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- W2531910468 abstract "Recording nonvolatile digital data with an aerial density above terabit per square inch (Tbits/in.2), the so-called ultrahigh-density data storage, is one of the key technologies toward a sophisticated information-oriented society in the near future. To overcome the limitation of conventional magnetic data storage, one proposed solution is the use of thin films of functional molecules as recording media, in which each nonvolatile digital datum is stored into a single molecule by controlling its chemical reaction. Here, we show the recent progress in ultrahigh-density data storage using ultrathin films of C60 molecules. In this data storage, binary digits (1 and 0) are stored with an aerial density up to 180 Tbits/in.2 by controlling the bound and unbound states of C60 molecules in the films. Writing and erasing bit data have been carried out by selectively inducing the formation and annihilation of a covalent bond between neighboring C60 molecules, respectively, which are precisely controlled for a designated C60 molecule on the surface of a C60 film using the metal tip of a scanning tunneling microscopy (STM) system. It has also been shown that quantum efficiencies of STM-induced intermolecular reactions between C60 molecules are a key factor in determining the speeds of data writing and erasing as well as the reliability of these operations. Controlling the quantum efficiencies of intermolecular reactions by electrostatic charge injection from the conductive substrate to the surface layer of C60 films results in data writing with an operating speed of ~363 bits/s." @default.
- W2531910468 created "2016-10-21" @default.
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- W2531910468 date "2016-10-11" @default.
- W2531910468 modified "2023-10-18" @default.
- W2531910468 title "Ultrahigh-density data storage into thin films of fullerene molecules" @default.
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