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Characterization of semiconductors by spectroscopic ellipsometry

This chapter provides a brief yet comprehensive overview of the state-of-the-art in semiconductor characterization using spectroscopic ellipsometry. The concept of ellipsometry as optical technique to determine the state of polarization of light reflected or transmitted from complex-structured and multiple layered semiconductor materials is introduced and laid out in the framework of the Jones vec

Oxidative damage, genetic and epigenetic alterations in hexavalent chromium exposed workers - A cross-sectional study within the SafeChrom project

Background: Hexavalent chromium (Cr(VI)) is a lung cancer carcinogen. However, the genotoxic and mutagenic effects of Cr(VI) in humans at low-to-moderate occupational exposure levels are unknown. This study aims to investigate the relationship between occupational exposure to Cr(VI) and the presence of oxidative damage, genetic and epigenetic alterations. Methods: We included 113 Cr(VI) exposed wo

Growth of non-polar and semi-polar GaN on sapphire substrates by magnetron sputter epitaxy

Non-polar and semi-polar III-nitrides have beneficial properties for various electronic applications such as light emitting diodes and photodetectors due to the elimination or reduction of polarization effects. However, cost-effective manufacturing of non-polar and semi-polar III-nitride films with sufficient film quality is not feasible yet. We report an investigation of the morphological and str

Resolving active species during the carbon monoxide oxidation over Pt(111) on the microsecond timescale

Catalytic studies traditionally rely on steady-state conditions resulting in time-averaged datasets that do not differentiate between active and spectator species. This limitation can cause misinterpretations of catalytic function, as the signal of short-lived intermediates responsible for producing desired reaction products is often masked by more intense spectator species. Time-resolved ambient

Evaluation of methods for aerosolising polystyrene latex nanoparticles and assessment of their toxicity

Aerosolised Polystyrene Latex (PSL) nanoparticles are, due to their well-defined size, spherical shape, and inert surface, useful in many experimental applications, including studies of particle deposition in the human lung. Aerosolising nanoparticles entails added challenges, and nanoparticles can potentially be more hazardous than otherwise equivalent microparticles. The objective of this work w

BMI-residualized data uncovers a cluster of people with type 2 diabetes and increased serum ferritin protected from cardiovascular disease

Background: Understanding the relationship between serum ferritin levels and cardiovascular outcomes in type 2 diabetes is crucial for improving risk stratification and guiding therapeutic interventions aimed at preventing major adverse cardiovascular events (MACE). This study aimed to identify distinct clusters of individuals with type 2 diabetes who have varying risks of MACE using a data-driven

Ultrafast two-electron transfer drives 2MLCT to 2LMCT excited state conversion in a novel iron(III) dual charge transfer absorber complex

The development of sustainable photosensitiser complexes based on Earth-abundant metallic elements is important for sustainable solar energy conversion and green synthesis through photocatalysis. We report the synthesis and characterisation of a new bis(tripodal) iron(III) N-heterocyclic carbene complex [Fe(PhB{impy}3)2]+ (PhB{impy}3 = phenyltris(imidazo-[1,5-a]-pyridinylidene)borate) featuring -e

The Role of α-Synuclein-DNAJB6b Coaggregation in Amyloid Suppression

Chaperones may retard the aggregation of other proteins and increase their solubility. An important goal is a thermodynamic understanding of such an action. Here, the chaperone DNAJB6b (JB6) is found to suppress amyloid formation of the protein α-synuclein (α-syn) leading to a reduced rate of fibril formation and an increase in apparent solubility of α-syn. These findings were reached at mildly ac

Photoinduced Hydrogen Evolution Catalyzed by Co(II) Complexes of N5-Donor Ligands

Three new cobalt complexes of the general formula [Co(II)(L)(CH3CN)]2+, where L is one of three pentadentate nitrogen-donor ligands based on the N4Py framework, have been synthesized and characterized. The capacity of the three complexes to effect photocatalytic proton reduction has been examined. Their photocatalytic activities in the presence of [Ru(bpy)3]2+, acting as a photosensitizer, and asc

Myocardial infarction in ANCA-associated vasculitis : A population-based cohort study

Objectives To determine the incidence rate (IR) and predictors of myocardial infarction (MI) in patients with antineutrophil cytoplasmic autoantibody (ANCA)-associated vasculitis (AAV) as well as to estimate the IR ratio (IRR) of MI in AAV versus the background population. Methods 325 patients diagnosed with AAV 1997-2016 in Skåne, Sweden were included. Data were collected from the time of AAV dia

