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      • KCI등재

        RETRACTED ARTICLE: Spatio–temporal attention based real-time environmental monitoring systems for landslide monitoring and prediction

        M. Vijay Sekhar Babu,N. Ashokkumar,Anjali Joshi,Pallavi Sagar Deshpande,Ismail Keshta,Renato R. Maaliw III 대한공간정보학회 2024 Spatial Information Research Vol.32 No.2

        The Publisher has retracted this article in agreement with the Editor-in-Chief. The article was submitted to be part of a guest-edited issue. An investigation by the publisher found a number of articles, including this one, with a number of concerns, including but not limited to compromised editorial handling and peer review process, inappropriate or irrelevant references or not being in scope of the journal or guest-edited issue. Based on the investigation's fndings the publisher, in consultation with the Editor-in-Chief therefore no longer has confdence in the results and conclusions of this article. Authors N. Ashokkumar, Anjali Joshi, Pallavi Sagar Deshpande and Renato R. Maaliw III disagree with this retraction. Author M. Vijay Sekhar Babu has not responded to correspondence regarding this retraction. The publisher has been unable to obtain a current email address for author Ismail Keshta. The online version of this article contains the full text of the retracted article as Supplementary Information.

      • Birnessite-type MnO<sub>2</sub> nanosheet arrays with interwoven arrangements on vapor grown carbon fibers as hybrid nanocomposites for pseudocapacitors

        Sekhar, S. Chandra,Nagaraju, Goli,Cha, Sung Min,Yu, Jae Su The Royal Society of Chemistry 2016 Dalton Transactions Vol.45 No.48

        <▼1><P>A cost-effective composite electrode featuring MnO2 NSAs@VCFs exhibits good electrochemical performance as an electroactive material for pseudocapacitors.</P></▼1><▼2><P>Manganese dioxide nanosheet arrays with interconnected arrangements are easily synthesized on vapor grown carbon fibers (MnO2 NSAs@VCFs) by a simple wet-chemical method at low temperature. The conductive nature of the VCFs serves as a scaffold and easily reduces potassium permanganate species for the formation of hierarchical MnO2 NSAs@VCFs. When utilized as an electroactive material for pseudocapacitors, the sophisticated configuration of the nanocomposite provides an effective electrochemical activity and an electron pathway for higher electrochemical performance in 1 M Na2SO4 aqueous solution. The hierarchical MnO2 NSAs@VCFs exhibit a maximum specific capacitance of 115.3 F g<SUP>−1</SUP> at a current density of 0.5 A g<SUP>−1</SUP> with an excellent cycling stability of 85.6% after 2000 cycles at a current density of 5 A g<SUP>−1</SUP>. Such facile and cost-effective fabrication of a metal oxide nanocomposite with improved electrochemical performance allows it to be considered as a promising electroactive material for energy storage devices.</P></▼2>

      • SCOPUSKCI등재

        Solvent Free Microwave Accelerated Synthesis of Heterocyclic Thiazolidin-4-ones as Antimicrobial and Antifungal Agents

        Sekhar, Kondapalli Venkata Gowri Chandra,Rao, Vajja Sambasiva,Reddy, Aravalli Satish,Sunandini, Ravada,Satuluri, V S A Kumar Korean Chemical Society 2010 Bulletin of the Korean Chemical Society Vol.31 No.5

        A simple and efficient method has been developed for conversion of arenecarbaldehyde-3-methylquinoxalin-2-ylhydrazones to 3-(2-methylquinoxalin-3-yl)-2-(substitutedphenyl)thiazolidin-4-ones in good yields using microwave irradiation technique on silica as solid support under solvent free conditions. The synthesized compounds were characterized by elemental microanalysis, infrared spectroscopy, $^1H$ NMR, and mass spectroscopy. All the synthesized thiazolidinones were investigated for their antimicrobial and antifungal activities. The results of the biological activities revealed that the compounds 3b, 3d, 3f and 3h exhibited excellent antibacterial activities while 3d and 3h exhibited good antifungal activity.

