Literatura académica sobre el tema "Hydrophobicity scale"

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Artículos de revistas sobre el tema "Hydrophobicity scale"

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Peters, Christoph, and Arne Elofsson. "Why is the biological hydrophobicity scale more accurate than earlier experimental hydrophobicity scales?" Proteins: Structure, Function, and Bioinformatics 82, no. 9 (2014): 2190–98. http://dx.doi.org/10.1002/prot.24582.

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Koehler, Julia, Nils Woetzel, René Staritzbichler, Charles R. Sanders, and Jens Meiler. "A unified hydrophobicity scale for multispan membrane proteins." Proteins: Structure, Function, and Bioinformatics 76, no. 1 (2009): 13–29. http://dx.doi.org/10.1002/prot.22315.

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Wang, Mengjie, Zilong Peng, Chi Li, et al. "Multi-Scale Structure and Directional Hydrophobicity of Titanium Alloy Surface Using Electrical Discharge." Micromachines 13, no. 6 (2022): 937. http://dx.doi.org/10.3390/mi13060937.

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Titanium alloys with special macro-micro composite structures of directional hydrophobicity are difficult to prepare due to poor thermal conductivity and good corrosion resistance, inhibiting the wide engineering applications for aerospace, marine engineering, and biomedicine. To prepare macro-micro composite structures on the surface of titanium alloys and achieve directional hydrophobicity, the sub-millimeter structures with an edge width of 150 μm, a groove width of 250 μm, and a depth of 250 μm were fabricated on the titanium alloy by wire electrical discharge machining (WEDM) technology,
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Liu, Hong, Saman Dharmatilleke, and Andrew A. O. Tay. "A chip scale nanofluidic pump using electrically controllable hydrophobicity." Microsystem Technologies 16, no. 4 (2009): 561–70. http://dx.doi.org/10.1007/s00542-009-0960-9.

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Wimley, William C., and Stephen H. White. "Experimentally determined hydrophobicity scale for proteins at membrane interfaces." Nature Structural & Molecular Biology 3, no. 10 (1996): 842–48. http://dx.doi.org/10.1038/nsb1096-842.

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Urry, Dan W., D. Channe Gowda, Timothy M. Parker, et al. "Hydrophobicity scale for proteins based on inverse temperature transitions." Biopolymers 32, no. 9 (1992): 1243–50. http://dx.doi.org/10.1002/bip.360320913.

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Ali, Siad Dahir, Mette Heidemann Rasmussen, Jacopo Catalano, Christian Husum Frederiksen, and Tobias Weidner. "Bioinspired nanofilament coatings for scale reduction on steel." Beilstein Journal of Nanotechnology 16 (January 9, 2025): 25–34. https://doi.org/10.3762/bjnano.16.3.

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Scaling of steel surfaces, prevalent in various industrial applications, results in significant operational inefficiencies and maintenance costs. Inspired by the natural hydrophobicity of springtail (Collembola) skin, which employs micro- and nanostructures to repel water, we investigate the application of silicone nanofilaments (SNFs) as a coating on steel surfaces to mitigate scaling. Silicone nanofilaments, previously successful on polymers, textiles, and glass, are explored for their hydrophobic properties and stability on steel. Our study demonstrates the successful coating of stainless s
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Park, Sohyun, Jooyoun Kim, and Chung Hee Park. "Influence of micro and nano-scale roughness on hydrophobicity of a plasma-treated woven fabric." Textile Research Journal 87, no. 2 (2016): 193–207. http://dx.doi.org/10.1177/0040517515627169.

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A superhydrophobic fabric surface was fabricated by forming a dual roughness structure in combination with lowered surface energy. The contribution of the innate micro-scale roughness resulting from the waviness of filaments and yarns in a woven fabric on hydrophobicity was investigated in comparison with a smooth film surface. Though the micro-scale roughness coming from the multi-filaments of fabric was conducive in enhancing the hydrophobicity of the surface, the micro-scale roughness itself was not enough to create superhydrophobicity. Thus a nano-scale roughness was introduced by an aniso
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Huang, Xiaochuan, Chen Li, Kuichang Zuo, and Qilin Li. "Predominant Effect of Material Surface Hydrophobicity on Gypsum Scale Formation." Environmental Science & Technology 54, no. 23 (2020): 15395–404. http://dx.doi.org/10.1021/acs.est.0c03826.