Chemical reaction mechanism between trimethylgallium and oxygen for β-gallium oxide growth: Thermodynamic and experimental studies

The metalorganic chemical vapor deposition (MOCVD) dynamics of beta-gallium oxide (β-Ga2O3) growth using trimethylgallium (TMGa) and oxygen as precursors were investigated through both theoretical thermodynamic analysis and experimental validation in a horizontal low-pressure hot-wall reactor. Thermodynamic analysis revealed that high-purity β-Ga2O3 can be grown through the complete combustion of

Scalable Vertical In-Ga-As Nanowire MOSFET With 67 mV/dec at 126μm Gate Width

Heterogeneous integration of III-V narrow bandgap transistors on silicon technology is desirable for high frequency circuit implementations. Such high-speed transistors must, however, scale to large gate widths to be suitable for general circuit design. Averaging among many variable channels is a key challenge for nanowire devices. A simplified, but high-speed compatible, nanowire device process w

Terahertz frequency-domain 4 × 4 Mueller matrix ellipsometer instrument designed for high-frequency magnetic resonance measurements

We report a Mueller matrix ellipsometer design using dual continuously rotating anisotropic meta wave plates, which determines the full set of Mueller matrix elements in the terahertz spectral range. The instrument operates in the frequency domain and employs a frequency tunable, solid state synthesizer based, continuous wave terahertz source with sub-MHz bandwidth. The implemented source permits

The compositional homogeneity of the metal particle during vapor–liquid–solid growth of nanowires

The vapor–liquid–solid (VLS) mechanism is probably the most versatile method to fabricate semiconductor nanowires and several investigations assume a compositionally homogeneous catalyst particle. In this investigation we address the compositional homogeneity of the catalyst particle during growth of nanowires. Using diffusion calculations, we show that the particle is indeed homogeneous during VL

S100A9 Links Inflammation and Repair in Myocardial Infarction

RATIONALE: The alarmin S100A9 has been identified as a potential therapeutic target in myocardial infarction. Short-term S100A9 blockade during the inflammatory phase post-myocardial infarction inhibits systemic and cardiac inflammation and improves cardiac function long term. OBJECTIVE: To evaluate the impact of S100A9 blockade on postischemic cardiac repair. METHODS AND RESULTS: We assessed card

A new efficient method to detect genetic interactions for lung cancer GWAS

Background: Genome-wide association studies (GWAS) have proven successful in predicting genetic risk of disease using single-locus models; however, identifying single nucleotide polymorphism (SNP) interactions at the genome-wide scale is limited due to computational and statistical challenges. We addressed the computational burden encountered when detecting SNP interactions for survival analysis,

Direct Conversion of Human Stem Cell-Derived Glial Progenitor Cells into GABAergic Interneurons

Glial progenitor cells are widely distributed in brain parenchyma and represent a suitable target for future therapeutic interventions that generate new neurons via in situ reprogramming. Previous studies have shown successful reprogramming of mouse glia into neurons whereas the conversion of human glial cells remains challenging due to the limited accessibility of human brain tissue. Here, we hav

Three-dimensional microstructure of human meniscus posterior horn in health and osteoarthritis

Objective: To develop and perform ex vivo 3D imaging of meniscus posterior horn microstructure using micro-computed tomography (μCT), and to compare specimens from healthy references against end-stage osteoarthritis (OA) using conventional section-based histology and qualitative μCT. Design: We retrieved human medial and lateral menisci from 10 deceased donors without knee OA (healthy references)

ADAM-17 Activity and Its Relation to ACE2 : Implications for Severe COVID-19

There is a lack of studies aiming to assess cellular a disintegrin and metalloproteinase-17 (ADAM-17) activity in COVID-19 patients and the eventual associations with the shedding of membrane-bound angiotensin-converting enzyme 2 (mACE2). In addition, studies that investigate the relationship between ACE2 and ADAM-17 gene expressions in organs infected by SARS-CoV-2 are lacking. We used data from

Structural characterization of E22G Aβ1-42 fibrils via1H detected MAS NMR

Amyloid fibrils have been implicated in the pathogenesis of several neurodegenerative diseases, the most prevalent example being Alzheimer's disease (AD). Despite the prevalence of AD, relatively little is known about the structure of the associated amyloid fibrils. This has motivated our studies of fibril structures, extended here to the familial Arctic mutant of Aβ1-42, E22G-Aβ1-42. We found E22