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121.
122.
Sunil Kumar Kuldeep Higinio Ramos Joginder Singh 《Mathematical Methods in the Applied Sciences》2023,46(2):2117-2132
We construct an efficient hybrid numerical method for solving coupled systems of singularly perturbed linear parabolic problems of reaction-diffusion type. The discretization of the coupled system is based on the use of an additive or splitting scheme on a uniform mesh in time and a hybrid scheme on a layer-adapted mesh in space. It is proven that the developed numerical method is uniformly convergent of first order in time and third order in space. The purpose of the additive scheme is to decouple the components of the vector approximate solution at each time step and thus make the computation more efficient. The numerical results confirm the theoretical convergence result and illustrate the efficiency of the proposed strategy. 相似文献
123.
Arumugam Vijaya Anand Balasubramanian Balamuralikrishnan Mohandass Kaviya Kathirvel Bharathi Aluru Parithathvi Meyyazhagan Arun Nachiappan Senthilkumar Shanmugam Velayuthaprabhu Muthukrishnan Saradhadevi Naif Abdullah Al-Dhabi Mariadhas Valan Arasu Mohammad Iqbal Yatoo Ruchi Tiwari Kuldeep Dhama 《Molecules (Basel, Switzerland)》2021,26(6)
The coronavirus disease 2019 (COVID-19) pandemic, caused by severe acute respiratory syndrome corona virus-2 (SARS-CoV-2), is the most important health issue, internationally. With no specific and effective antiviral therapy for COVID-19, new or repurposed antiviral are urgently needed. Phytochemicals pose a ray of hope for human health during this pandemic, and a great deal of research is concentrated on it. Phytochemicals have been used as antiviral agents against several viruses since they could inhibit several viruses via different mechanisms of direct inhibition either at the viral entry point or the replication stages and via immunomodulation potentials. Recent evidence also suggests that some plants and its components have shown promising antiviral properties against SARS-CoV-2. This review summarizes certain phytochemical agents along with their mode of actions and potential antiviral activities against important viral pathogens. A special focus has been given on medicinal plants and their extracts as well as herbs which have shown promising results to combat SARS-CoV-2 infection and can be useful in treating patients with COVID-19 as alternatives for treatment under phytotherapy approaches during this devastating pandemic situation. 相似文献
124.
Pankaj Kumar Vandna Sharma Chinky Jaggi Praveen Malik Kuldeep Kumar Raina 《Liquid crystals》2017,44(5):843-853
Polymer dispersed liquid crystals (PDLCs) using nematic liquid crystal and photo-curable polymer (NOA 65) were prepared by polymerisation-induced phase separation technique, in equal ratio (1:1) of polymer and liquid crystal (LC). We demonstrate that doping of small amount (0.125%, wt./wt.) of multiwall carbon nanotubes (CNTs) and orange azo dichroic dye in PDLC generously controlled the molecular orientation, dynamics of LC in droplet and size of droplets. The effects of multiwall CNTs and dye on PDLCs were studied in terms of transition temperature, droplet morphology, transmittance characteristic, contrast ratio and response time. The results exhibited that the values of the threshold electric fields were reduced from 8 V/µm (pure PDLC) to 1.18 and 1.72 V/µm, doped with multiwall CNTs and dye, respectively. The CNTs-doped PDLC shows faster switching response as compared with pure PDLC and dye-doped PDLC. However, dye-doped PDLC shows much higher contrast among all PDLC samples. Further, the results also illustrate that the birefringence value of LC in PDLCs was changed with doping of CNTs and dye. 相似文献
125.
Dr. Katia Nchimi‐Nono Parastoo Dalvand Dr. Kuldeep Wadhwa Selbi Nuryyeva Shaikha Alneyadi Dr. Thirumurugan Prakasam Dr. Albert C. Fahrenbach Prof. John‐Carl Olsen Dr. Zouhair Asfari Carlos Platas‐Iglesias Dr. Mourad Elhabiri Prof. Ali Trabolsi 《Chemistry (Weinheim an der Bergstrasse, Germany)》2014,20(24):7334-7344
Suppression of the dimerization of the viologen radical cation by cucurbit[7]uril ( CB7 ) in water is a well‐known phenomenon. Herein, two counter‐examples are presented. Two viologen‐containing thread molecules were designed, synthesized, and thoroughly characterized by 1H DOSY NMR spectrometry, UV/Vis absorption spectrophotometry, square‐wave voltammetry, and chronocoulometry: BV 4+, which contains two viologen subunits, and HV 12+, which contains six. In both threads, the viologen subunits are covalently bonded to a hexavalent phosphazene core. The corresponding [3]‐ and [7]pseudorotaxanes that form on complexation with CB7 , that is, BV 4+?( CB 7)2 and HV 12+?( CB 7)6, were also analyzed. The properties of two monomeric control threads, namely, methyl viologen ( MV 2+) and benzyl methyl viologen ( BMV 2+), as well as their [2]pseudorotaxane complexes with CB7 ( MV 2+? CB7 and BMV 2+? CB7 ) were also investigated. As expected, the control pseudorotaxanes remained intact after one‐electron reduction of their viologen‐recognition stations. In contrast, analogous reduction of BV 4+?( CB 7)2 and HV 12+?( CB 7)6 led to host–guest decomplexation and release of the free threads BV 2( . +) and HV 6( . +), respectively. 1H DOSY NMR spectrometric and chronocoulometric measurements showed that BV 2( . +) and HV 6( . +) have larger diffusion coefficients than the corresponding [3]‐ and [7]pseudorotaxanes, and UV/Vis absorption studies provided evidence for intramolecular radical‐cation dimerization. These results demonstrate that radical‐cation dimerization, a relatively weak interaction, can be used as a driving force in novel molecular switches. 相似文献
126.
