Results 121 to 130 of about 86,621 (303)
Plasma Etching of Aluminum Nitride and Molybdenum in Multidimensional MEMS Structures
The transition to 3D device architectures is a rapidly advancing trend in microelectronics. As a result, several manufacturing technologies have has to rapidly evolve to meet the challenge of more complex structures, whilst maintaining the high precision
Tarmo Nieminen +2 more
doaj +1 more source
Metal‐free carbon catalysts enable the sustainable synthesis of hydrogen peroxide via two‐electron oxygen reduction; however, active site complexity continues to hinder reliable interpretation. This review critiques correlation‐based approaches and highlights the importance of orthogonal experimental designs, standardized catalyst passports ...
Dayu Zhu +3 more
wiley +1 more source
This study shows that alkaline leaching of PrBa0.8Ca0.2Co2O5+δ under anodic bias selectively removes Ba and Ca, forming a cobalt‐rich and amorphous layer. The modified surface significantly boosts ORR activity, offering a simple and effective strategy to improve electrochemical device performance.
Yeongtaek Hong +11 more
wiley +1 more source
Opportunities of Semiconducting Oxide Nanostructures as Advanced Luminescent Materials in Photonics
The review discusses the challenges of wide and ultrawide bandgap semiconducting oxides as a suitable material platform for photonics. They offer great versatility in terms of tuning microstructure, native defects, doping, anisotropy, and micro‐ and nano‐structuring. The review focuses on their light emission, light‐confinement in optical cavities, and
Ana Cremades +7 more
wiley +1 more source
Influence of oxygen plasma on the material properties of Two-Photon polymerized microstructures
O2 plasma exposure is a convenient postprocessing method for refining 3D microstructures fabricated by two-photon polymerization, which provides an effective way to achieve sub-micrometer resolution with remarkable feature control.
Jone M. Elorrieta +6 more
doaj +1 more source
This study demonstrates a self‐assembly process to generate free‐standing piezoelectric nanomembranes, forming ultracompact microtubular acoustic wave sensors and actuators. The miniaturized 3D piezoelectric platform reported in this work can be applied in telecommunication, energy harvesting, and acoustofluidics. Moreover, the 3D self‐assembly can add
Raphaël C. L‐M. Doineau +9 more
wiley +1 more source
RF reactor with asymmetrical electrodes for reactive ion etching of semiconductors [PDF]
Results of experimental and theoretical study of RF CCP reactor for reactive ion etching of semiconductors are presented. Breakdown curve and domain of the discharge existence are measured in various gases (argon, fluorocarbon, oxygen).
Dudin S. V. +3 more
doaj
This review systematically summarizes recent advances in porosity engineering of MXenes, with a focused discussion on their structure‐governed energy storage properties. A critical analysis of structure–property relationships is presented across alkali‐ion batteries, multivalent‐ion batteries, and supercapacitors.
Shude Liu +8 more
wiley +1 more source
Diamond etching with near-zero micromasking
The outstanding material properties of single-crystal diamond have been the origin of the long-standing interest in its exploitation for engineering of high-performance micro- and nanosystems. Etching and patterning diamond have proven challenging due to
Xiangbing Wang +6 more
doaj +1 more source
Flexible Dielectric Acoustic Resonator Patch for Tissue Regeneration
A flexible dielectric acoustic resonator patch enables MHz‐range ultrasound generation through resonance amplification without using piezoelectric materials. Conformal integration on a curved substrate allows efficient acoustic delivery to tissue‐mimicking environments.
Donyoung Kang +7 more
wiley +1 more source

