Academic literature on the topic 'Large Carbon Cluster Thin Film Gauges'

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Journal articles on the topic "Large Carbon Cluster Thin Film Gauges"

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Srinath, S., and K. P. J. Reddy. "Large carbon cluster thin film gauges for measuring aerodynamic heat transfer rates in hypersonic shock tunnels." Measurement Science and Technology 26, no. 2 (2015): 025901. http://dx.doi.org/10.1088/0957-0233/26/2/025901.

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Ferguson, Andrew J., and Jeff Blackburn. "(Invited) The Role of Counterion Chemistry on the Nature of Charge Carriers in Redox-Doped Nanocarbons." ECS Meeting Abstracts MA2024-02, no. 11 (2024): 1458. https://doi.org/10.1149/ma2024-02111458mtgabs.

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The performance of many emerging electronic and optoelectronic devices based on organic and nanoscale carbon semiconductors can be fine-tuned by control of the charge carrier density injected by redox dopants. We have recently demonstrated that the chemical structure (size, shape, and redox properties) of the dopant counterion has a significant influence on the electrostatic interactions with the charge carrier, which affects charge (de)localization and transport. We have exploited this to enhance the thermoelectric properties of thin film networks of single-walled carbon nanotubes (SWCNTs) an
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Insepov, Zinetulla, Marek Sosnowski, and Isao Yamada. "Modeling of Boron Implantation Into Si With Decaborane Ions." MRS Proceedings 669 (2001). http://dx.doi.org/10.1557/proc-669-j4.19.

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ABSTRACTA molecular Dynamics (MD) model of B implantation into Si and of sputtering the Si surface withenergetic B10 clusters has been developed. The goal was to simulate the implantation of ions of decaborane (B10H14), which may become an important process for the formation of ultra shallow junctions in future MOS devices. The simulations, carried out for the cluster ion impact energy from 3.5 keV to 15 keV, have revealed the formation of a large amorphized region in a subsurface region. At low cluster impact energies in this range some of the B atoms were recoiled back from the surface, but
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sprotocols. "Enhancing graphene/CNT based electrochemical detection using magneto-nanobioprobes." January 3, 2015. https://doi.org/10.5281/zenodo.13698.

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Authors: Priyanka Sharma, V Bhalla, E Senthil Prasad, V Dravid, G Shekhawat & C. Raman Suri ### Abstract This protocol describes an optimized signal amplification strategy to develop an ultra-sensitive magneto-electrochemical biosensing platform. The new protocol combines the advantages of carbon nanotube (CNT) and reduced graphene oxide (rGO) together with electrochemical bursting of magnetic nanoparticles. The method involves synthesis of gold-iron (Au/Fe) nano-structures functionalized with specific antibodies to be used as nanobioprobes (Ab-Au/Fe). The next step requires the precise de
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Dissertations / Theses on the topic "Large Carbon Cluster Thin Film Gauges"

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Srinath, S. "Development of Novel Heat Transfer Gauges Based on Large Carbon Clusters to Measure Total as well as Radiative Heat Flux for Planetary Entry Configurations in Hypersonic Shock Tunnels." Thesis, 2017. http://etd.iisc.ac.in/handle/2005/4243.

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The quest of travelling beyond earth, preludes with ground based experimental studies, detailed analysis and accurate calculations in the aspects of having a safer design of flying vehicles. As the vehicles plunge into the dense atmosphere with greater velocities to hypersonic Mach numbers, the shockwave produced ahead of the aerodynamic body becomes highly intense producing volatile conditions at a temperature of several thousands of Kelvins. Predominantly the unsteady effects are dominated by radiations in the velocities which are greater than 6km/s. During such high enthalpy flows, the atmo
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