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Dive into the research topics where Michio Yamada is active.

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Featured researches published by Michio Yamada.


Chemistry: A European Journal | 2013

La2@Cs(17 490)‐C76: A New Non‐IPR Dimetallic Metallofullerene Featuring Unexpectedly Weak Metal–Pentalene Interactions

Mitsuaki Suzuki; Naomi Mizorogi; Tao Yang; Filip Uhlík; Zdenek Slanina; Xiang Zhao; Michio Yamada; Yutaka Maeda; Tadashi Hasegawa; Shigeru Nagase; Xing Lu; Takeshi Akasaka

Although all the pure-carbon fullerene isomers above C60 reported to date comply with the isolated pentagon rule (IPR), non-IPR structures, which are expected to have different properties from those of IPR species, are obtainable either by exohedral modification or by endohedral atom doping. This report describes the isolation and characterization of a new endohedral metallofullerene (EMF), La2@C76, which has a non-IPR fullerene cage. The X-ray crystallographic result for the La2@C76/[Ni(II)(OEP)] (OEP=octaethylporphyrin) cocrystal unambiguously elucidated the C(s)(17,490)-C76 cage structure, which contains two adjacent pentagon pairs. Surprisingly, multiple metal sites were distinguished from the X-ray data, which implies dynamic behavior for the two La(3+) cations inside the cage. This dynamic behavior was also corroborated by variable-temperature (139)La NMR spectroscopy. This phenomenon conflicts with the widely accepted idea that the metal cations in non-IPR EMFs invariably coordinate strongly with the negatively charged fused-pentagon carbons, thereby providing new insights into modern coordination chemistry. Furthermore, our electrochemical and computational studies reveal that La2@C(s)(17,490)-C76 has a larger HOMO-LUMO gap than other dilanthanum-EMFs with IPR cage structures, such as La2@D(3h)(5)-C78 and La2@I(h)(7)-C80, which implies that IPR is no longer a strict rule for EMFs.


Nanoscale | 2016

Tuning of the photoluminescence and up-conversion photoluminescence properties of single-walled carbon nanotubes by chemical functionalization

Yutaka Maeda; Shun Minami; Yuya Takehana; Jing-Shuang Dang; Shun Aota; Kazunari Matsuda; Yuhei Miyauchi; Michio Yamada; Mitsuaki Suzuki; Ruisheng Zhao; Xiang Zhao; Shigeru Nagase

Single-walled carbon nanotubes (SWNTs) were subjected to alkylation using alkyl bromide and alkyl dibromide, and the photoluminescence (PL) properties of the resulting alkylated SWNTs were characterized. Two new PL peaks were observed along with the intrinsic PL peak at 976 nm when alkyl bromide was used (SWNT-Bu: ∼1095 and 1230 nm, SWNT-Bn: 1104 and 1197 nm). In contrast, the use of α,α-dibromo-o-xylene as an alkyl dibromide primarily resulted in only one new PL peak, which was observed at 1231 nm. The results revealed that the Stokes shift of the new peaks was strongly influenced by the addition patterns of the substituents. In addition, the time-resolved PL decay profiles of the alkylated SWNTs revealed that the PL peaks possessing a larger Stokes shift had longer exciton lifetimes. The up-conversion PL (UCPL) intensity of the alkylated SWNTs at excitation wavelengths of 1100 and 1250 nm was estimated to be ∼2.38 and ∼2.35 times higher than that of the as-dispersed SWNTs, respectively.


Physical Chemistry Chemical Physics | 2013

Application of MCD spectroscopy and TD-DFT to endohedral metallofullerenes for characterization of their electronic transitions.

Michio Yamada; Zdenek Slanina; Naomi Mizorogi; Atsuya Muranaka; Yutaka Maeda; Shigeru Nagase; Takeshi Akasaka; Nagao Kobayashi

We describe, for the first time, the application of magnetic circular dichroism (MCD) spectroscopy and time-dependent density functional theory (TD-DFT) calculations using B3LYP and M06-2X functionals to characterize the electronic transitions of endohedral metallofullerenes (EMFs). Results revealed that the electronic transitions of La@C(2v)-C(82), La(2)@I(h)-C(80), and Sc(3)N@I(h)-C(80) can be assigned using these techniques. Particularly, a difference in the electronic transitions between La(2)@I(h)-C(80) and Sc(3)N@I(h)-C(80), which is invisible in absorption spectra, was observed clearly in MCD spectra. The observed MCD bands agree well with the oscillator strengths calculated using the B3LYP functional. In addition, the MCD bands of La(2)@I(h)-C(80) were altered upon [5,6]-addition, demonstrating that the MCD spectroscopy is sensitive to chemical functionalization of EMFs, and that it is therefore powerful to distinguish [5,6]-adducts from pristine La(2)@I(h)-C(80), although no marked difference exists in their absorption spectra.


