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Nanostructured Oxides by Challa S. S. R. Kumar

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1DTIC ADA517975: Adsorption And Decomposition Of CWA Simulants On Single Crystal And Nanostructured Metal Oxides

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Our studies are directed at determining the adsorption mechanisms and reaction pathways for the chemical warfare agent simulant (CWA) for GB (Sarin) on metal oxide surfaces and nanoparticles. By learning about how surface structure, nanoparticle size, composition, and surface co-adsorbates affect the overall interfacial chemistry, we are providing insight that can be applied toward the development of effective sorbent materials for protection and decontamination. Our approach couples ultrahigh vacuum (UHV) surface analysis instrumentation with precision simulant dosing capabilities to explore agent reactivity on highly characterized and contaminant-free metal oxide surfaces. Our work during this funding period has focused on studying the uptake and decomposition of the simulant dimethyl methylphosphonate (DMMP) when it impinges on the surface of nanoparticulate systems.

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  • Title: ➤  DTIC ADA517975: Adsorption And Decomposition Of CWA Simulants On Single Crystal And Nanostructured Metal Oxides
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  • Language: English

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The book is available for download in "texts" format, the size of the file-s is: 15.13 Mbs, the file-s for this book were downloaded 93 times, the file-s went public at Thu Jul 26 2018.

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2A Comprehensive Review Of Glucose Biosensors Based On Nanostructured Metal-Oxides.

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This article is from Sensors (Basel, Switzerland) , volume 10 . Abstract Nanotechnology has opened new and exhilarating opportunities for exploring glucose biosensing applications of the newly prepared nanostructured materials. Nanostructured metal-oxides have been extensively explored to develop biosensors with high sensitivity, fast response times, and stability for the determination of glucose by electrochemical oxidation. This article concentrates mainly on the development of different nanostructured metal-oxide [such as ZnO, Cu(I)/(II) oxides, MnO2, TiO2, CeO2, SiO2, ZrO2, and other metal-oxides] based glucose biosensors. Additionally, we devote our attention to the operating principles (i.e., potentiometric, amperometric, impedimetric and conductometric) of these nanostructured metal-oxide based glucose sensors. Finally, this review concludes with a personal prospective and some challenges of these nanoscaled sensors.

“A Comprehensive Review Of Glucose Biosensors Based On Nanostructured Metal-Oxides.” Metadata:

  • Title: ➤  A Comprehensive Review Of Glucose Biosensors Based On Nanostructured Metal-Oxides.
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  • Language: English

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The book is available for download in "texts" format, the size of the file-s is: 26.53 Mbs, the file-s for this book were downloaded 135 times, the file-s went public at Fri Oct 24 2014.

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3Electrical Transport Properties Of Nanostructured Ferromagnetic Perovskite Oxides La_0.67Ca_0.33MnO_3 And La_0.5Sr_0.5CoO_3 At Low Temperatures (5 K > T >0.3 K) And High Magnetic Field

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We report a comprehensive study of the electrical and magneto-transport properties of nanocrystals of La_0.67Ca_0.33MnO_3 (LCMO) (with size down to 15 nm) and La_0.5Sr_0.5CoO_3 (LSCO) (with size down to 35 nm) in the temperature range 0.3 K to 5 K and magnetic fields upto 14 T. The transport, magnetotransport and non-linear conduction (I-V curves) were analysed using the concept of Spin Polarized Tunnelling in the presence of Coulomb blockade. The activation energy of transport, \Delta, was used to estimate the tunnelling distances and the inverse decay length of the tunnelling wave function (\chi) and the height of the tunnelling barrier (\Phi_B). The magnetotransport data were used to find out the magnetic field dependences of these tunnelling parameters. The data taken over a large magnetic field range allowed us to separate out the MR contributions at low temperatures arising from tunnelling into two distinct contributions. In LCMO, at low magnetic field, the transport and the MR are dominated by the spin polarization, while at higher magnetic field the MR arises from the lowering of the tunnel barrier by the magnetic field leading to an MR that does not saturate even at 14 T. In contrast, in LSCO, which does not have substantial spin polarization, the first contribution at low field is absent, while the second contribution related to the barrier height persists. The idea of inter-grain tunnelling has been validated by direct measurements of the non-linear I-V data in this temperature range and the I-V data was found to be strongly dependent on magnetic field. We made the important observation that a gap like feature (with magnitude ~ E_C, the Coulomb charging energy) shows up in the conductance g(V) at low bias for the systems with smallest nanocrystal size at lowest temperatures (T < 0.7 K). The gap closes as the magnetic field and the temperature are increased.

“Electrical Transport Properties Of Nanostructured Ferromagnetic Perovskite Oxides La_0.67Ca_0.33MnO_3 And La_0.5Sr_0.5CoO_3 At Low Temperatures (5 K > T >0.3 K) And High Magnetic Field” Metadata:

  • Title: ➤  Electrical Transport Properties Of Nanostructured Ferromagnetic Perovskite Oxides La_0.67Ca_0.33MnO_3 And La_0.5Sr_0.5CoO_3 At Low Temperatures (5 K > T >0.3 K) And High Magnetic Field
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The book is available for download in "texts" format, the size of the file-s is: 12.08 Mbs, the file-s for this book were downloaded 126 times, the file-s went public at Sat Jul 20 2013.

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