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10.1016/j.matt.2020.06.025

http://scihub22266oqcxt.onion/10.1016/j.matt.2020.06.025
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C7351032!7351032 !32838298
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suck abstract from ncbi

pmid32838298
      Matter 2020 ; 3 (3 ): 805-823
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  • Catalysis-in-a-Box: Robotic Screening of Catalytic Materials in the Time of COVID-19 and Beyond #MMPMID32838298
  • Kumar G ; Bossert H ; McDonald D ; Chatzidimitriou A ; Ardagh MA ; Pang Y ; Lee C ; Tsapatsis M ; Abdelrahman OA ; Dauenhauer PJ
  • Matter 2020[Sep]; 3 (3 ): 805-823 PMID32838298 show ga
  • This work describes the design and implementation of an automated device for catalytic materials testing by direct modifications to a gas chromatograph (GC). The setup can be operated as a plug-flow isothermal reactor and enables the control of relevant parameters such as reaction temperature and reactant partial pressures directly from the GC. High-quality kinetic data (including reaction rates, product distributions, and activation barriers) can be obtained at almost one-tenth of the fabrication cost of analogous commercial setups. With these key benefits including automation, low cost, and limited experimental equipment instrumentation, this implementation is intended as a high-throughput catalyst screening reactor that can be readily utilized by materials synthesis researchers to assess the catalytic properties of their synthesized structures in vapor-phase chemistries.
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