7 research outputs found

    Оцінка режимної керованості систем теплопостачання з інфрачервоними трубчастими газовими нагрівачами

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    The method for controllability estimation for heating systems with infrared tube heaters is considered in the article.В статье рассматривается метод оценки режимной управляемости систем теплоснабжения со специальными инфракрасными трубчатыми газовыми нагревателями.У статті розглядається метод оцінки режимної керованості систем теплопостачання зі спеціальними інфрачервоними трубчастими газовими нагрівачами

    The mechanochemical Scholl reaction – a solvent-free and versatile graphitization tool

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    Herein, we report on the mechanochemical Scholl reaction of dendritic oligophenylene precursors to produce benchmark nanographenes such as hexa-peri-hexabenzocoronene (HBC), triangular shaped C60 and expanded C222 under solvent-free conditions. The solvent-free approach overcomes the bottleneck of solubility limitation in this well-known and powerful reaction. The mechanochemical approach allows tracking the reaction process by in situ pressure measurements. The quality of produced nanographenes has been confirmed by MALDI-TOF mass spectrometry and UV-Vis absorption spectroscopy. This approach paves the way towards gram scale and environmentally benign synthesis of extended nanographenes and possibly graphene nanoribbons suitable for application in carbon based electronics or energy applications

    Оцінка режимної керованості систем теплопостачання з інфрачервоними трубчастими газовими нагрівачами

    Get PDF
    The method for controllability estimation for heating systems with infrared tube heaters is considered in the article.В статье рассматривается метод оценки режимной управляемости систем теплоснабжения со специальными инфракрасными трубчатыми газовыми нагревателями.У статті розглядається метод оцінки режимної керованості систем теплопостачання зі спеціальними інфрачервоними трубчастими газовими нагрівачами

    Controiiability Estimation for Heating Systems with Infrared Tube Heaters

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    The method for controllability estimation for heating systems with infrared tube heaters is considered in the article

    An Efficient Rechargeable Aluminium–Amine Battery Working Under Quaternization Chemistry

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    Rechargeable aluminium (Al) batteries (RABs) have long-been pursued due to the high sustainability and three-electron-transfer properties of Al metal. However, limited redox chemistry is available for rechargeable Al batteries, which restricts the exploration of cathode materials. Herein, we demonstrate an efficient Al–amine battery based on a quaternization reaction, in which nitrogen (radical) cations (R3N*+ or R4N+) are formed to store the anionic Al complex. The reactive aromatic amine molecules further oligomerize during cycling, inhibiting amine dissolution into the electrolyte. Consequently, the constructed Al–amine battery exhibits a high reversible capacity of 135 mAhg1 along with a superior cycling life (4000 cycles), fast charge capability and a high energy efficiency of 94.2%. Moreover, the Al–amine battery shows excellent stability against selfdischarge, far beyond conventional Al–graphite batteries. Our findings pave an avenue to advance the chemistry of RABs and thus battery performance

    An Efficient Rechargeable Aluminium-Amine Battery Working Under Quaternization Chemistry.

    No full text
    Rechargeable aluminium (Al) batteries (RABs) have long-been pursued due to the high sustainability and three-electron-transfer properties of Al metal. However, limited redox chemistry is available for rechargeable Al batteries, which restricts the exploration of cathode materials. Herein, we demonstrate an efficient Al-amine battery based on a quaternization reaction, in which nitrogen (radical) cations (R3 N.+ or R4 N+ ) are formed to store the anionic Al complex. The reactive aromatic amine molecules further oligomerize during cycling, inhibiting amine dissolution into the electrolyte. Consequently, the constructed Al-amine battery exhibits a high reversible capacity of 135 mAh g-1 along with a superior cycling life (4000 cycles), fast charge capability and a high energy efficiency of 94.2 %. Moreover, the Al-amine battery shows excellent stability against self-discharge, far beyond conventional Al-graphite batteries. Our findings pave an avenue to advance the chemistry of RABs and thus battery performance
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