Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Miyazawa, Kun’ichi
and
Suga, Tadatomo
2004.
Transmission electron microscopy investigation of tubular and capsular needlelike crystals of C60 produced by the liquid–liquid interfacial precipitation method.
Journal of Materials Research,
Vol. 19,
Issue. 11,
p.
3145.
Miyazawa, Kun'ichi
and
Suga, Tadatomo
2004.
Transmission electron microscopy investigation of fullerene nanowhiskers and needle-like precipitates formed by using C60 and (η2-C60)Pt(PPh3)2.
Journal of Materials Research,
Vol. 19,
Issue. 8,
p.
2410.
Miyazawa, Kun'ichi
Minato, Jun-ichi
Yoshii, Tetsuro
Fujino, Masahisa
and
Suga, Tadatomo
2005.
Structural characterization of the fullerene nanotubes prepared by the liquid–liquid interfacial precipitation method.
Journal of Materials Research,
Vol. 20,
Issue. 3,
p.
688.
Minato, Jun-ichi
Miyazawa, Kun'ichi
and
Suga, Tadatomo
2005.
Morphology of C60 nanotubes fabricated by the liquid–liquid interfacial precipitation method.
Science and Technology of Advanced Materials,
Vol. 6,
Issue. 3-4,
p.
272.
Minato, Jun-ichi
and
Miyazawa, Kun’ichi
2005.
Solvated structure of C60 nanowhiskers.
Carbon,
Vol. 43,
Issue. 14,
p.
2837.
Minato, Jun-ichi
and
Miyazawa, Kun'ichi
2006.
Structural characterization of C60 nanowhiskers and C60 nanotubes fabricated by the liquid–liquid interfacial precipitation method.
Diamond and Related Materials,
Vol. 15,
Issue. 4-8,
p.
1151.
Jin, Yizheng
Curry, Richard J.
Sloan, Jeremy
Hatton, Ross A.
Chong, Lok Cee
Blanchard, Nicholas
Stolojan, Vlad
Kroto, Harold W.
and
Silva, S. Ravi P.
2006.
Structural and optoelectronic properties of C60 rods obtained via a rapid synthesis route.
Journal of Materials Chemistry,
Vol. 16,
Issue. 37,
p.
3715.
Miyazawa, Kun’ichi
Minato, Jun-ichi
Zhou, Haoshen
Taguchi, Takuji
Honma, Itaru
and
Suga, Tadatomo
2006.
Structure and electrical properties of heat-treated fullerene nanowhiskers as potential energy device materials.
Journal of the European Ceramic Society,
Vol. 26,
Issue. 4-5,
p.
429.
MIYAZAWA, Kun’ichi
2007.
Synthesis and Properties of Fullerene Nanowhiskers.
Hyomen Kagaku,
Vol. 28,
Issue. 1,
p.
34.
MIYAZAWA, K.
CHA, S.
RINGOR, C.
OKUDA, J.
TANIGUCHI, A.
WATANABE, M.
TACHIBANA, M.
and
MINATO, J.
2008.
SYNTHESIS OF FULLERENE NANOTUBES AND MICROTUBES FOR MATERIALS STORAGE, DELIVERY AND RECOVERY.
Nano,
Vol. 03,
Issue. 05,
p.
335.
HOTTA, KAYOKO
and
MIYAZAWA, KUN'ICHI
2008.
GROWTH RATE MEASUREMENT OF C60 FULLERENE NANOWHISKERS.
Nano,
Vol. 03,
Issue. 05,
p.
355.
Chong, Lok Cee
Stolojan, Vlad
Wagner, Gabriele
Silva, S. Ravi P.
and
Curry, Richard J.
2008.
One-pot rapid low-cost synthesis of Pd-fullerite catalysts.
Journal of Materials Chemistry,
Vol. 18,
Issue. 40,
p.
4808.
Ariga, Katsuhiko
Hill, Jonathan P
Lee, Michael V
Vinu, Ajayan
Charvet, Richard
and
Acharya, Somobrata
2008.
Challenges and breakthroughs in recent research on self-assembly.
Science and Technology of Advanced Materials,
Vol. 9,
Issue. 1,
p.
014109.
WAKAHARA, TAKATSUGU
SATHISH, MARAPPAAN
MIYAZAWA, KUN'ICHI
and
SASAKI, TOSHIO
2008.
ORGANIC-METAL-DOPED FULLERENE NANOWHISKERS.
Nano,
Vol. 03,
Issue. 05,
p.
351.
Ogata, H
Motohashi, S
and
Tsuchida, S
2009.
Molecular dynamics of fullerene-nanowhiskers studied by solid state NMR.
Journal of Physics: Conference Series,
Vol. 159,
Issue. ,
p.
012015.
Hotta, K
and
Miyazawa, K
2009.
Synthesis and growth investigation of C60fullerene nanowhiskers.
Journal of Physics: Conference Series,
Vol. 159,
Issue. ,
p.
012021.
Miyazawa, Kun’ichi
2010.
Inorganic and Metallic Nanotubular Materials.
Vol. 117,
Issue. ,
p.
201.
Wakahara, Takatsugu
Miyazawa, Kun’ichi
Nemoto, Yoshihiro
and
Ito, Osamu
2011.
Diameter controlled growth of fullerene nanowhiskers and their optical properties.
Carbon,
Vol. 49,
Issue. 14,
p.
4644.
Akasaka, Yumeno
and
Miyazawa, Kun’ichi
2011.
Long-term Growth Investigation of C<sub>60</sub> Fullerene Nanowhiskers.
Transactions of the Materials Research Society of Japan,
Vol. 36,
Issue. 3,
p.
345.
Zheng, Lidong
and
Han, Yanchun
2012.
Solvated Crystals Based on [6,6]-Phenyl-C61-butyric Acid Methyl Ester (PCBM) with the Hexagonal Structure and Their Phase Transformation.
The Journal of Physical Chemistry B,
Vol. 116,
Issue. 5,
p.
1598.