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Nano Letters, ISSN 1530-6984, 02/2018, Volume 18, Issue 2, pp. 1280 - 1289
Although in sodium–oxygen (Na–O2) batteries show promise as high-energy storage systems, this technology is still the subject of intense fundamental research,... 
Na-O | real time TEM visualization | battery | liquid electrochemical TEM | parasitic product formation | solution-mediated mechanism
Journal Article
2012, 1ère édition., ISBN 2951361653, 584
Book
Journal Article
ECS Transactions, ISSN 1938-5862, 2012, Volume 44, Issue 1, pp. 1169 - 1174
Conference Proceeding
Nano Letters, ISSN 1530-6984, 06/2012, Volume 12, Issue 6, pp. 3315 - 3321
Journal Article
ACS Chemical Biology, ISSN 1554-8929, 05/2008, Volume 3, Issue 5, pp. 268 - 281
The objective of molecular electron microscopy (EM) is to use electron microscopes to visualize the structure of biological molecules. This Review provides a... 
3-DIMENSIONAL RECONSTRUCTION | PHASE-CONTRAST | CRYOELECTRON MICROSCOPY | RESOLUTION STRUCTURE | SAMPLE PREPARATION | CRYSTAL-STRUCTURE | BIOCHEMISTRY & MOLECULAR BIOLOGY | 2D CRYSTALLIZATION | ESCHERICHIA-COLI | MAXIMUM-LIKELIHOOD APPROACH | PROTEIN COMPLEXES | Proteins - chemistry | Microscopy, Electron - methods | Crystallography | Sensitivity and Specificity | Proteins - ultrastructure | Reviews | Hybrid methods: The combination of methods that classically addressed different questions using different tools into one hybrid approach that combines the strength of each method. A typical example is the combination of single particle cryo-EM of a complex with X-ray diffraction studies of its subunits and computational modeling of the interactions between the subunits in the complex | Molecular electron microscopy: The use of transmission electron microscopy (TEM) to obtain structural information of biological molecules, isolated or in the context of a cell, as opposed to the use of TEM to visualize cellular fine structure | Electron crystallography: A TEM method used to study the structure of molecules in a two-dimensional array (2D crystal). In materials sciences this method mostly relies on electron diffraction for data collection, while for 2D crystals of biological molecules typically both images and electron diffraction patterns are recorded, which provide phase and amplitude information, respectively | Single particle electron microscopy: A TEM method to study an ensemble of identical molecules (single particles). While images of the individual particles are noisy, by combining thousands of images the signal-to-noise ratio can be improved and a three-dimensional reconstruction can be calculated | Docking: Refers to the method of positioning high-resolution structural models of protein subunits into lower-resolution envelopes of protein complexes. The latter can be determined by TEM | Vitrification: The quick-freezing of biological specimens so that they become embedded in a layer of amorphous (or vitrified) ice. Vitreous ice can be maintained at liquid nitrogen temperatures and is a liquid of very high viscosity, comparable to glass | Electron tomography: A TEM method used to study a single unique specimen by recording a series of images of the same sample area at different tilt angles. By combining the images of the specimen at different tilt angles, the 3D structure of the specimen can be reconstructed | Cryo-electron microscopy (cryo-EM): The use of TEM to image samples at low temperature. Cryo-EM is typically used in conjunction with vitrified specimens
Journal Article
Journal of alloys and compounds, ISSN 0925-8388, 2015, Volume 632, pp. 110 - 115
•Microstructure and properties of Co-base superalloys can be changed significantly by changing the W content.•W partitions to the γ′ phase but to a lesser... 
X-ray diffraction | Metals and alloys | Precipitation | Thermodynamic properties | Transmission electron microscopy, TEM | Transmission electron microscopy TEM
Journal Article
Advanced Energy Materials, ISSN 1614-6832, 04/2017, Volume 7, Issue 8, p. n/a
Journal Article
Corrosion science, ISSN 0010-938X, 2018, Volume 133, pp. 358 - 373
•GO-PANIs/Epoxy nanocomposites were fabricated and analyzed.•GO-PANI composites improved the corrosion resistance of the epoxy coating.•GO-PANI I significantly... 
B. XRD | C. Polymer coatings | B. EIS | A. Steel | B. TEM | BEHAVIOR | MATERIALS SCIENCE, MULTIDISCIPLINARY | METALLURGY & METALLURGICAL ENGINEERING | BARRIER | NANOSHEETS | IRON | GRAPHITE | XRD | Steel | MILD-STEEL | EIS | REDUCTION | RESISTANCE | Polymer coatings | LAYER | TEM | Corrosion | Surface active agents | Aniline | Graphene | Epoxy resins | Graphite | Polymerization | Peroxides | Comparative analysis | Sulfates
Journal Article
Journal of Antimicrobial Chemotherapy, ISSN 0305-7453, 11/2012, Volume 67, Issue 11, pp. 2621 - 2625
Journal Article
Micron (Oxford, England : 1993), ISSN 0968-4328, 2019, Volume 117, Issue C, pp. 8 - 15
•Electron imaging strategies are compared for LC-TEM and cryo-EM.•BF-TEM and EFTEM imaging give strongest SNR for thick, low contrast samples.•Low STEM... 
LC-TEM | Low convergence angle STEM | Radiation damage | Biological LC-TEM | Energy filtered TEM | GOLD | COMPLEX | BIOMINERALIZATION | BIOFILMS | MICROSCOPY | NM RESOLUTION | GROWTH | RADIATION-DAMAGE | WATER | Electron microscopy | Biological products | Radiation
Journal Article
Scripta materialia, ISSN 1359-6462, 2015, Volume 99, pp. 5 - 8
Journal Article
Chemistry of Materials, ISSN 0897-4756, 01/2015, Volume 27, Issue 2, pp. 629 - 634
Recently, there has been considerable interest in the perovskite phase Na0.5Bi0.5TiO3 (NBT) as a promising lead-free piezoelectric material. Here we report low... 
SYSTEM | CHEMISTRY, PHYSICAL | TEM | STRAIN | PHASE-TRANSITIONS | MATERIALS SCIENCE, MULTIDISCIPLINARY
Journal Article
Nano letters, ISSN 1530-6992, 2015, Volume 15, Issue 5, pp. 2998 - 3007
alpha-MnO2 is a promising material for Li-ion batteries and has unique tunneled structure that facilitates the diffusion of Li+. The overall electrochemical... 
in-situ TEM | MnO 2 | tunneled structure | nanowires | Li-ion batteries | MnO2 | MATERIALS SCIENCE
Journal Article
PLoS Genetics, ISSN 1553-7390, 2015, Volume 11, Issue 2, pp. 1 - 29
The asymmetrically dividing yeast S. cerevisiae assembles a bipolar spindle well after establishing the future site of cell division (i.e., the bud neck) and... 
MITOSIS | CELL-DIVISION | CDC14 PHOSPHATASE | LOCALIZATION | IN-VITRO REGULATION | COMPLEX | NETWORK | PROTEIN-KINASE | GENETICS & HEREDITY | SIN ASYMMETRY | CHECKPOINT | Life Sciences | Biophysics | Cellular Biology | Biochemistry, Molecular Biology | Proteins | Yeast | Asymmetry | Surveillance | Cell cycle | Cell division | Symmetry
Journal Article