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Titlebook: Endohedral Lithium-containing Fullerenes; Preparation, Derivat Yutaka Matsuo,Hiroshi Okada,Hiroshi Ueno Book 2017 Springer Nature Singapore

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Synthesis and Characterization of Lithium-Ion-Containing Fullerene,ction process was investigated for isolation and purification of lithium-containing [60]fullerene. At first, extraction with 1-chloronapthalene was performed to increase the content of Li@C.. However, inductively coupled plasma optical emission spectrometry in addition to routine laser desorption io
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Li+@C60 Salts: Crystal Structures and Properties,the encapsulation of Li. inside the C. cage. Two Li.@C. salts, namely [Li.@C.]PF. and [Li.@C.]SbCl., were examined by in-depth crystallographic investigation. [Li.@C.]PF. underwent a phase transition at 370 K from a face-centered-cubic crystal system to a simple cubic system with decreasing temperat
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Computational Studies of Li@C60,at when Li. collides at the center of the 6-membered rings of ., the Li. ion passes through the 6-membered rings and becomes trapped in the C. cage. From the early period of endohedral metallofullerenes research, structural optimization of Li@C. was performed and its electronic structures were inves
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New Directions in Li@C60 Research: Physical Measurements,structures. UPS of Li@C. showed characteristic peaks due to electron transfer from the inner Li to the C. cage. Dielectric measurement for [Li.@C.]. at low temperature revealed a phase transition temperature .. at 24 K. Above .., the Li. ion was localized at two equivalent position, suggesting quant
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Book 2017ication research. The book covers synthesis, preparation, purification, structure, physical and chemical properties, derivatization, computational theoretical studies, and device application of Li@C.60.. Readers can learn cutting-edge nanotechnology of this exotic nanocarbon material, which is expec
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