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81.
Semiconducting CrSi2 nanocrystallites (NCs) were grown by reactive deposition epitaxy of Cr onto n -type silicon and covered with a 50-nm epitaxial silicon cap. Two types of samples were investigated: in one of them, the
NCs were localized near the deposition depth, and in the other they migrated near the surface. The electrical characteristics
were investigated in Schottky junctions by current-voltage and capacitance-voltage measurements. Atomic force microscopy (AFM),
conductive AFM and scanning probe capacitance microscopy (SCM) were applied to reveal morphology and local electrical properties.
The scanning probe methods yielded specific information, and tapping-mode AFM has shown up to 13-nm-high large-area protrusions
not seen in the contact-mode AFM. The electrical interaction of the vibrating scanning tip results in virtual deformation
of the surface. SCM has revealed NCs deep below the surface not seen by AFM. The electrically active probe yielded significantly
better spatial resolution than AFM. The conductive AFM measurements have shown that the Cr-related point defects near the
surface are responsible for the leakage of the macroscopic Schottky junctions, and also that NCs near the surface are sensitive
to the mechanical and electrical stress induced by the scanning probe. 相似文献
82.
In this article, a scanning probe method based on nanoscale capacitance measurements was used to investigate the lateral homogeneity
of the electron mean free path both in pristine and ion-irradiated graphene. The local variations in the electronic transport
properties were explained taking into account the scattering of electrons by charged impurities and point defects (vacancies).
Electron mean free path is mainly limited by charged impurities in unirradiated graphene, whereas an important role is played
by lattice vacancies after irradiation. The local density of the charged impurities and vacancies were determined for different
irradiated ion fluences. 相似文献
83.
Vecchio C Sonde S Bongiorno C Rambach M Yakimova R Raineri V Giannazzo F 《Nanoscale research letters》2011,6(1):269
In this work, we present a nanometer resolution structural characterization of epitaxial graphene (EG) layers grown on 4H-SiC
(0001) 8° off-axis, by annealing in inert gas ambient (Ar) in a wide temperature range (T
gr from 1600 to 2000°C). For all the considered growth temperatures, few layers of graphene (FLG) conformally covering the 100
to 200-nm wide terraces of the SiC surface have been observed by high-resolution cross-sectional transmission electron microscopy
(HR-XTEM). Tapping mode atomic force microscopy (t-AFM) showed the formation of wrinkles with approx. 1 to 2 nm height and
10 to 20 nm width in the FLG film, as a result of the release of the compressive strain, which builds up in FLG during the
sample cooling due to the thermal expansion coefficients mismatch between graphene and SiC. While for EG grown on on-axis
4H-SiC an isotropic mesh-like network of wrinkles interconnected into nodes is commonly reported, in the present case of a
vicinal SiC surface, wrinkles are preferentially oriented in the direction perpendicular to the step edges of the SiC terraces.
For each T
gr, the number of graphene layers was determined on very small sample areas by HR-XTEM and, with high statistics and on several
sample positions, by measuring the depth of selectively etched trenches in FLG by t-AFM. Both the density of wrinkles and
the number of graphene layers are found to increase almost linearly as a function of the growth temperature in the considered
temperature range. 相似文献
84.
Giarola M Rossi B Mosconi E Fontanella M Marzola P Scambi I Sbarbati A Mariotto G 《Lipids》2011,46(7):659-667
In the last 20 years increasing interest has been devoted to the investigation of white adipose tissue (WAT) because hypo-
or hyperfunction of WAT is involved in the pathogenesis of obesity and other pathologies. The investigation and discrimination
of different characteristics in adipose tissues by means of spectroscopic techniques appears as a topic of current interest,
also in view of possible medical–technological applications. The aim of this work was to establish micro-Raman spectroscopy
as a tool for the characterization of mammals fat tissue. After preliminary tests aimed at defining a suitable sample preparation
protocol, Raman spectra of WAT specimens excised from mice of different ages were recorded in the energy range 750–3,350 cm−1. Quantitative values of the unsaturation index were obtained through the calibration with HR-NMR spectra of lipid extracts.
Raman spectroscopy detected a sharp increase in the unsaturation index between 22 and 30 days of age in close correspondence
with the weaning of mice (21 days). The present results show that Raman spectroscopy is an inexpensive, fast and robust technique
to analyze the unsaturation index of mammals fat tissues that could be routinely used in bioptic samples. 相似文献
85.
The use of austenitic nickel-containing stainless steels as concrete reinforcement offers excellent corrosion protection for concrete structures in harsh chloride bearing environments but is often limited due to the very high costs of these materials. Manganese bearing nickel-free stainless steels can be a cost-effective alternative for corrosion resistant reinforcements. Little, however, is known about the electrochemistry and even less on surface chemistry of these materials in alkaline media simulating concrete pore solutions. In this work a combined electrochemical (ocp = open circuit potential) and XPS (X-ray photoelectron spectroscopy) surface analytical investigation on the austenitic manganese bearing DIN 1.4456 (X8CrMnMoN18-18-2) stainless steel immersed into 0.1 M NaOH and more complex alkaline concrete pore solutions was performed. The results show that the passive film composition changes with immersion time, being progressively enriched in chromium oxy-hydroxide becoming similar to the conventional nickel-containing stainless steels. The composition of the metal interface beneath the passive film is strongly depleted in manganese and enriched in iron; chromium has nearly the nominal composition. The results are discussed regarding the film growth mechanism (ageing) of the new nickel-free stainless steel in alkaline solutions compared to traditional austenitic steels. Combining the results from pitting potential measurements with the composition of the passive film and the underlying metal interface, it can be concluded that the resistance against localized corrosion of the new nickel-free stainless steel relies on the strong chromium(III) and molybdenum (VI) oxy-hydroxide enrichment in the passive film. 相似文献
86.
