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A transparent cylindrical conduit (port) has been developed to resect deep-seated lesions using the endoscope or, more recently, Video Telescopic Operating Microscopy (VTOM) for visualization.
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The extent to which a model heterogeneous electrochemical reaction can be addressed in two-dimensions was explored at Si(100) photoanodes using scanning electrochemical microscopy operating in surface-generation/tip-collection mode.
Transmission electron microscopy (TEM) was taken with a JEOL model JEM2100 (JEOL Ltd., Tokyo, Japan) transmission electron microscopy and operating at 200 kV.
An attempt was made to study the surface force behaviour and topography of 316L (0.015, 0.198 and 0.556% N) stainless steels (SS) under different surface conditions (as-polished, passivated in 0.5 M NaCl (ex situ and in situ)), using an electrochemical atomic force microscopy (ECAFM) operating in air and liquid environments.
Then, the samples were coated with gold and imaged using a FEI Quanta Inspect F with field emission gun (FEG), operating in Scanning Electron Microscopy (SEM) mode.
Transmission electron microscopy (TEM) images were taken on an H-8100 transmission electron microscopy operated at 200 kV.
The morphologies were examined by scanning electron microscopy (SEM, ZEISS Ultra 55) and field-emission transmission electron microscopy (FETEM, JEM2010) operating at 200 kV.
TEM measurements were made in a JEM-2100 transmission electron microscopy operated at an accelerating voltage of 200 kV.
The insulating characteristics of the oxide-covered surfaces were investigated by scanning electrochemical microscopy operated in the feedback mode, using ferrocene-methanol as redox mediator.
Thermal and morphological analyses employing differential scanning calorimetry and atomic force microscopy operated in PeakForce Tapping mode revealed the semicrystalline nature of the network, which contained stiff crystalline lamellae dispersed in a softer amorphous interstitial.
Figures were imaged by confocal microscopy operated under manual control (LSM5 PASCAL, ZEISS).
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