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Categories: Engineering: Nanotechnology, Environmental: Biodiversity
Published Humans are altering the diet of Tasmanian devils, which may accelerate their decline
(via sciencedaily.com) 
New research shows how human-modified landscapes affect the diets of these marsupial scavengers.
Published Major advance in super-resolution fluorescence microscopy
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Pushing the MINFLUX technique to higher spatial and temporal precision allows protein dynamics to be observed under physiological conditions.
Published Genetics as conservation tool for endangered chimpanzees
(via sciencedaily.com) 
The western chimpanzees of Guinea are threatened by mining activities. Using a novel genetic approach, researchers have collected information on population size and community structure of the endangered species. These data provide an important baseline to assess the impact of mining.
Published Researchers control the degree of twist in nanostructured particles
(via sciencedaily.com) 
Micron-sized 'bow ties,' self-assembled from nanoparticles, form a variety of different curling shapes that can be precisely controlled, a research team has shown.
Published Recovering tropical forests offset just one quarter of carbon emissions from new tropical deforestation and forest degradation
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A pioneering global study has found deforestation and forests lost or damaged due to human and environmental change, such as fire and logging, are fast outstripping current rates of forest regrowth.
Published Game-changing high-performance semiconductor material could help slash heat emissions
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Researchers have engineered a material with the potential to dramatically cut the amount of heat power plants release into the atmosphere.
Published Thousands of native plants are unphotographed, and citizen scientists can help fill the gaps
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New research finds almost 4000 Australian plant species have not been photographed before in the wild, which may lead to their extinction.
Published Swan populations grow 30 times faster in nature reserves
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Populations of whooper swans grow 30 times faster inside nature reserves, new research shows.
Published Scientists transform algae into unique functional perovskites with tunable properties
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Scientists have transformed single-cell algae into functional perovskite materials. The team has converted mineral shells of algae into lead halide perovskites with tunable physical properties. The new perovskites have unique nano-architectures unachievable by conventional synthetic production. The method can be applied to the mass production of perovskites with tunable structural and electro-optical properties from single-celled organisms.
Published Are piezoelectrics good for generating electricity? Perhaps, but we must decide how to evaluate them
(via sciencedaily.com) 
A 'best practice' protocol for researchers developing piezoelectric materials has been developed by scientists. The protocol was developed by an international team led by physicists in response to findings that experimental reports lack consistency. The researchers made the shocking discovery that nine out of 10 scientific papers miss experimental information that is crucial to ensure the reproducibility of the reported work.
Published Study shows how biodiversity of coral reefs around the world changes with depth
(via sciencedaily.com) 
Dramatic differences between shallow and mesophotic reefs stress the importance of studying--and conserving--these vital ecosystems along their entire depth gradient.
Published 3D internal structure of rechargeable batteries revealed
(via sciencedaily.com) 
Researchers have pioneered a technique to observe the 3D internal structure of rechargeable batteries. This opens up a wide range of areas for the new technique from energy storage and chemical engineering to biomedical applications.
Published Assessing the potential risks of ocean-based climate intervention technologies on deep-sea ecosystems
(via sciencedaily.com) 
An international team of experts convened remotely as part of the Deep Ocean Stewardship Initiative's Climate Working Group to consider the deep-sea impacts of ocean-based climate intervention (OBCI). A research team has analyzed the proposed approaches to assess their potential impacts on deep-sea ecosystems and biodiversity. Their findings raise substantial concern on the potential impacts of these technologies on deep-sea ecosystems and call for the need for an integrated research effort to carefully assess the cost and benefits of each intervention.
Published Microscopy: Highest resolution in three dimensions
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Researchers have developed a super-resolution microscopy method for the rapid differentiation of molecular structures in 3D.
Published Some stirring required: Fluid mixing enables scalable manufacturing of soft polymer structures
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Researchers have developed and demonstrated an efficient and scalable technique that allows them to manufacture soft polymer materials in a dozen different structures, or 'morphologies,' from ribbons and nanoscale sheets to rods and branched particles. The technique allows users to finely tune the morphology of the materials at the micro- and nano-scale.
Published Knots smaller than human hair make materials unusually tough
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A micro-architected material made from tiny knots proves tougher and more durable than unknotted counterparts.
Published Island-inhabiting giants, dwarfs more vulnerable to extinction
(via sciencedaily.com) 
Island-dwelling mammal species often expand or contract in size, becoming giant or dwarf versions of their mainland counterparts. A new Science study from a global team shows that those giants and dwarfs have faced extreme risk of extinction -- an existential threat exacerbated by the arrival of humans.
Published New kind of transistor could shrink communications devices on smartphones
(via sciencedaily.com) 
One month after announcing a ferroelectric semiconductor at the nanoscale thinness required for modern computing components, a team has now demonstrated a reconfigurable transistor using that material. Their work paves the way for single amplifiers that can do the work of multiple conventional amplifiers, among other possibilities.
Published Plant roots fuel tropical soil animal communities
(via sciencedaily.com) 
A research team has shed new light on the importance of plant roots for below-ground life, particularly in the tropics. Millions of small creatures toiling in a single hectare of soil including earthworms, springtails, mites, insects, and other arthropods are crucial for decomposition and soil health. For a long time, it was believed that leaf litter is the primary resource for these animals. However, this recent study is the first to provide proof that resources derived from plant roots drive soil animal communities in the tropics.
Published Graphene quantum dots show promise as novel magnetic field sensors
(via sciencedaily.com) 
Trapped electrons traveling in circular loops at extreme speeds inside graphene quantum dots are highly sensitive to external magnetic fields and could be used as novel magnetic field sensors with unique capabilities, according to a new study.