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Kapcha, Lauren H., and Peter J. Rossky. "A Simple Atomic-Level Hydrophobicity Scale Reveals Protein Interfacial Structure." Journal of Molecular Biology 426, no. 2 (2014): 484–98. http://dx.doi.org/10.1016/j.jmb.2013.09.039.

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Tesis sobre el tema "Hydrophobicity scale"

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Guo, Hua. "Bio-inspired surface engineering for hydrophobicity." Thesis, Edith Cowan University, Research Online, Perth, Western Australia, 2014. https://ro.ecu.edu.au/theses/1013.

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Highly evolved, efficient and sophisticated biological systems can be used as models for scientific innovations. This research explored specific surface structures on plant leaves with respect to their hydrophobicity in the context of the often arid Australian climate. The relationships between leaf surface structures and their hydrophobicity could inform the making of artificial surfaces with specially designed hydrophobicity. Moderate hydrophobicity and strong surface adhesion were discovered on many study plant leaves. Scanning Electron Microscopy (SEM) revealed that their surface morpholog
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Madsen, Matthew David. "Measurement of Fine Spatial Scale Ecohydrologic Gradients in a Pinyon-Juniper Ecosystem." DigitalCommons@USU, 2008. https://digitalcommons.usu.edu/etd/24.

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With the dramatic expansion of pinyon-juniper woodlands over the last century, improved understanding of how these woodlands modify infiltration properties is needed, in order for land managers to make informed decisions on how to best manage their specific resources. However, current methods for measuring soil infiltration are often limited by low sample sizes and high experimental error, due to constraints associated with remote, non agricultural settings. This thesis first presents a scheme for automating and calibrating two commercially available infiltrometers, which allows collection of
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Eraydin, Mert Kerem. "Scale-up of Using Novel Dewatering Aids." Diss., Virginia Tech, 2009. http://hdl.handle.net/10919/27990.

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Coal preparation plants use large quantities of water for cleaning processes. Upon cleaning, the spent water must be removed such that the final product moisture level meets market constraints. However, removal of free water from the surface of fine particles is difficult and costly, and often the results are less than desirable. Fine particles inherently have very large surface areas, and hence retain large amounts of water. Increased amounts of fines also cause denser particle packing, which creates relatively small capillaries in filter cakes and, thus, cause slower dewatering kinetics. As
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Kuhnert, Matthias. "Quantifizierung von Oberflächenabfluss und Erosion auf Böden mit hydrophoben Eigenschaften." Phd thesis, Universität Potsdam, 2009. http://opus.kobv.de/ubp/volltexte/2009/3287/.

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Die Zielsetzung der vorliegenden Arbeit ist die Beschreibung hydrophober Bodeneigenschaften und deren Auswirkungen auf Oberflächenabfluss und Erosion auf verschiedenen Skalen. Die dazu durchgeführten Untersuchungen fanden auf einer Rekultivierungsfläche im Braunkohlegebiet Welzow Süd (Südostdeutschland) statt. Die Prozesse wurden auf drei Skalen untersucht, die von der Plotskala (1m²) über die Hangskala (300m²) bis zur Betrachtung eines kleinen Einzugsgebietes (4ha) reichen. Der Grad der hydrophoben Bodeneigenschaften wurde sowohl direkt, über die Bestimmung des Kontaktwinkel, als auch indirek
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Lanrezac, André. "Interprétation de données expérimentales par simulation et visualisation moléculaire interactive." Electronic Thesis or Diss., Université Paris Cité, 2023. http://www.theses.fr/2023UNIP7133.

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L'objectif de l'approche des simulations moléculaires interactive (Interactive Molecular Simulations - IMS) est d'observer en direct la dynamique conformationnelle d'une simulation moléculaire en cours. Le retour visuel instantané permet un suivi instructif ainsi que l'observation des changements structurels imposés par la manipulation de l'IMS par l'utilisateur. J'ai mené une étude approfondie des connaissances pour rassembler et synthétiser l'ensemble des recherches qui ont développé l'IMS. La dynamique moléculaire interactive (Interactive Molecular Dynamics - IMD) est l'un des premiers prot
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Matar, Gerald. "Characterization of Membrane Foulants in Full-scale and Lab-scale Membrane Bioreactors for Wastewater Treatment and Reuse." Diss., 2015. http://hdl.handle.net/10754/583561.

