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11篇 您的检索式:作者名="Geaney M"
    题名 作者 年代 出处 被引量
1Choroid plexus transplants in the treatment of brain diseases显示文摘SKINNER S J GEANEY M S RUSH R 2006Xenotranspla- ntation2006,13,4:1
2In-tracerebral transplantation of porcine choroid plexusprovides structural and functional neuroprotection in arodent model of stroke显示文摘BORLONGAN C V SKINNER S J Geaney M 2004Stroke2004,35,9:1
3Intracerebral transplantation of porcine choroid plexus provides structural and functional neuroprotection in a rodent model of stroke 显示文摘Borlongan CV Skinner SJ Geaney M 2004Stroke2004,35,9:1
4CNS grafts of rat choroid plexus protect against cerebral ischemia in adult rats 显示文摘Borlongan C V Skinner S J Geaney M 2004Neuroreport2004,15,:1
5CNS grafts of rat choroid plexus protect against cerebral ischemia in adult rat 显示文摘Borlongan CV Skinner S J Geaney M 2004Neuroreport2004,15,10:1
6Neuroproteetion of encapsulated choroid plexus in a rodent model of Huntington's disease显示文摘Borlongan CV Skinner S J Geaney M 2004Neuroreport2004,15,16:1
7Intracerebral transplantation of porcine choroid plexus provides structural and functional neuroprotection in a rodent model of stroke显示文摘Borlongan CV Skinner SJ Geaney M 2004Stroke2004,35,:1
8CNS grafts of rat choroid plexus protect against cerebral ischemia in adult rats 显示文摘Borlongan CV Skinner SJ Geaney M 2004Neuroreport2004,15,10:1
9Intracerebral trans- plantation of porcine choroid plexus provides structural and functional neuroproteetion in a rodent model of stroke 显示文摘Borlongan CV Skinner S J Geaney M 2004Stroke2004,35,9:1
10Neuroprotection by encapsulated choroid plexus in a rodent model of Hunting- ton's disease显示文摘Borlongan CV Skinner SJ Geaney M 2004Neuroreport2004,15,16:1
11A thin Si nanowire network anode for high volumetric capacity and long-life lithium-ion batteries显示文摘Silicon nanowires(Si NWs)have been widely researched as the best alternative to graphite anodes for the next-generation of high-performance lithium-ion batteries(LIBs)owing to their high capacity and low discharge potential.However,growing binder-free Si NW anodes with adequate mass loading and stable capacity is severely limited by the low surface area of planar current collectors(CCs),and is particularly challenging to achieve on standard pure-Cu substrates due to the ubiquitous formation of Li+inactive silicide phases.Here,the growth of densely-interwoven In-seeded Si NWs is facilitated by a thin-film of copper-silicide(CS)network in situ grown on a Cu-foil,allowing for a thin active NW layer(<10μm thick)and high areal loading(≈1.04 mg/cm^(2))binder-free electrode architecture.The electrode exhibits an average Coulombic efficiency(CE)of>99.6%and stable performance for>900 cycles with≈88.7%capacity retention.More significantly,it delivers a volumetric capacity of≈1086.1 m A h/cm^(3)at 5C.The full-cell versus lithium manganese oxide(LMO)cathode delivers a capacity of≈1177.1 m A h/g at 1C with a stable rate capability.This electrode architecture represents significant advances toward the development of binder-free Si NW electrodes for LIB application.Ibrahim Saana Amiinu Sumair Imtiaz Hugh Geaney Tadhg Kennedy Nilotpal Kapuria Shalini Singh Kevin M Ryan 2023Journal of Energy Chemistry2023,,6:0
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