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- W2481749809 abstract "Selective recovery of rare earth elements from industrial waste is essential for recycling processes and a green economy. Here, we developed a filamentous virus (phage)-based selective recovery system for neodymium ions (Nd3+), which are generally used in common rare earth magnets composed of neodymium-iron-boron alloys. Affinity-dependent peptide screening against Nd3+ produced phage clones displaying peptides with a specific affinity for Nd3+. Binding analyses revealed that the peptide had a specific affinity for Nd3+ rather than Fe3+. Structural analyses of the peptide showed that when the peptide bound to Nd3+, it underwent a structural transition from random-coil to β-turn structures, resulting in specific affinity for Nd3+. Approximately 6 times more Nd3+ adsorbed onto the peptide-modified phage than Fe3+ from a mixed solution containing Nd3+ and excess Fe3+, demonstrating that suitably modified phages with Nd3+-binding peptides can act as a selective recovery scaffold for Nd3+." @default.
- W2481749809 created "2016-08-23" @default.
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- W2481749809 date "2016-07-16" @default.
- W2481749809 modified "2023-10-14" @default.
- W2481749809 title "Selective Rare Earth Recovery Employing Filamentous Viruses with Chemically Conjugated Peptides" @default.
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- W2481749809 doi "https://doi.org/10.1002/slct.201600542" @default.
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