 및 STEM, EDX 을 통해 보다 자세한 구조 분석을 하였다.

Techniques:

Fig. 6. Normalized Concentrations (with respect to the

Journal: Journal of the Korean Institute of Electrical and Electronic Material Engineers

Article Title: Synthesis and Characteristics of Type-II ZnO/ZnSe Core/Shell Heterostructures for High Efficient Photocatalytic Activity

doi: 10.4313/jkem.2014.27.3.178

Figure Lengend Snippet: Fig. 6. Normalized Concentrations (with respect to the

Article Snippet: 미세구조 분석을 위해 TEM (Philips, TECNAI F20 TEM) 및 STEM, EDX 을 통해 보다 자세한 구조 분석을 하였다.

Techniques:

Fig. 7. Schematic illustration of the photoexited charge separation/transfer mechanism in the ZnO/ZnSe core/shell

Journal: Journal of the Korean Institute of Electrical and Electronic Material Engineers

Article Title: Synthesis and Characteristics of Type-II ZnO/ZnSe Core/Shell Heterostructures for High Efficient Photocatalytic Activity

doi: 10.4313/jkem.2014.27.3.178

Figure Lengend Snippet: Fig. 7. Schematic illustration of the photoexited charge separation/transfer mechanism in the ZnO/ZnSe core/shell

Article Snippet: 미세구조 분석을 위해 TEM (Philips, TECNAI F20 TEM) 및 STEM, EDX 을 통해 보다 자세한 구조 분석을 하였다.

Techniques:

High-resolution transmission electron microscopy (HRTEM) images of zinc- and copper-mediated cerium oxide nanoparticles. (a) Pristine CNPs display well-defined, crystalline primary particles with spherical morphology (yellow circles highlight individual nanocrystallites), and the inset reveals clear lattice fringes characteristic of the fluorite ceria structure. (b–d) Zn-mediated ceria (CNPZn5, CNPZn10, CNPZn20) exhibit densely packed aggregates of primary particles with visible lattice fringes (yellow circles). (e–g) Cu-mediated ceria (CNPCu5, CNPCu10, CNPCu20) display similar primary particle sizes and locally less dense aggregates. The average particle sizes determined from HRTEM analysis were 7 ± 2 nm for pristine CNPs, and 4 ± 1 nm to 6 ± 1 nm for Zn- and Cu-doped formulations , indicating that metal dopant incorporation reduces particle size. Scale bars: 5 nm.

Journal: RSC Advances

Article Title: Biomedical utility of zinc and copper mediated cerium oxide nanoparticles

doi: 10.1039/d6ra02316a

Figure Lengend Snippet: High-resolution transmission electron microscopy (HRTEM) images of zinc- and copper-mediated cerium oxide nanoparticles. (a) Pristine CNPs display well-defined, crystalline primary particles with spherical morphology (yellow circles highlight individual nanocrystallites), and the inset reveals clear lattice fringes characteristic of the fluorite ceria structure. (b–d) Zn-mediated ceria (CNPZn5, CNPZn10, CNPZn20) exhibit densely packed aggregates of primary particles with visible lattice fringes (yellow circles). (e–g) Cu-mediated ceria (CNPCu5, CNPCu10, CNPCu20) display similar primary particle sizes and locally less dense aggregates. The average particle sizes determined from HRTEM analysis were 7 ± 2 nm for pristine CNPs, and 4 ± 1 nm to 6 ± 1 nm for Zn- and Cu-doped formulations , indicating that metal dopant incorporation reduces particle size. Scale bars: 5 nm.

Article Snippet: The particle size and morphology of pure and metal-doped CNPs were examined using a 300 kV Philips Tecnai HRTEM (high resolution transmission electron microscope).

Techniques: Transmission Assay, Electron Microscopy