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Showing 1–5 of 5 results
Advanced filters: Author: Felix Donat Clear advanced filters
  • Natural ecosystems efficiently sequester CO2, but containing and controlling living systems remains challenging. Here, the authors engineer a photosynthetic living material for dual CO2 sequestration via biomass accumulation and microbially-induced calcium carbonate precipitation.

    • Dalia Dranseike
    • Yifan Cui
    • Mark W. Tibbitt
    ResearchOpen Access
    Nature Communications
    Volume: 16, P: 1-13
  • Oxidative dehydrogenation of propane could lower the energy demand for propylene production, but low selectivity and costly air separation limit its viability. Here, the authors demonstrate that a molten NaNO3 shell enables selective oxygen permeation, suppressing hydrocarbon over-oxidation in chemical looping oxygen uncoupling.

    • Alexander Oing
    • Felix Donat
    • Christoph R. Müller
    ResearchOpen Access
    Nature Communications
    Volume: 16, P: 1-13
  • Oral antidotes for consumption-related acute alcohol intoxication are needed. Here, the study presents amyloid fibrils of β-lactoglobulin, a milk-derived protein decorated by single-site iron, as a catalytic platform for alcohol detoxification in vivo and prophylactic protection against alcohol damage.

    • Jiaqi Su
    • Pengjie Wang
    • Raffaele Mezzenga
    ResearchOpen Access
    Nature Nanotechnology
    Volume: 19, P: 1168-1177
  • The valorization of CO2 via its hydrogenation to methanol is a highly sought-after reaction although only a handful of catalysts can efficiently promote this transformation. Here, the authors engineer the interface of a copper catalyst supported on a silica–molybdenum MXene composite, achieving a remarkable performance in the reduction of CO2 to methanol.

    • Hui Zhou
    • Zixuan Chen
    • Christoph R. Müller
    Research
    Nature Catalysis
    Volume: 4, P: 860-871
  • The economic operation of a carbon dioxide capture technique of calcium looping necessitates highly effective CaO-based CO2 sorbents. Here, the authors report a facile one-pot synthesis approach to yield highly effective, MgO-stabilized, CaO-based CO2 sorbents featuring highly porous multishelled morphologies.

    • Muhammad Awais Naeem
    • Andac Armutlulu
    • Christoph R. Müller
    ResearchOpen Access
    Nature Communications
    Volume: 9, P: 1-11