A new process that lets scientists chemically cut apart and stitch together nanoscopic layers of two-dimensional materials - like a tailor altering a suit - could be just the tool for designing the technology of a sustainable energy future.
A new process that lets scientists chemically cut apart and stitch together nanoscopic layers of two-dimensional materials - like a tailor altering a suit - could be just the tool for designing the technology of a sustainable energy future.
A new process that lets scientists chemically cut apart and stitch together nanoscopic layers of two-dimensional materials like a tailor altering a suit could be just the tool for designing the technology of a sustainable energy future. Researchers from Drexel University, China and Sweden, have developed a method for structurally splitting, editing and reconstituting layered materials, called MAX phases and MXenes, with the potential of producing new materials with very unusual compositions and exceptional properties.
Expansion of rubber plantations in north-eastern Cambodia: Green tones are forest areas, beige to brown tones are annual crops, and orange to dark red tones are rubber plantationsOver the past half century, countries of South and Southeast Asia have witnessed a major shift from predominantly subsistence agriculture to industrialized economies.
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