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12篇 您的检索式:作者名="ALTHUES H"
    题名 作者 年代 出处 被引量
1Polymerization of w/o microemulsions for the preparation of transparent SiO2/PMMA nanocomposites显示文摘R Palkovits H Althues A Rumplecker 2005Langmuirs2005,21,:1
2查看详情显示文摘Althues H Henle J Kaskel S 0,,:1
3Functional Inorganic Nanofillers for Transparent Polymers 显示文摘Althues H Henle J Kaskel S 2007Chemical Society Reviews2007,36,:1
4Polym- erization of w/o microemulsions for the preparation of transparent SiO2/PMMA nanocomposites 显示文摘Palkovits R Althues H Rumplecker A 2005Langmuir2005,21,13:1
5Functional inorganic nanofillers for transparent polymers显示文摘Althues H Henle J and Kaskel S 2007Chemical Society Review2007,36,9:1
6Synthesis and characterization of transparent luminescent ZnS : Mn/PMMA nanoeomposites 显示文摘Althues H Palkovits R Rumplecker A 2007Chemistry of Materi- als2007,18,4:1
7显示文摘 2002Langmuir2002,18,:1
8Polymerization of W/O microemulsions for the preparation of the transparent SiO2/PMMA nanocomposites 显示文摘PALKOVITS R ALTHUES H RUMPLECKER A 2005Langmuir2005,21,13:1
9查看详情显示文摘Hagen M D(o)rfler S Fanz P Berger T Speck R Tübke J Althues H Hoffmann M.J Scherr C Kaskel S.J 0,,:1
10Functional inorganic nanofillers for transparent polymers 显示文摘Althues H Henle J Kaskel S 2007ChemicalSociety Reviews ’2007,36,9:1
11Integration of zinc oxide nanoparticles into transparent poly (butanediolmonoacrylate) via photopolymerisation显示文摘Althues H Simon P Philipp F 2006J Nanosci Nanotechnol2006,6,2:1
12The role of polysulfide-saturation in electrolytes for high power applications of real world Li-S pouch cells显示文摘The lithium-sulfur(Li-S)technology is the most promising candidate for next-generation batteries due to its high theoretical specific energy and steady progress for applications requiring lightweight batteries such as aviation or heavy electric vehicles.For these applications,however,the rate capability of Li-S cells requires significant improvement.Advanced electrolyte formulations in Li-S batteries enable new pathways for cell development and adjustment of all components.However,their rate capability at pouch cell level is often neither evaluated nor compared to state of the art(SOTA)LiTFSI/dimethoxyethane/dioxolane(LITFSI:lithium-bis(trifluoromethylsulfonyl)imide)electrolyte.Herein,the combination of the sparingly polysulfide(PS)solvating hexylmethylether/1,2-dimethoxyethane(HME/DME)electrolyte and highly conductive carbon nanotube Buckypaper(CNT-BP)with low porosity was evaluated in both coin and pouch cells and compared to dimethoxyethane/dioxolane reference electrolyte.An advanced sulfur transfer melt infiltration was employed for cathode production with CNT-BP.The Li+ion coordination in the HME/DME electrolyte was investigated by nuclear magnetic resonance(NMR)and Raman spectroscopy.Additionally,ionic conductivity and viscosity was investigated for the pristine electrolyte and a polysulfide-statured solution.Both electrolytes,DME/DOL-1/1(DOL:1,3-dioxolane)and HME/DME-8/2,are then combined with CNT-BP and transferred to multi-layered pouch cells.This study reveals that the ionic conductivity of the electrolyte increases drastically over state of(dis)charge especially for DME/DOL electrolyte and lean electrolyte regime leading to a better rate capability for the sparingly polysulfide solvating electrolyte.The evaluation in prototype cells is an important step towards bespoke adaption of Li-S batteries for practical applications.Tom Boenke Sebastian Kirchhoff Florian SReuter Florian Schmidt Christine Weller Susanne Dörfler Kai Schwedtmann Paul Härtel Thomas Abendroth Holger Althues Jan J.Weig Stefan Kaskel 2023Nano Research2023,16,6:0
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