      • KCI등재
      • Compliance, Quality, and Appropriateness of Individualized Early Intervention Plans : Analysis and Issues

        Sekhar S. Pindiprolu,Mark S. Innocenti KOREA INSTITUTE FOR SPECIAL EDUCATION 2005 The Asia-Pacific Journal of Inclusive Education Vol.2 No.-

        individualized early intervention plans (referred to as Plans) are required in the United States (U.S.) for young children with disabilities. In this study, individual early intervention plans (i.e., Individualized Family Service Plans or IFSPs and Individualized Education Programs or IEPs) from a western U.S. state were examined for their compliance, quality, and appropriateness. A total of 127 IFSPs and 244 IEPs were obtained from five early intervention programs and six local education agency preschool special education programs as part of a statewide evaluation of early intervention services. Compliance was measured by noting the presence of mandated components, as specified in the Individuals with Disabilities Education Act, in the Plans. Quality was measured by nothing the presence of components advocated by professionals as best practices in the literature. Further, the goals/outcomes and objectives were coded for their quality using an adapted evaluation criteria (Notari & Bricker, 1990; Notari and Shuster, 1994). Appropriateness was measured in terms of the relationship between the childs classification and goals/outcome domains listed on the Plans. Results suggest that (a) the Plans, in general, were in compliance with the mandated components, (b) there were discrepancies in the quality of various aspects of the Plans, and (c) the goal/outcomes were congruent with the childrens disability classification. Issues for improving the quality of the Plans and the need for research demonstrating the Plans are linked to child progress are discussed.

      • Conductive silver nanowires-fenced carbon cloth fibers-supported layered double hydroxide nanosheets as a flexible and binder-free electrode for high-performance asymmetric supercapacitors

        Sekhar, S. Chandra,Nagaraju, Goli,Yu, Jae Su Elsevier 2017 Nano energy Vol.36 No.-

        <P><B>Abstract</B></P> <P>Silver nanowires (Ag NWs) have attracted particular interest in the development of various electronic and energy storage devices due to their one-dimensional structure, good conductivity, fast charge transportation and direct contact to the current collector. Herein, we have successfully deposited the binder-free nickel-cobalt layered double hydroxide nanosheets on Ag NWs-fenced carbon cloth (NC LDH NSs@Ag@CC) by a facile electrochemical deposition method with a chronoamperometry voltage of −1.0V for 120s. The electrically conductive and superhydrophilic nature of the hybrid nanocomposite electrode led to relatively high areal capacitance (1133.3 mF cm<SUP>−2</SUP> at 1mAcm<SUP>−2</SUP>) and good cycling stability (80.47% after 2000 cycles) compared to the electrode prepared without Ag NWs. Using such hierarchical NC LDH NSs@Ag@CC as a positive electrode, we further fabricated a flexible asymmetric supercapacitor (ASC) with activated carbon coated CC as a negative electrode. The as-assembled ASC exhibited maximum operational potential window of 1.6V, high areal capacitance of 230.2 mF cm<SUP>−2</SUP> and excellent cycling stability of 88.1% with remarkable energy densities at all the charge-discharge conditions (78.8 μWh cm<SUP>−2</SUP> at the power density of 785 μW cm<SUP>−2</SUP> and 40 μWh cm<SUP>−2</SUP> at the high power density of 12.1mWcm<SUP>−2</SUP>, respectively)</P> <P><B>Highlights</B></P> <P> <UL> <LI> Conductive Ag NWs are uniformly decorated on carbon cloth fibers (Ag@CC). </LI> <LI> The highly conductive features and hydrophilicity of Ag@CC induce the dense growth of NC LDH NSs. </LI> <LI> Ag NWs provide the effective pathways for electron transportation during the redox process of NC LDH NSs. </LI> <LI> The areal capacitance of the electrode with Ag NWs is 2.3 times higher than the electrode without Ag NWs. </LI> <LI> The assembled asymmetric supercapacitor delivers high energy and power densities. </LI> </UL> </P> <P><B>Graphical abstract</B></P> <P>[DISPLAY OMISSION]</P>

      • KCI등재

        Efficacy of pushover analysis methodologies: A critical evaluation

        Sekhar Chandra Dutta,Suvonkar Chakroborty,Anusrita Raychaudhuri 국제구조공학회 2009 Structural Engineering and Mechanics, An Int'l Jou Vol.31 No.3

