Results 261 to 270 of about 235,846 (315)
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Harnessing DNA intercalation

Trends in Biotechnology, 2007
Numerous small molecules are known to bind to DNA through base pair intercalation. Fluorescent dyes commonly used for nucleic acid staining, such as ethidium, are familiar examples. Biological and physical studies of DNA intercalation have historically been motivated by mutation and drug discovery research.
Ozgül, Persil, Nicholas V, Hud
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Intercalation chemistry of graphite: alkali metal ions and beyond.

Chemical Society Reviews, 2019
Reversibly intercalating ions into host materials for electrochemical energy storage is the essence of the working principle of rocking-chair type batteries. The most relevant example is the graphite anode for rechargeable Li-ion batteries which has been
Yuqi Li   +4 more
semanticscholar   +1 more source

Engineering the Interlayer Spacing by Pre‐Intercalation for High Performance Supercapacitor MXene Electrodes in Room Temperature Ionic Liquid

Advanced Functional Materials, 2021
MXenes exhibit excellent capacitance at high scan rates in sulfuric acid aqueous electrolytes, but the narrow potential window of aqueous electrolytes limits the energy density.
Kun Liang   +16 more
semanticscholar   +1 more source

Intercalate structure in halogen-intercalated graphite

Synthetic Metals, 1989
Abstract Highly oriented pyrolytic graphite (HOPG), intercalated with the interhalogen molecules ICl and IBr, was investigated by x-ray absorption spectroscopy. From the polarization dependent near-edge (NEXAFS) and extended (EXAFS) x-ray absorption fine structure observed at the ClK, IL I,III , and BrK thresholds, we derive information on the ...
Krone, W., Wortmann, G., Kaindl, G.
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Intercalation Assembly Method and Intercalation Process Control of Layered Intercalated Functional Materials

Chinese Journal of Chemical Engineering, 2013
Layered intercalated functional materials of layered double hydroxide type are an important class of functional materials developed in recent years. Based on long term studies on these materials in the State Key Laboratory of Chemical Resource Engineering in Beijing University of Chemical Technology, the principle for the design of controlled ...
Kaitao LI   +4 more
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Inhibiting Solvent Co-Intercalation in Graphite Anode by Localized High-Concentration Electrolyte in Fast-Charging Batteries.

Angewandte Chemie, 2020
Lithium-ion batteries are regarded as the leading contenders in energy storage devices. However, the batteries with routine carbonate electrolytes cannot exhibit satisfactory fast-charging performance and lithium plating is widely observed at low ...
Li-li Jiang   +5 more
semanticscholar   +1 more source

Intercalation of AlCl3 into FeCl3-graphite intercalation compounds and occurrence of BI-intercalation

Carbon, 1993
Abstract The formation process of the ternary AlCl 3 -FeCl 3 -graphite intercalation compounds (GICs) was studied by using three different reaction paths at 150°C. In the reaction of stage 1, FeCl 3 -GICs with AlCl 3 , the exchange of intercalated FeCl 3 for AlCl 3 occurred and, consequently, the formation of the “mixed”-type ternary GIC was ...
Michio Inagaki, Masahiko Ohira
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Aqueous Zinc-Ion Storage in MoS2 by Tuning the Intercalation Energy.

Nano letters (Print), 2019
Aqueous Zn-ion batteries present low-cost, safe, and high-energy battery technology but suffer from the lack of suitable cathode materials because of the sluggish intercalation kinetics associated with the large size of hydrated zinc ions.
Hanfeng Liang   +7 more
semanticscholar   +1 more source

Intercalation Pseudocapacitive Zn2+ Storage with Hydrated Vanadium Dioxide toward Ultrahigh Rate Performance

Advances in Materials, 2020
The weak van der Waals interactions enable ion‐intercalation‐type hosts to be ideal pseudocapacitive materials for energy storage. Here, a methodology for the preparation of hydrated vanadium dioxide nanoribbon (HVO) with moderate transport pathways is ...
Nannan Liu   +9 more
semanticscholar   +1 more source

Intercalated Clay Catalysts

Science, 1983
Recent advances in the intercalation of metal complex cations in smectite clay minerals are leading to the development of new classes of selective heterogeneous catalysts. The selectivity of both metal-catalyzed and proton-catalyzed chemical conversions in clay intercalates can often be regulated by controlling surface chemical equilibria ...
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