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1.
Chemphyschem ; 18(22): 3274-3279, 2017 Nov 17.
Article in English | MEDLINE | ID: mdl-28985010

ABSTRACT

Multiple approaches will be needed to reduce the atmospheric CO2 levels, which have been linked to the undesirable effects of global climate change. The electroreduction of CO2 driven by renewable energy is one approach to reduce CO2 emissions while producing chemical building blocks, but current electrocatalysts exhibit low activity and selectivity. Here, we report the structural and electrochemical characterization of a promising catalyst for the electroreduction of CO2 to CO: Au nanoparticles supported on polymer-wrapped multiwall carbon nanotubes. This catalyst exhibits high selectivity for CO over H2 : 80-92 % CO, as well as high activity: partial current density for CO as high as 160 mA cm-2 . The observed high activity, originating from a high electrochemically active surface area (23 m2 g-1 Au), in combination with the low loading (0.17 mg cm-2 ) of the highly dispersed Au nanoparticles underscores the promise of this catalyst for efficient electroreduction of CO2 .

2.
J Am Chem Soc ; 115(2): 801-803, 1993 Jan 01.
Article in English | MEDLINE | ID: mdl-30364398

ABSTRACT

The blockade of the HIV protease has become a major target in the search for an effective therapy for AIDS.1 While many reports of potent HIV-1 inhibitors have appeared recently, the compound Ro 31-8959 remains the least selective for the HIV-1 and HIV-2 proteases.2 This property may result in reduced susceptibility to resistance since these represent the genetically most divergent strains of HIV presently known to exist.

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