        Various Pushover analysis methodologies have evolved as an easy as well as designersfriendly alternative of nonlinear dynamic analysis for estimation of the inelastic demands of structures under seismic loading for performance based design. In fact, the established nonlinear dynamic analysis to assess the same, demands considerable analytical and computational background and rigor as well as intuitive insight into inelastic behavior for judging suitability of the results and its interpretation and hence may not be used in design office for frequent practice. In this context, the simple and viable alternative of Pushover analysis methodologies can be accepted if its efficacy is thoroughly judged over all possible varieties of the problems. Though this burning issue has invited some research efforts in this direction, still a complete picture evolving very clear guidelines for use of these alternate methodologies require much more detailed studies, providing idea about how the accuracy is influenced due to various combinations of basic parameters regulating inelastic dynamic response of the structures. The limited study presented in the paper aims to achieve this end to the extent possible. The study intends to identify the range of applicability of the technique and compares the efficacy of various alternative Pushover analysis schemes to general class of problems. Thus, the paper may prove useful in judicial use of Pushover analysis methodologies for performance based design with easonable accuracy and relative ease.

      • KCI등재

        Electrical and electronic properties of nitrogen doped amorphous carbon (a-CNx) thin films

        Sekhar C. Ray,W. Mbiombi,P. Papakonstantinou 한국물리학회 2014 Current Applied Physics Vol.14 No.12

        Nitrogen-doped amorphous carbon thin films (a-CNx) were prepared on silicon substrate by pulsed laser deposition process using methane (CH4) and nitrogen (N2) as source gas. The electrical properties of a- CNx films changes with nitrogen concentration in the film structure. The intensity ratio of the D and G peak (ID/IG) increases with higher nitrogen concentration, which means that sp2-clusters were formed in these films and is responsible for the enhancement of conductivity of the a-CNx films. We observed that the amorphous carbon (a-C) films becoming more graphitic in nature yielding higher conductivity/lower resistivity with increase of nitrogen concentration. Electron field emission result shows that the emission current density enhances with nitrogen doping that indicates the useful in electron field emission devices application.

      • KCI등재후보

        Antibacterial activity of methanol extract of roots of Heracleum nepalense D Don. on bacteria causing diarrhoea

        Sekhar K Bose,,Saikat Dewanjee,Subhash C Mandal 경희대학교 융합한의과학연구소 2007 Oriental Pharmacy and Experimental Medicine Vol.7 No.3

        Heracleum nepalense D Don. (Umbelliferae) is a small shrub having high glabrescent stem found in stream banks in Sikkim. Various medicinal properties which include antidiarrhoeal, antiseptic, anti-influenzal etc. have been attributed for this plant in the traditional system of medicine in Sikkim. In present investigation the methanol extract of roots of Heracleum nepalense was subjected for its effectiveness against both Gram-positive and Gram-negative bacteria causing diarrhoea. The roots extract was tested for its minimum inhibitory concentration (MIC) against both Grampositive and Gram-negative organisms causing diarrhoea. Further, the zones of inhibition produced by the crude extract against few sensitive strains was measured and compared with those of standard antibiotic ciprofloxacin. It is evident that the methanol extract is very active against the bacteria causing diarrhoea at low concentrations. The antibacterial efficacy of the root extract was found to decrease in the following order against different tested bacterial strains like Shigella dysenteriae, Escherichia coli, Shigella boydii, Vibrio cholerae, Salmonella typhimurium.

      • KCI등재SCIESCOPUS

        Thickness-dependent tunable characteristics of (Ba<sub>0.5</sub>Sr<sub>0.5</sub>)<sub>0.925</sub>K<sub>0.075</sub>TiO<sub>3</sub> thin films prepared by pulsed laser deposition

        Sekhar, K.C.,Key, S.H.,Hong, K.P.,Han, C.S.,Yook, J.M.,Kim, D.S.,Kim, J.C.,Park, J.C.,Cho, Y.S. Elsevier 2012 CURRENT APPLIED PHYSICS Vol.12 No.3

        The thickness-dependent dielectric properties and tunability of pulsed laser deposited (Ba<SUB>0.5</SUB>Sr<SUB>0.5</SUB>)<SUB>0.925</SUB>K<SUB>0.075</SUB>TiO<SUB>3</SUB> (BSKT) thin films with different thickness ranging from 80 to 300 nm has been investigated. Dielectric properties of the BSKT thin films are substantially improved as the BSKT film thickness increases, which can be explained by the model of a low-permittivity dead layer that is connected in series with the bulk region of the film. The estimated values of thickness and the average dielectric constant for the dead layer are 2.4 nm and 23.5, respectively, in a Pt/BSKT/Pt capacitor structure. The tunability and figure of merit increased with increasing film thickness, which are attributed to the change in lattice parameter and the dead layer effect.

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