Chemistry: A European Journal | 2017

Adamantylidene Addition to M3N@Ih-C80 (M=Sc, Lu) and Sc3N@D5h-C80: Synthesis and Crystallographic Characterization of the [5,6]-Open and [6,6]-Open Adducts

Michio Yamada; Tsuneyuki Abe; Chiharu Saito; Toshiki Yamazaki; Satoru Sato; Naomi Mizorogi; Zdenek Slanina; Filip Uhlík; Mitsuaki Suzuki; Yutaka Maeda; Yongfu Lian; Xing Lu; Marilyn M. Olmstead; Alan L. Balch; Shigeru Nagase; Takeshi Akasaka

Additions of adamantylidene (Ad) to M3 N@Ih -C80 (M=Sc, Lu) and Sc3 N@D5h -C80 have been accomplished by photochemical reactions with 2-adamantyl-2,3-[3H]-diazirine (1). In M3 N@Ih -C80 , the addition led to rupture of the [6,6]- or [5,6]-bonds of the Ih -C80 cage, forming the [6,6]-open fulleroid as the major isomer and the [5,6]-open fulleroid as the minor isomer. In Sc3 N@D5h -C80 , the addition also proceeded regioselectively to yield three major isomeric Ad mono-adducts, despite the fact that there are nine types of C-C bonds in the D5h -C80 cage. The molecular structures of the seven Ad mono-adducts, including the positions of the encaged trimetallic nitride clusters, have been unambiguously determined through single-crystal XRD analyses. Furthermore, results have shown that stepwise addition of Ad to Lu3 N@Ih -C80 affords several Ad bis-adducts, two of which have been isolated and characterized. The X-ray structure of one bis-adduct clearly revealed that the second Ad addition took place at a [6,6]-bond close to an endohedral metal atom. Theoretical calculations have also been performed to rationalize the regioselectivity.


Chemistry: A European Journal | 2016

The Unanticipated Dimerization of Ce@C2v(9)‐C82 upon Co‐crystallization with Ni(octaethylporphyrin) and Comparison with Monomeric M@C2v(9)‐C82 (M = La, Sc, and Y)

Mitsuaki Suzuki; Michio Yamada; Yutaka Maeda; Satoru Sato; Yuta Takano; Filip Uhlík; Zdenek Slanina; Yongfu Lian; Xing Lu; Shigeru Nagase; Marilyn M. Olmstead; Alan L. Balch; Takeshi Akasaka

We report that Ce@C2v (9)-C82 forms a centrosymmetric dimer when co-crystallized with Ni(OEP) (OEP = octaethylporphyrin dianion). The crystal structure of {Ce@C2v (9)-C82 }2 ⋅2[Ni(OEP)]⋅4u2009C6 H6 shows that a new C-C bond with a bond length of 1.605(5)u2005Å connects the two cages. The high spin density of the singly occupied molecularxa0orbital (SOMO) on the cage and the pyramidalization of the cage are factors that favor dimerization. In contrast, the treatment of Ni(OEP) with M@C2v (9)-C82 (M = La, Sc, and Y) results in crystallization of monomeric endohedral fullerenes. A systematic comparison of the X-ray structures of M@C2v (9)-C82 (M = Sc, Y, La, Ce, Gd, Yb, and Sm) reveals that the major metal site in each case is located at an off-center position adjacent to a hexagonal ring along the C2 u2005axis of the C2v (9)-C82 cage. DFT calculations at the M06-2X level revealed that the positions of the metal centers in these metallofullerenes M@C2v (9)-C82 (M = Sc, Y, and Ce), as determined by single-crystal X-ray structure studies, correspond to an energy minimum for each compound.


Chemistry: A European Journal | 2015

Preparation, Structural Determination, and Characterization of Electronic Properties of Bis‐silylated and Bis‐germylated Lu3N@Ih‐C80

Masahiro Kako; Kyosuke Miyabe; Kumiko Sato; Mitsuaki Suzuki; Naomi Mizorogi; Wei-Wei Wang; Michio Yamada; Yutaka Maeda; Marilyn M. Olmstead; Alan L. Balch; Shigeru Nagase; Takeshi Akasaka

Bis-silylated and bis-germylated derivatives of Lu3 N@Ih -C80 (3, 4, 5) were successfully synthesized by the photochemical addition of disiliranes 1u2009a, 1u2009b or digermirane 2, and fully characterized by spectroscopic, electrochemical, and theoretical studies. Interestingly, digermirane 2 reacts more efficiently than disiliranes 1u2009a and 1u2009b because of its good electron-donor properties and lower steric hindrance around the Ge-Ge bond. The 1,4-adduct structures of 3, 4, 5 were unequivocally established by single-crystal X-ray crystallographic analyses. The electrochemical and theoretical studies reveal that the energy gaps between the highest occupied molecular orbital (HOMO) and the lowest unoccupied molecular orbital (LUMO) of the 1,4-adducts are remarkably smaller than those of Lu3 N@Ih -C80 , because the electron-donating groups effectively raise the HOMO levels. It is also observed that germyl groups are slightly more electron-donating than the silyl groups on the basis of the redox properties and the HOMO-LUMO energies of 4 and 5. Bis-silylation and bis-germylation are effective and versatile methods for tuning the electronic characteristics of endohedral metallofullerenes.


