Inkjet printing assisted synthesis of multicomponent mesoporous metal oxides for ultrafast catalyst exploration.
basic_science · Level V
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- Record sourced from PubMed, PMID 23051615.
- Also identified by DOI 10.1021/nl302992q.
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Abstract
We describe an inkjet printing assisted cooperative-assembly method for high-throughput generation of catalyst libraries (multicomponent mesoporous metal oxides) at a rate of 1,000,000-formulations/hour with up to eight-component compositions. The compositions and mesostructures of the libraries can be well-controlled and continuously varied. Fast identification of an inexpensive and efficient quaternary catalyst for photocatalytic hydrogen evolution is achieved via a multidimensional group testing strategy to reduce the number of performance validation experiments (25,000-fold reduction over an exhaustive one-by-one search).
Medical subject headings
- Colloids
- Oxides