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      A History and Perspective of Non‐Fullerene Electron Acceptors for Organic Solar Cells

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          Ultrastructural Characterization of the Lower Motor System in a Mouse Model of Krabbe Disease

          Krabbe disease (KD) is a neurodegenerative disorder caused by the lack of β- galactosylceramidase enzymatic activity and by widespread accumulation of the cytotoxic galactosyl-sphingosine in neuronal, myelinating and endothelial cells. Despite the wide use of Twitcher mice as experimental model for KD, the ultrastructure of this model is partial and mainly addressing peripheral nerves. More details are requested to elucidate the basis of the motor defects, which are the first to appear during KD onset. Here we use transmission electron microscopy (TEM) to focus on the alterations produced by KD in the lower motor system at postnatal day 15 (P15), a nearly asymptomatic stage, and in the juvenile P30 mouse. We find mild effects on motorneuron soma, severe ones on sciatic nerves and very severe effects on nerve terminals and neuromuscular junctions at P30, with peripheral damage being already detectable at P15. Finally, we find that the gastrocnemius muscle undergoes atrophy and structural changes that are independent of denervation at P15. Our data further characterize the ultrastructural analysis of the KD mouse model, and support recent theories of a dying-back mechanism for neuronal degeneration, which is independent of demyelination.
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            Single-Junction Organic Solar Cell with over 15% Efficiency Using Fused-Ring Acceptor with Electron-Deficient Core

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              An electron acceptor challenging fullerenes for efficient polymer solar cells.

              A novel non-fullerene electron acceptor (ITIC) that overcomes some of the shortcomings of fullerene acceptors, for example, weak absorption in the visible spectral region and limited energy-level variability, is designed and synthesized. Fullerene-free polymer solar cells (PSCs) based on the ITIC acceptor are demonstrated to exhibit power conversion efficiencies of up to 6.8%, a record for fullerene-free PSCs.
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                Author and article information

                Contributors
                (View ORCID Profile)
                Journal
                Advanced Energy Materials
                Adv. Energy Mater.
                Wiley
                1614-6832
                1614-6840
                April 2021
                January 14 2021
                April 2021
                : 11
                : 15
                : 2003570
                Affiliations
                [1 ]Sustainable Advanced Materials (Sêr SAM) Department of Physics Swansea University Singleton Park Swansea SA2 8PP UK
                [2 ]Center for Excellence in Nanoscience (CAS) Key Laboratory of Nanosystem and Hierarchical Fabrication (CAS) National Center for Nanoscience and Technology Beijing 100190 China
                [3 ]Department of Physics and Centre for Plastic Electronics Imperial College London London SW7 2AZ UK
                [4 ]Institute of Physics and Astronomy University of Potsdam Karl‐Liebknecht Straße 24‐25 Potsdam‐Golm D‐14476 Germany
                [5 ]IMO‐IMOMEC Hasselt University Wetenschapspark 1 Diepenbeek 3590 Belgium
                [6 ]School of Materials Science and Engineering Wuhan University of Technology 22 Luoshi Road Wuhan 430070 China
                [7 ]Department of Physics Organic and Carbon Electronics Laboratories (ORaCEL) North Carolina State University Raleigh NC 27695 USA
                [8 ]Institute of Materials for Electronics and Energy Technology (i‐MEET) Friedrich‐Alexander University Erlangen‐Nürnberg Martensstrasse 7 Erlangen 91058 Germany
                Article
                10.1002/aenm.202003570
                5d25e6d3-d761-48e4-b553-cf5181686ca5
                © 2021

                http://onlinelibrary.wiley.com/termsAndConditions#vor

                http://doi.wiley.com/10.1002/tdm_license_1.1

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