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Recent advances in single crystal narrow band-gap semiconductor nanomembranes and their flexible optoelectronic device applications: Ge, GeSn, InGaAs, and 2D …
Flexible optoelectronics have attracted much attention in recent years for their potential
applications in healthcare and wearable devices. Narrow bandgap (NBG) semiconductor …
applications in healthcare and wearable devices. Narrow bandgap (NBG) semiconductor …
Residual Stress Characterization in Microelectronic Manufacturing: An Analysis Based on Raman Spectroscopy
Z Yang, X Wang, W Chen, H Tang… - Laser & Photonics …, 2024 - Wiley Online Library
In the rapidly evolving era of information and intelligence, microelectronic devices are
pivotal across various fields, such as mobile devices, big data computing, electric vehicles …
pivotal across various fields, such as mobile devices, big data computing, electric vehicles …
Flexible titanium nitride/germanium-tin photodetectors based on sub-bandgap absorption
S An, Y Liao, M Kim - ACS Applied Materials & Interfaces, 2021 - ACS Publications
We report an enhanced performance of flexible titanium nitride/germanium-tin (TiN/GeSn)
photodetectors (PDs) with an extended photodetection range based on sub-bandgap …
photodetectors (PDs) with an extended photodetection range based on sub-bandgap …
Substrate optimization of flexible temperature sensor for wearable applications
In flexible electronic devices and sensor fabrication, substrate selection is essential as it
determines different parameters and techniques. This paper aims to find an efficient …
determines different parameters and techniques. This paper aims to find an efficient …
GeSn Waveguide Photodetectors with Vertical p–i–n Heterostructure for Integrated Photonics in the 2 μm Wavelength Band
The 2 μm wavelength band (1800–2100 nm) emerges as a promising candidate for next‐
generation optical communication. As a result, silicon photonic platforms acquire great …
generation optical communication. As a result, silicon photonic platforms acquire great …
Transferable single-layer GeSn nanomembrane resonant-cavity-enhanced photodetectors for 2 μm band optical communication and multi-spectral short-wave infrared …
Semiconductor nanomembranes (NMs) have emerged as an attractive nanomaterial for
advanced electronic and photonic devices with attractive features such as transferability and …
advanced electronic and photonic devices with attractive features such as transferability and …
Black germanium photodetector exceeds external quantum efficiency of 160%
In this work, a viable method is demonstrated to realize high‐performance germanium (Ge)
photodetectors (PDs) on the nanostructured Ge surface, namely black Ge, formed by …
photodetectors (PDs) on the nanostructured Ge surface, namely black Ge, formed by …
Transfer-printing-enabled GeSn flexible resonant-cavity-enhanced photodetectors with strain-amplified mid-infrared optical responses
YC Tai, S An, PR Huang, YT Jheng, KC Lee… - Nanoscale, 2023 - pubs.rsc.org
Mid-infrared (MIR) flexible photodetectors (FPDs) constitute an essential element for
wearable applications, including health-care monitoring and biomedical detection …
wearable applications, including health-care monitoring and biomedical detection …
Flexible TiN/Ge photodetectors with enhanced responsivity via localized surface plasmon resonance and strain modulation
Near infrared (NIR) photodetectors (PDs) have attracted great attention for their applications
in the field of optical telecommunication. Ge is one of the most attractive materials for the …
in the field of optical telecommunication. Ge is one of the most attractive materials for the …
Raman scattering study of GeSn under< 1 0 0> and< 1 1 0> uniaxial stress
The application of strain into GeSn alloys can effectively modulate the band structures, thus
creating novel electronic and photonic devices. Raman spectroscopy is a powerful tool for …
creating novel electronic and photonic devices. Raman spectroscopy is a powerful tool for …