- Research Article
- 10.1093/mam/ozaf048.828
Feature Enhancement during Dictionary Learning Reconstructions of Scanning Transmission Electron Microscope Images
- Jul 25, 2025
- Microscopy and Microanalysis
- Richard Jinschek + 6 more +6
Publications from 2021 to 2026
Showing 10 of 12 papers
Feature Enhancement during Dictionary Learning Reconstructions of Scanning Transmission Electron Microscope Images
3D Printing by Two‐Photon Polymerization of Polyimide Objects and Demonstration of a 3D‐printed Micro‐Hotplate
Abstract Polyimides are polymeric materials with outstanding thermal, chemical, and mechanical properties. For this reason, they find applications in several engineering sectors, including aerospace, microsystems, and biomedical applications. For realizing 3D structures made of polyimides, 3D printing is an attractive technique because it overcomes the limitations of polyimide processing using conventional manufacturing techniques such as molding and subtractive manufacturing. However, current polyimide 3D printing approaches are limited to realizing objects with the smallest dimensions of the order of a few hundred micrometers. 3D printing of polyimide objects featuring sub‐micrometer resolution using two‐photon polymerization by direct laser writing is demonstrated here. A negative photosensitive polyimide is applied that is widely used in microsystems applications. To demonstrate the utility of this polyimide 3D printing approach and the compatibility of the 3D objects with operation at elevated temperatures, a micro‐hotplate is 3D printed and characterized at operating temperatures of above 300 °C.
Read moreOperational experiences of chemical-looping combustion with 18 manganese ores in a 300W unit
Digital electronics platform-based supercontinuum light detection for mid-infrared trace gas sensing
We present a digital platform-based lock-in detection scheme to improve the gas sensing performance of a spectrometer. A numerically-controlled oscillator serves as reference clock to trigger the supercontinuum source and to demodulate the detector signal.
Read moreStudy on human subjects – influence of stress and alcohol in simulated traffic situations
This report presents a research study plan on human subjects – the influence of stress and alcohol in simulated traffic situations under an H2020 project named SIMUSAFE. This research study focuses on road-users’, i.e., car drivers, motorcyclists, bicyclists and pedestrians, behaviour in relation to retrospective studies, where interaction between the users are considered. Here, the study includes sample size, inclusion/exclusion criteria, detailed study plan, protocols, potential test scenarios and all related ethical issues. The study plan has been included in a national ethics application and received approval for implementation.
Read moreAirborne campaign results of a compact 2-4um broadband supercontinuum-based spectrometer system for multi-species atmospheric gas analysis at ppm level
\n Contains fulltext :\n 244761.pdf (Publisher’s version ) (Open Access)\n
Relationship and dependencies between factors affecting new product development process: an industrial case study
Graphene ribbons with suspended masses as transducers in ultra-small nanoelectromechanical accelerometers
Nanoelectromechanical system (NEMS) sensors and actuators could be of use in the development of next generation mobile, wearable, and implantable devices. However, these NEMS devices require transducers that are ultra-small, sensitive and can be fabricated at low cost. Here, we show that suspended double-layer graphene ribbons with attached silicon proof masses can be used as combined spring-mass and piezoresistive transducers. The transducers, which are realized using processes that are compatible with large-scale semiconductor manufacturing technologies, can yield NEMS accelerometers that occupy at least two orders of magnitude smaller die area than conventional state-of-the-art silicon accelerometers.
Read moreOn-chip Spectroscopy of CO2 with MIR Waveguides
We review our recent work on spectroscopic sensing of carbon dioxide in the mid-infrarded region around 4.3 pm using suspended silicon waveguides. Our waveguides are built on standard silicon-on-insulator substrates and acheive high sensitivity to gas.
Read moreCompact, UAV compatible, broadband, uncooled Spectrometer for multi-species atmospheric gas analysis
We present the realization of the broadband, UAV compatible, atmospheric gas spectrometer developed in the frame of the H2020 FLAIR project, and the preliminary calibration results obtained in the laboratory before field testing.
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