ChemPhysChem | 2014

Photochemical behavior of single-walled carbon nanotubes in the presence of propylamine.

Yutaka Maeda; Yuhei Hasuike; Kei Ohkubo; Atsushi Tashiro; Shinya Kaneko; Masayuki Kikuta; Michio Yamada; Tadashi Hasegawa; Takeshi Akasaka; Jing Zhou; Jing Lu; Shigeru Nagase; Shunichi Fukuzumi

This report describes the photochemical behavior of single-walled carbon nanotubes (SWNTs) in the presence of propylamine. The SWNTs are characterized by absorption and Raman spectroscopy. The spectral changes due to photoirradiation indicate that reactions occur predominantly with the metallic SWNTs and small-diameter SWNTs. The detection of amine radicalcation species by ESR spectroscopy reveals photoinduced electron transfer from the amine to the excited SWNTs. After exposure of the photoirradiated SWNTs to air, the characteristic spectra were recovered, except for that of the small-diameter SWNTs. The results suggest that, after photoreduction of the SWNTs, subsequent selective sidewall functionalization of the small-diameter SWNTs occurs.


Angewandte Chemie | 2017

Fullerene C70 as a Nanoflask that Reveals the Chemical Reactivity of Atomic Nitrogen

Yuta Morinaka; Rui Zhang; Satoru Sato; Hidefumi Nikawa; Tatsuhisa Kato; Ko Furukawa; Michio Yamada; Yutaka Maeda; Michihisa Murata; Atsushi Wakamiya; Shigeru Nagase; Takeshi Akasaka; Yasujiro Murata

To investigate the intrinsic reactivity of atomic nitrogen, which had previously been accomplished only by examining its decay in the gas phase using special equipment, a nitrogen atom was inserted into a series of molecule-encapsulating C60 and C70 fullerenes. Among the studied endofullerenes, H2 @C70 was able to encapsulate an additional nitrogen atom within the fullerene cage under radiofrequency plasma conditions. The product was analyzed by ESR spectroscopy and mass spectrometry in solution, which revealed that the nitrogen atom with a quartet ground state does not react but weakly interact with the H2 molecule, thus demonstrating the utility of such fullerenes as nanoflasks.


New Journal of Chemistry | 2013

A versatile approach to functionalisation of [60]fullerene using 3-trifluoromethyl-3-phenyldiazirine derivatives as photolabelling reagents

Michio Yamada; Kenji Harada; Yutaka Maeda; Tadashi Hasegawa

The photolysis of para-substituted 3-trifluoromethyl-3-phenyldiazirine derivatives in the presence of [60]fullerene (C60) allowed easy access to the functionalised methanofullerenes 2b–2d in reasonable yields. The reaction is believed to take place via the addition of the carbene intermediate to a [6,6] double bond of C60. Succinimidyl-appended methanofullerene 2b serves as an active site for the attachment of other molecules via amidation. In fact, not only 2c–2d but also biotin-appended methanofullerene 2e were successfully synthesised by the amidation of 2b with the corresponding amines under mild conditions. The electrochemical properties of 2b–2d were characterised using cyclic voltammetry and differential pulse voltammetry. In addition, standard HABA assays in DMSO revealed the binding ability of the biotin moiety in 2e to avidin.


Chemistry: A European Journal | 2017

Effect of substituents and initial degree of functionalization of alkylated single-walled carbon nanotubes on their thermal stability and photoluminescence properties

Yutaka Maeda; Yuya Takehana; Jing-Shuang Dang; Mitsuaki Suzuki; Michio Yamada; Shigeru Nagase

Alkylated single-walled carbon nanotubes (SWNTs) have been thermally treated to determine the influence of substituents and the degree of functionalization on their thermal stability and photoluminescence (PL) properties. Alkylated SWNTs were prepared by treating SWNTs with sodium naphthalenide and alkyl bromide. The defunctionalization of the alkylated SWNTs was monitored by absorption and Raman spectra. Selective recovery of the characteristic absorption and radial breathing mode peaks was observed during the thermal treatment, which indicates that the thermal stability of the alkylated SWNTs decreases with increases in SWNT diameter and degree of functionalization. n-Butylated and phenethylated SWNTs showed higher thermal stability than sec-butylated and benzylated SWNTs for a similar degree of functionalization, respectively. The diameter selectivity and effect of substituents on the thermal elimination reaction were confirmed by density functional theory. In addition, it was shown that the initial degree of functionalization of the alkylated SWNTs, with the alkyl group and degree of functionalization being kept constant after thermal treatment, strongly affects their PL properties; Stokes shift, and PL peak intensity.

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Yutaka Maeda

Tokyo Gakugei University

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Shigeru Nagase

Yokohama National University

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Takeshi Akasaka

Huazhong University of Science and Technology

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Alan L. Balch

University of California

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Takeshi Akasaka

Huazhong University of Science and Technology

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