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        <dc:title>On-chip tuning of superconductivity in fullerides via current-driven Rb+ intercalation</dc:title>
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        <bibo:abstract>An in-operando electro-intercalation method for the on-chip synthesis of alkali-metal-intercalated materials and their Raman spectroscopic and transport characterization in ultrahigh vacuum (UHV) is developed. We apply this method to synthesize fulleride superconductors via Rb+ intercalation into a C60 film. During the intercalation, we monitor the stoichiometry via UHV-Raman spectroscopy and probe superconductivity via transport measurements. An increase of the superconducting transition temperature from 7.0 K to 14.5 K is observed when the stoichiometry is tuned from Rb2.7C60 to Rb3C60. In our experiment, an ionic Rb+ flux into the host material is induced by an applied electronic current via a Butler–Volmer-type mechanism. Electro-intercalation captivates through improved stoichiometric precision, the ability to smoothly vary stoichiometry via duration of current application, and the absence of a lower limit of the volume of the host material. It represents a powerful concept for the on-chip synthesis of intercalated materials, battery research, and beyond.</bibo:abstract>
        <bibo:volume>20</bibo:volume>
        <bibo:issue>24</bibo:issue>
        <bibo:startPage>17360-17372</bibo:startPage>
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        <dc:publisher>American Chemical Society</dc:publisher>
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