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61.
Ghalib  R. M.  Mehdi  S. H.  Malla  A. M.  Alam  M. G.  Hashim  R.  Novaković  S. B.  Kawamura  F.  Alzahrani  H. A. H. 《Crystallography Reports》2021,66(7):1279-1285
Crystallography Reports - A heterocyclic molecule of a novel class with a multiple ring system has been synthesized using a new and simple strategy and acetic acid as catalyst. The structure of the...  相似文献   
62.
Electrokineticmicroperistaltic pumps are important biomechanical devices that help in targeted drugging of sick body parts. This article is focused on mathematical modeling and analysis of some important aspect of such flows in a rectangular duct with wall properties. Effects of zeta potential, heat source, and deby length are also studied. Carbon nanotubes (CNTs) in the Newtonian base fluid are assumed as drugging material. A comparison of single-walled CNTs and multiwalled CNTs is also presented. It is considered that the walls are flexible and encapsulating the region with limited permeability. The defined flow problem is modeled and analyzed analytically for the transport of CNT–water nanofluid. It is accepted that the flow is steady, nonturbulent, and propagating waves do have a considerably longer wavelength when compared to amplitude. The conditions and assumptions lead to a model of coupled partial differential equations of order two. The exact results using the eigenfunction expansion method are procured and shown accordingly. The predictions about the behavior of important parameters are displayed for single-walled CNT and multiwalled CNT—water nanofluidic behavior—using figures. The impact of sundry parametersis are analyzed. The application of the current study involved a transporting/targeted drug delivery system using peristaltic micropumps and magnetic fields in pharmacological engineering.  相似文献   
63.
Wang  Lili  Luan  Zitong  Zhou  Qin  Biswas  Anjan  Alzahrani  Abdullah Kamis  Liu  Wenjun 《Nonlinear dynamics》2021,104(3):2613-2620
Nonlinear Dynamics - The (2+1)-dimensional generalized coupled nonlinear Schrödinger equation with the four-wave mixing (FWM) term is studied in this paper, which describes the optical...  相似文献   
64.
Mechanics of Composite Materials - The optimal stochastic distribution of carbon nanotubes (CNTs) in nanoreinforced polymer composite of a cantilevered microbeam is investigated. Finite-element...  相似文献   
65.
In this paper we are interested in a technique for solving some nonlinear rational systems of difference equations of third order, in three-dimensional case. Moreover, we study the periodicity of solutions for such systems. Finally, some numerical examples are presented.  相似文献   
66.
We report in the present study the in situ formation of magnetic nanoparticles (Fe3O4 or Fe) within porous N-doped carbon (Fe3O4/N@C) via simple impregnation, polymerization, and calcination sequentially. The synthesized nanocomposite structural properties were investigated using different techniques showing its good construction. The formed nanocomposite showed a saturation magnetization (Ms) of 23.0 emu g−1 due to the implanted magnetic nanoparticles and high surface area from the porous N-doped carbon. The nanocomposite was formed as graphite-type layers. The well-synthesized nanocomposite showed a high adsorption affinity toward Pb2+ toxic ions. The nanosorbent showed a maximum adsorption capacity of 250.0 mg/g toward the Pb2+ metallic ions at pH of 5.5, initial Pb2+ concentration of 180.0 mg/L, and room temperature. Due to its superparamagnetic characteristics, an external magnet was used for the fast separation of the nanocomposite. This enabled the study of the nanocomposite reusability toward Pb2+ ions, showing good chemical stability even after six cycles. Subsequently, Fe3O4/N@C nanocomposite was shown to have excellent efficiency for the removal of toxic Pb2+ ions from water.  相似文献   
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This study involved the utilization of a free radical-graft copolymerization reaction for the development of a novel adsorbent, namely, poly(butyl methacrylate)-grafted alginate/Fe3O4 nanocomposite (PBMA-gft-Alg/Fe3O4). Transmission electron microscopy, scanning electron microscopy, energy-dispersive X-ray analysis, X-ray diffraction patterns analysis, and Fourier transform infrared spectroscopy (FT-IR) were carried out for the characterization of Fe3O4 NPs and PBMA-gft-Alg/Fe3O4 nanocomposites. The capability of nanocomposites and nanoparticles to adsorb dyes such as MG and MB, resulting in their removal from aqueous media, was evaluated under different conditions such as pH, temperature, contact time, and dose of adsorbent. Optimum parameters for adsorption of dyes were found to be pH of 10, 50°C, contact time of 180 min, and 0.2 g of adsorbent. Efficiency of the PBMA-gft-Alg/Fe3O4 nanocomposite was found to be significantly greater than that of Fe3O4 NPs for eliminating the desired dye. Langmuir, Freundlich, Sips, and Temkin models were used for testing the experimental data. Freundlich model was the one that best described the adsorption.  相似文献   
70.
In the present work, a sensitive, accurate and precise RP HPLC method has been established for simultaneous determination of sacubitril and valsartan from rat plasma by using irbesartan as an internal standard. Separation of analytes were carried out on monolithic column using 10?mM phosphate buffer (pH 2.6), methanol and acetonitrile in a proportion of 50:25:25 (v/v). Analytes were monitored using fluorescence detector maintained at an excitation wavelength of 249?nm and an emission wavelength was set at 380?nm till the elution of valsartan as well as internal standard and switched online to 320?nm for sacubitril. Analysis of analytes from rat plasma was carried out by protein precipitation using methanol and acetonitrile. Valsartan and sacubitril showed good linearity in the concentration range of 1–250?ng/ml and 1–200?ng/ml respectively, with good correlation coefficient (r2?≥?0.998). Further, the precision and accuracy of the proposed procedure were suitable as the percent relative standard deviation and percent relative error were well within the acceptable range. The average percent of recovery from the rat plasma was found to be 96.6% and 97.6% for valsartan and sacubitril respectively. The newly proposed method can be used for regular pharmacokinetic studies because of simplicity in sample preparation, short analysis time (<5?min) and good sensitivity.  相似文献   
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