Zobrazeno 1 - 10
of 16
pro vyhledávání: '"Killian Stokes"'
Autor:
Fathima Laffir, Huan Ren, Miao Wang, Killian Stokes, Hugh Geaney, Ning Liu, Grace Brennan, Emmet J. O'Reilly, Kevin M. Ryan, Conor T. McCarthy, Peng Gao, Zhe Li, Yuanwei Sun
Publikováno v:
Chemistry of Materials. 31:10085-10093
peer-reviewed CuZnSe2 (CZSe) is an important ternary semiconductor comprised of earth-abundant elements with a suitable bandgap for visible light absorption and structural/stoichiometric versatility that make it a promising candidate for photovoltaic
Publikováno v:
ACS Applied Materials & Interfaces. 11:19372-19380
Herein, we report the formation of core@shell nanowires (NWs) comprised of crystalline germanium NW cores with amorphous silicon shells (Ge@aSi) and their performance as a high capacity Li-ion battery anode material. The Ge NWs were synthesized direc
Silicon is a highly promising electrode material for Li-ion batteries because of its high theoretical capacity, but severe volume changes during cycling leads to pulverization and rapid capacity fading. The use of alternative and water-soluble polyme
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::c0852146ea1b8bc9d946073840421473
http://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-444902
http://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-444902
Autor:
Hugh Geaney, Fathima Laffir, Dylan Storan, Killian Stokes, Tadhg Kennedy, Kevin M. Ryan, Giovanni Battista Appetecchi, Stefano Passerini, Guk-Tae Kim
Publikováno v:
Nano Letters
peer-reviewed The full text of this article will not be available in ULIR until the embargo expires on the 10/07/2021 Addition of electrolyte additives (ethylene or vinylene carbonate) is shown to dramatically improve the cycling stability and capaci
Autor:
Timothy W. Collins, Fred Robinson, Hugh Geaney, Kevin M. Ryan, Manuel Roldan-Gutierrez, Subhajit Biswas, Killian Stokes, Fionán Davitt, Gillian Reid, Justin D. Holmes, Shery L. Y. Chang
peer-reviewed The full text of this article will not be available in ULIR until the embargo expires on the 11/06/2021 Engineered two-dimensional (2D) layered materials possess unique physical properties with the potential to improve the performance a
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::10171798c157c0e3a3ce22651437cc87
https://hdl.handle.net/10468/10319
https://hdl.handle.net/10468/10319
Publikováno v:
ACS Nano. 11:10088-10096
Here we report the formation of high capacity Li-ion battery anodes from Si1–xGex alloy nanowire arrays that are grown directly on stainless steel current collectors, in a single-step synthesis. The direct formation of these Si1–xGex nanowires (r
Publikováno v:
Nano Letters
peer-reviewed The full text of this article will not be available in ULIR until the embargo expires on the 31/10/2020 Herein, copper silicide (Cu15Si4) nanowires (NWs) grown in high densities from a metallic Cu substrate are utilized as nanostructure
Autor:
Kevin M. Ryan, Ibrahim Saana Aminu, Gerard Bree, Tadhg Kennedy, Hugh Geaney, Gearoid A. Collins, Killian Stokes
Publikováno v:
Chemical communications (Cambridge, England). 55(54)
peer-reviewed Herein, textured Cu foil is presented as an attractive current collector substrate for directly grown Ge nanowire (NW) anodes. Compared to planar stainless steel (SS) current collectors, textured Cu led to an increase in achievable mass
Autor:
Seamus Kilian, Kevin M. Ryan, Hugh Geaney, Killian Stokes, Tadhg Kennedy, Ibrahim Saana Amiinu, Kieran McCarthy, Temilade Esther Adegoke, Michele Conroy
Publikováno v:
Small. 17:2005443
peer-reviewed A scalable and cost-effective process is used to electroplate metallic Zn seeds on stainless steel substrates. Si and Ge nanowires (NWs) are subsequently grown by placing the electroplated substrates in the solution phase of a refluxing
peer-reviewed Herein, the electrochemical performance of directly grown Ge nanowire anodes in full-cell Li-ion configurations (using lithium cobalt oxide cathodes) are examined. The impacts of voltage window, anode/cathode balancing and anode precond
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::209312635c8afece2fe963c1a4b350f1