Showing 141 - 160 results of 57,511 for search '"nanoparticle"', query time: 0.19s Refine Results
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    Principles of Nanoparticle Delivery to Solid Tumors by Warren C. W. Chan

    Published 2023-01-01
    “…We present 5 principles to consider when designing nanoparticles for cancer targeting: (a) Nanoparticles acquire biological identity in vivo, (b) organs compete for nanoparticles in circulation, (c) nanoparticles must enter solid tumors to target tumor components, (d) nanoparticles must navigate the tumor microenvironment for cellular or organelle targeting, and (e) size, shape, surface chemistry, and other physicochemical properties of nanoparticles influence their transport process to the target. …”
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    Kinetics of Nanoparticle Interactions in Battery Electrodes by Orvananos, Bernardo, Yu, Hui-Chia, Abdellahi, Aziz, Malik, Rahul, Grey, Clare P., Ceder, Gerbrand, Thornton, Katsuyo

    Published 2016
    “…Nanoparticles with a tendency to phase separate interact with each other during a process of either intraparticle phase separation (occurring inside the particle) or interparticle phase separation (occurring between particles). …”
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  9. 149

    Quantifying the nanomachinery of the nanoparticle-biomolecule interface by de Puig Guixe, Helena, Federici, Stefania, Baxamusa, Salmaan H., Bergese, Paolo, Hamad-Schifferli, Kimberly

    Published 2011
    “…The obtained surface work can map aggregation regimes as a function of different nanoparticle surface conditions. Also, the thermodynamic treatment can be used to obtain quantitative information on surface effects impacting biomolecules on nanoparticle surfaces.…”
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    In situ nanoparticle sizing with zeptomole sensitivity. by Batchelor-McAuley, C, Ellison, J, Tschulik, K, Hurst, P, Boldt, R, Compton, R

    Published 2015
    “…We present the basis for an entirely new approach to in situ nanoparticle sizing. Nanoparticles containing just 12 zeptomoles (1 zeptomole = 10(-21) moles) of silver, are detected via in situ particle coulometry. …”
    Journal article
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    Nanoparticle photochemistry via nano-impacts by Bartlett, T, Sokolov, S, Compton, R

    Published 2016
    “…We report the use of nano-impacts as a novel method for the study of photochemical reactions of individual nanoparticles (NPs). The conversion of gelatine stabilised silver bromide (AgBr) NPs to silver (Ag) NPs through photochemical reduction by ascorbic acid is studied mechanistically. …”
    Journal article
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    Single nanoparticle detection in ionic liquids by Tanner, E, Batchelor-McAuley, C, Compton, R

    Published 2016
    “…Nanoimpacts are novelly observed in a room temperature ionic liquid with the oxidation of silver nanoparticles in 1-butyl-3-methylimidazolium tetrafluoroborate. …”
    Journal article
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    Dynamic colloidal stabilization by nanoparticle halos. by Karanikas, S, Louis, A

    Published 2004
    “…At lower densities these layers of mobile particles (nanoparticle halos) result in stabilization, but when too many are added, the interactions become attractive again. …”
    Journal article
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    Elastohydrodynamic lubricant flow with nanoparticle tracking by Jeffreys, S, di Mare, L, Liu, X, Morgan, N, Wong, J

    Published 2019
    “…In the present study, nanoparticles (NPs) are added to polybutene (PB) as tracers to investigate the effect of pressure on the flow of PB in an EHD contact. …”
    Journal article
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    Non-Invasive Probing of Nanoparticle Electrostatics by Tschulik, K, Cheng, W, Batchelor-McAuley, C, Murphy, S, Omanovic, D, Compton, R

    Published 2015
    “…Electrostatic interactions between surface-charged nanoparticles (NPs) and electrodes studied using existing techniques unavoidably and significantly alter the system being analyzed. …”
    Journal article
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    In situ measurement of gold nanoparticle production by Affandi, Mohd. Syafiq, Bidin, Noriah, Abdullah, Mundzir, Abd. Aziz, Muhammad Safuan, Al-Azawi, Mohammed, Nugroho, Waskito

    Published 2015
    “…The closeness of the experimental and theoretical values enables the development of an in situ characterization technique to monitor and analyze the production of gold nanoparticles (NPs), overcoming the use of high-end and expensive instrumentation. …”
    Article
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