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Membrane bioreactors (MBRs) offer promising solution for wastewater treatment and reuse to address the problem of water scarcity. Nevertheless, this technology is still facing challenges associated with membrane biofouling. This phenomenon has been mainly investigated in lab-scale MBRs with little or no insight on biofouling in full-scale MBR plants. Furthermore, the temporal dynamics of biofouling microbial communities and their extracellular polymeric substances (EPS) are less studied. Herein, a multidisciplinary approach was adopted to address the above knowledge gaps in lab- and full-scale
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Yao-QingPeng and 彭耀慶. "Improvement of Hydrophobicity and Macro-scale Tribological Performance of HPMC composite films with stearic acid." Thesis, 2017. http://ndltd.ncl.edu.tw/handle/myt58f.

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碩士<br>國立成功大學<br>機械工程學系<br>105<br>To improve hydrophobicity and tribology performance of HPMC films, two different methods to produce SA/HPMC composite films, namely blending and coating have been studied in this research. Contact angle test was used to characterize the hydrophobicity of surfaces; pin-on-disk, 3D profiler and SEM images of worn surface of samples were used for tribological performance analysis. Experiment results and analysis show that WCA of blending films decrease as SA content increases due to larger surface roughness, whereas the WCA of coating films increase as SA content
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Capítulos de libros sobre el tema "Hydrophobicity scale"

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Urry, Dan W., and Chi-Hao Luan. "A New Hydrophobicity Scale and Its Relevance to Protein Folding and Interactions at Interfaces." In ACS Symposium Series. American Chemical Society, 1995. http://dx.doi.org/10.1021/bk-1995-0602.ch007.

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Vinodhini, R., and M. S. Vijaya. "Label Sequence Learning Based Protein Secondary Structure Prediction Using Hydrophobicity Scales." In Advances in Intelligent and Soft Computing. Springer India, 2012. http://dx.doi.org/10.1007/978-81-322-0491-6_56.

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Zhang, Xiaocheng, Yuan Liao, and Abdul Ghani Razaqpur. "Electrospinning-Based Super Liquid-Repellent Membranes for Membrane Distillation: Theory, Fabrications, Applications, and Challenges." In Electrospinning - Theory, Applications, and Update Challenges [Working Title]. IntechOpen, 2023. http://dx.doi.org/10.5772/intechopen.113146.

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The potential of membrane distillation (MD) in seawater desalination and high-salt wastewater treatment makes it a highly promising application in alleviating the global water crisis. However, membrane fouling and wetting are the main obstacles to the large-scale application of MD. Bio-inspired super liquid-repellent membranes offer a viable resolution to these challenges. The rapid advancement of nanotechnology has stimulated the growing attention toward electrospun nanofiber membranes (ENMs). Electrospun fibers demonstrate excellent functionalization, controllability, and hydrophobicity. The
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Vairaganthan, Pradheena, Gokilapriyavarthini Karthikeyan, and Darshini Subramanian. "BIO SEPARATION-A REMARKABLE PROGRESS FROM PREMATURE TO ADVANCED TECHNIQUE, AN UNPRECEDENTED ADVANCEMENT IN THE FIELD OF BIOTECHNOLOGY." In Futuristic Trends in Biotechnology Volume 3 Book 18. Iterative International Publishers, Selfypage Developers Pvt Ltd, 2024. http://dx.doi.org/10.58532/v3bkbt18p2ch2.

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Bioseparation is the large-scale purification of biological products utilising fundamental engineering and biological ideas. This abstract presents an overview of the remarkable expands and exceptional advancement in bioseparation strategies, which play a crucial role in medicine, biotechnology, and in food industry. The bioseparation uses has spread across numerous sectors, notably in biotechnology. Bioseparation applications were formerly simple, time-consuming, and poor yielding. However, tremendous progress has been made in recent years via the integration of analytical tools, computerizat
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Juretić, Davor, Bono Lučić, Damir Zucić, and Nenad Trinajstić. "Protein transmembrane structure: recognition and prediction by using hydrophobicity scales through preference functions." In Theoretical and Computational Chemistry. Elsevier, 1998. http://dx.doi.org/10.1016/s1380-7323(98)80015-0.

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Hong, Rong-I., and Mark S. P. Sansom. "Computer prediction of transporter topology and structure." In Membrane Transport. Oxford University PressOxford, 2000. http://dx.doi.org/10.1093/oso/9780199637058.003.0009.