In vivo proton magnetic resonance spectroscopy (MRS) study of post polio residual paralysis (PPRP) patients 总被引:1,自引:0,他引:1
In-vivo proton MR spectroscopy carried out on post polio residual paralysis (PPRP) patients indicate that the presence or absence of intra-myocellular lipids (IMCL) is related to the severity of the paralysis. It is observed that mildly paralyzed patients are comparable (p > 0.05) with the control subjects in relation to the presence of IMCL, while moderate and severely paralysed patients are comparable (p > 0.05) in relation to the absence of IMCL. In addition, there is reduction or complete absence of creatine, carnitine and choline metabolites in severely paralyzed patients. The ability to detect noninvasively the subtle differences in in vivo, the lipid compartments of muscle may prove to be a valuable tool in understanding the pathogenesis of muscle diseases. This could open up the possibilities in designing effective rehabilitative exercise programs or development of new drug therapies. 相似文献
127.
G. K. Johri Kuldeep Srivastava Manoj Johri Masanori Ozaki Katsumi Yoshino 《Molecular Crystals and Liquid Crystals》2013,570(1):673-681
Abstract An experimental study for R — 4′-(1 methoxycarbonyl – 1 – ethoxy) phenyl 4 – (4 – octyloxyphenyl) benzoate (1MC1EPOPB) ferroelectric liquid crystal (FLC) using impedance analyzer and differential scanning calorimetric (DSC) technique is reported. The measurements have been done for permittivity, dielectric loss at different frequencies and temperatures. The data have been analyzed for distribution parameters involved in Havriliak-Negami's equation. The relaxation time measured for different relaxation processes is listed. The measurements for static dielectric constants in the parallel(ε∥) and perpendicular(ε?) directions at different temperatures have also been taken. The transition temperatures are identified for cooling and heating conditions using DSC technique as well as dielectric measurements. The interesting results have been found and some unknown phases have been monitored, the reason for which needs theoretical interpretation. 相似文献
128.
Kuldeep Mahato Anupriya Baranwal Rohini Kumari Ananya Srivastava Uday Pratap Azad Prof. Dr. Pranjal Chandra 《Electroanalysis》2023,35(9):e202300094
Silver nanoparticles (AgNPs) are one of the most widely used nanomaterials for biomedical applications. However, the impact of its synthesis by chemical and plant-mediated routes on its differential electrochemical behaviour has not been examined till date. Here, we report for the first time the differential study of the electrochemical behaviour of the AgNPs synthesized by different routes. First, the AgNPs were obtained by different routes (chemical and phytofabrication) and extensively characterized to compare their physical properties. Thereafter, a comparison of electron transfer kinetics between chemically synthesized (Ag−C) and phyto-fabricated (Ag-Phy) nanoparticles (NPs) has been studied by electrochemical techniques such as potentiodynamic cyclic voltammetry (CV) and electrochemical impedance spectroscopy (EIS). To further investigate the electrocatalytic properties of both types of AgNPs, we have used the peroxide moieties (H2O2), and the Ag−C NPs-based sensor probe has been reported to have four times better sensitivity than the Ag−Phy NPs-based sensor. The AgNPs modified sensor probes have also been tested in real-world environments to explore the consistency of their performance in complex matrices by using clinical urine samples, where we found comparable sensitivity to the standard conditions. 相似文献
129.
Joe X. Zhou Jinshu Qiu Ge Jiang Chengfeng Zhou Neil Bingham Helena Yeung Bryan Dransart Manpreet-Vick Wadhwa Tim Tressel 《Journal of membrane science》2008
An issue identified during filtration of mAb drug substance is Polysorbate-20 absorption by polyethersulfone filter membranes. Experiments determined that both polyvinylidene fluoride filter membranes and polyethersulfone filter membranes bind Polysorbate-20. Saturation point, bound surfactant amount per square cm of membrane, and non-specific binding mechanisms are described in this report. An appropriate approach for preventing Polysorbate-20 loss in drug substance and drug product is presented. 相似文献
130.