Gloria Ravegnini Bruno Fosso Viola Di Saverio Giulia Sammarini Federica Zanotti Giulio Rossi Monica Ricci Federica DAmico Giorgia Valori Antonella Ioli Silvia Turroni Patrizia Brigidi Patrizia Hrelia Sabrina Angelini 《International journal of molecular sciences》2020,21(24)
Gastric cancer (GC) is the fifth most prevalent cancer worldwide and the third leading cause of global cancer mortality. With the advances of the omic studies, a heterogeneous GC landscape has been revealed, with significant molecular diversity. Given the multifaceted nature of GC, identification of different patient subsets with prognostic and/or predictive outcomes is a key aspect to allow tailoring of specific treatments. Recently, the involvement of the microbiota in gastric carcinogenesis has been described. To deepen this aspect, we compared microbiota composition in signet-ring cell carcinoma (SRCC) and adenocarcinoma (ADC), two distinct GC subtypes. To this purpose, 10 ADC and 10 SRCC and their paired non-tumor (PNT) counterparts were evaluated for microbiota composition through 16S rRNA analysis. Weighted and unweighted UniFrac and Bray–Curtis dissimilarity showed significant community-level separation between ADC and SRCC. Through the LEfSe (linear discriminant analysis coupled with effect size) tool, we identified potential microbial biomarkers associated with GC subtypes. In particular, SRCCs were significantly enriched in the phyla Fusobacteria, Bacteroidetes, Patescibacteria, whereas in the ADC type, Proteobacteria and Acidobacteria phyla were found. Overall, our data add new insights into GC heterogeneity and may contribute to deepening the GC classification. 相似文献
87.
The influence of drop coalescence and breakup on the existence of multiple steady states is studied for a two-phase stirred isothermal reactor where the chemical reaction in the d?ispersed phase obeys the rate expression ? r = kC/(1 + KC)2. The random coalescence model developed by Curl was simulated using a modified Spielman and Levenspiel Monte Carlo technique.For certain range of the coalescence rate, Damköhler number, and dimensionless feed concentration, multiple steady states have been investigated.A special case has also been considered wherein the existence of multiple steady states for finite values of the coalescence rate is contrasted to the unique steady state solution for an infinite coalescence rate. 相似文献
88.
89.
Vitamin E acetate addition to poly(d,l)lactic acid modifies its mechanical behavior without affecting biocompatibility 下载免费PDF全文
Mechanical properties of poly(d,l )lactic acid films enriched with Vitamin E and Vitamin E Acetate (5–40% w/w) were investigated. The addition of both formulations resulted in increased polymer Young's modulus and tensile strength. Human foreskin fibroblasts and murine pre‐osteoblasts were used to assess the biocompatibility of polymers. Pre‐osteoblasts adhesion and proliferation were strongly decreased by Vitamin E, whereas Vitamin E Acetate did not alter cell proliferation. Collagen deposition was lower onto Vitamin E blended polymers than onto native and Vitamin E Acetate blended ones. Fibroblasts adhesion and proliferation were increased by both Vitamin E and Vitamin E Acetate addition. © 2013 Wiley Periodicals, Inc. J. Appl. Polym. Sci., 2014 , 131, 39970. 相似文献
90.
Filippo Rossi Xanthippi Chatzistavrou Giuseppe Perale Aldo R. Boccaccini 《应用聚合物科学杂志》2012,123(1):398-408
Hydrogels studied in this investigation, synthesized starting from agarose and Carbomer 974P, were chosen for their potential use in tissue engineering. The strong ability of hydrogels to mimic living tissues should be complemented with optimized degradation time profiles: a critical property for biomaterials but essential for the integration with target tissue. In this study, chosen hydrogels were characterized both from a rheological and a structural point of view before studying the chemistry of their degradation, which was performed by several analysis: infrared bond response [Fourier transform infrared (FT‐IR)], calorimetry [differential scanning Calorimetry (DSC)], and % mass loss. Degradation behaviors of Agar‐Carbomer hydrogels with different degrees of crosslinkers were evaluated monitoring peak shifts and thermal property changes. It was found that the amount of crosslinks heavily affect the time and the magnitude related to the process. The results indicate that the degradation rates of Agar‐Carbomer hydrogels can be controlled and tuned to adapt the hydrogel degradation kinetics for different cell housing and drug delivery applications. © 2011 Wiley Periodicals, Inc. J Appl Polym Sci, 2011 相似文献