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Abstract One of the resources which may be exploited in studying membrane transport proteins is the enormous (and increasing) body of genome sequence data. At the time of writing, complete genomic sequences are known for 21 prokaryotes (1), a yeast (2), and for Caenorhabditis elegans (3). Current estimates suggest that integral membrane proteins comprise about 20–30% of most genomes (4, 5). This provides a strong motivation to exploit this information in terms of trying to understand the relationship between membrane protein sequence and structure (and eventually function). Prediction of prote
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Actas de conferencias sobre el tema "Hydrophobicity scale"

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Zolfaghari, Alireza, Virendra Singh, Manuel Marya, and Vipul Shinde. "Effect of Surface Finish on the Anti-Scaling of a Diamond-Like Carbon Coating." In CONFERENCE 2025. AMPP, 2025. https://doi.org/10.5006/c2025-00294.

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Abstract Diamond-like carbon (DLC) coatings have been used to combat chemical buildup (e.g., scales); however, their appropriate surface finish requirements are occasionally questioned. Surface preparation is critical for ensuring good physical and chemical substrate bonding. With respect to the deposition and adhesion of inorganic scales, there is a performance, practical, and economical need to clarify the role of surface preparation in the performance of thin DLC coatings, specifically coatings with an average roughness, Ra, between 4 μin (0.1 μm) and 250 μin (6.4 μm). This study specifical
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Marya, Manuel, Virendra Singh, Alireza Zolfaghari, and Vipul Shinde. "Friction Reduction Coatings for Carbonate Scale Mitigation: a Comparison of Materials Technologies." In CORROSION 2021. AMPP, 2021. https://doi.org/10.5006/c2021-16533.

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Abstract Scale deposition is a major flow assurance concern in hydrocarbon production and water processes that can be economically managed with the use of suitable friction reduction coatings. In this investigation, the performance of various polymer composite coatings, among single-layer polymer-inorganic filler coatings, multi-layered coatings, and diamond-like carbon (DLC) coatings have been compared on the bases of friction reduction, hardness, and behaviors towards carbonate scales and water wetting. It is seen that (1) the anti-scaling response can differ profoundly among novel polymer c
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Marya, Manuel, Virendra Singh, and Alireza Zolfaghari. "Challenges and Solutions with Polymer, Polymer-Like Carbon, and Diamond-Like Carbon Coatings against Geothermal Scaling and Corrosion." In CONFERENCE 2023. AMPP, 2023. https://doi.org/10.5006/c2023-18808.

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Abstract Over a dozen commercial and new polymer, polymer-like carbon (PLC), and diamond-like carbon (DLC) coatings originally developed for the Oil &amp; Gas industry show promising characteristics against geothermal carbonate scales. This paper discusses the major findings of both (a) calcium carbonate scale tests and (b) corrosion tests at two temperatures and with multiple brines, including a carbonate-forming brine and a high-chloride acidic brine. Coating performance Vs. characteristics such as thickness, surface roughness, and water contact angles, is also investigated. In general, thin
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Raheem, Kabir, Olujide Sanni, Thibaut Charpentier, and Anne Neville. "Impact of Surface Conditions on Calcium Carbonate (CaCO3) Scaling Kinetics in a Once-Through Capillary Flow Rig." In CORROSION 2021. AMPP, 2021. https://doi.org/10.5006/c2021-16562.

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Abstract Mineral scale formation is one of the most common deleterious challenges in oil and gas production, restricting the steady flow of fluids. It poses major safety &amp; operational issues and results in significant costs due to loss of production and remediation when not properly managed. Recent studies have shown that scaling processes on the surface are not necessarily a result of precipitation of crystals in the bulk solution and that they do not often share the same trends with regards to crystal growth kinetics and inhibition. Most of the past studies on scale deposition have focus
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Hausler, Rudolf H. "Contribution to the Understanding of H2S Corrosion." In CORROSION 2004. NACE International, 2004. https://doi.org/10.5006/c2004-04732.

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Abstract H2S corrosion is controlled by processes occurring across the corrosion product (FeS) layer and by chemical effects which affect the properties of this layer. Laboratory data are reviewed which clearly demonstrate the parabolic nature of the corrosion kinetics. Along with the corrosion rates the film growth rates were experimentally determined. It was postulated that that the permeability was in essence the parabolic rate constant and could be calculated from the differential weight loss corrosion and the associated film weight. The permeability could then be examined as a function of
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Guan, Xiuhan, Liyan Wang, Fangsong Li, et al. "Hydrophobicity modification of large-scale PMMA by modularized DBD plasma reactor." In 2022 IEEE Conference on Electrical Insulation and Dielectric Phenomena (CEIDP). IEEE, 2022. http://dx.doi.org/10.1109/ceidp55452.2022.9985352.

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Katsuno, Eduardo Tadashi, Joao Lucas Dozzi Dantas, and Emilio Carlos Nelli Silva. "Analysis of Hydrophobic Painting in Model-Scale Marine Propeller." In ASME 2018 37th International Conference on Ocean, Offshore and Arctic Engineering. American Society of Mechanical Engineers, 2018. http://dx.doi.org/10.1115/omae2018-78209.

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This paper aims to perform a numerical analysis of application effects of a superhydrophobic paint by completely coating the blades of a model-scale marine propeller in order to make it a superhydrophobic surface (SHS). First, a two-dimensional study was conducted. Two foils were analyzed for several hydrophobic conditions, varying the slip length. Pressure and skin friction distributions were shown. There is an increase of lift-to-drag ratio with hydrophobicity, but followed by an increase in suction pressure. In three-dimensional case, a propeller was simulated for several hydrophobic condit
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Gordon, Timothy D., and Thomas J. McCarthy. "Drag-Reduction and Slip: An Investigation of Size Scale and Hydrophobicity Effects." In ASME 2000 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 2000. http://dx.doi.org/10.1115/imece2000-2087.

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Abstract Experiments indicate that hydrodynamic drag may be reduced by using ultrahydrophobic substrates to induce slip at the solid-liquid interface. The connection between drag-reduction and slip is explored, and these previously isolated fields are joined into a single, more comprehensive area of research. We present data from two experimental techniques indicating the role of hydrophobicity and size scale in drag-reduction. In one series of studies, water was directed through a channel containing two rectangular plates of smooth silicon. Flow rates for smooth non-hydrophobic plates and smo
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Chen, Min, Bing-Yang Cao, and Zeng-Yuan Guo. "Micro/Nano-Scale Fluid Flows on Structured Surfaces." In ASME 2008 6th International Conference on Nanochannels, Microchannels, and Minichannels. ASMEDC, 2008. http://dx.doi.org/10.1115/icnmm2008-62023.

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Understanding the effects of surface nanostructures on fluid flow in micro- and nano-channels is highly desirable for micro/nano-electro-mechanical systems. By way of equilibrium and non-equilibrium molecular dynamics simulations, wetting on nano-structured surfaces and liquid flow in nano-channels with structured surfaces are simulated. The surfaces show dual effects on the boundary slip and friction of the liquid flow in nano-channels. Generally, the nanostructures enhance the surface hydrophilicity for a hydrophilic liquid-solid interaction, and increase the hydrophobicity for a hydrophobic
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Mastud, Sachin, Mayank Garg, Ramesh Singh, Johnson Samuel, and Suhas Joshi. "Experimental Characterization of Vibration-Assisted Reverse Micro Electrical Discharge Machining (EDM) for Surface Texturing." In ASME 2012 International Manufacturing Science and Engineering Conference collocated with the 40th North American Manufacturing Research Conference and in participation with the International Conference on Tribology Materials and Processing. American Society of Mechanical Engineers, 2012. http://dx.doi.org/10.1115/msec2012-7314.

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There are several examples in nature where the biological surfaces exhibit unique functional response, such as velcro, fish scale and lotus leaves. The texture on lotus leaf exhibits super-hydrophobicity and self cleaning properties. Lotus leaf has hemispherical protrusions of 20–30 μm in diameters which are randomly distributed over the surface. This work is focused on creating similar textured surfaces on Ti6Al4V rods via a vibration assisted reverse micro Electrical Discharge Machining (R-MEDM) process. Textured surfaces containing micropillars of 40–50 μm in diameter spaced at 35 μm have b
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Informes sobre el tema "Hydrophobicity scale"

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Wicker, Louise, and Nissim Garti. Entrapment and controlled release of nutraceuticals from double emulsions stabilized by pectin-protein hybrids. United States Department of Agriculture, 2004. http://dx.doi.org/10.32747/2004.7695864.bard.

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Original Objectives Specific objectives are to: (1) modify charge and hydrophobicity of pectins to improve emulsion stabilizing properties (2) develop emulsions that can be sterically stabilized using modified pectins and/or pectin/protein hybrids (3) obtain submicronal inner emulsion droplets (10-50 nanometers) with small and monodispersed double emulsion (1-2 μm) droplets with long-term stability (possibly by emulsified microemulsions) and (4) trigger and control the release at will. Background Methodology for encapsulation and controlled release of selected addenda, e.g. drugs, vitamins, ph
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