研究業績 Achievements

論文 Paper

2023年
91.

Experimental and ab initio studies on the structural, magnetic, photocatalytic, and antibacterial properties of Cu-doped ZnO nanoparticles, A. Tsogoo, N. Tsedev, A. Gibaud, P. Daniel, A. Kassiba, M. Fukuda, Y. Kusano, M. Azuma, N. Tsogbadrakh, G. Ragchaa, R. Dashzeveg, E-O. Ganbold, RSC Advances, 13 [2], 1256-1266, 2023.
doi.org/10.1039/D2RA07204A

https://pubs.rsc.org/en/Image/Get?imageInfo.ImageType=CoverIssue&imageInfo.ImageIdentifier.SerCode=RA&imageInfo.ImageIdentifier.IssueId=RA013002
90.

Composite Formation of Anthrylene- and Ferrocenoyl-Substituted Phenyleneethynylenes with Single-Wall Carbon Nanotubes (SWCNTs), H. Watanabe, K. Ekuni, Y. Okuda, R. Nakayama, K. Kawano, T. Iwanaga, A. Yamaguchi, T. Kiyomura, H. Miyake, M. Yamagami, T. Tajima, T. Kitai, T. Hayashi, N. Nishiyama, Y. Kusano, H. Kurata, Y. Takaguchi, A. Orita, Bulletin of the Chemical Society of Japan, 96 [1], 57-64, 2023.
doi.org/10.1246/bcsj.20220308

2022年
89.

Spinodal Decomposition in the Mg-Al-Fe-O System, Yoshihiro Kusano, Taiki Furuta, Ryosuke Maki, Tomoyuki Ogawa, Tatsuo Fujii, Inorg. Chem., 61 [45], 18170-18180, 2022.
doi/10.1021/acs.inorgchem.2c02843

88.

Thermoelectric properties of oxygen-deficient spinel-type ZnxFe3-xO4-δ prepared by carbothermal reduction and spark plasma sintering, Ryosuke Maki, Koki Yokoyama, Satofumi Maruyama, and Yoshihiro Kusano, Materialia, 26, 101596, 2022.
doi.org/10.1016/j.mtla.2022.101596

87.

登り窯で焼成した備前焼表面に現れる茶褐色および黒色部の微構造と茶褐色の再現, 牧 涼介, 彭 沢亮, 福原 実, 草野 圭弘, 粉体および粉末冶金, 69 [10], 409-414, 2022.
doi.org/10.2497/jjspm.69.409

86.

Effect of CNT addition and its orientation on thermal shock resistance of B4C/CNT composites fabricated by hot-pressing, Ryosuke S. S. Maki, Fajar Muhammad, Jelena Maletaskic, Anna V. Gubarevich, Katsumi Yoshida, Toyohiko Yano, Tohru S. Suzuki, Tetsuo Uchikoshi, J. Asian Ceram. Soc., 10 [2], 370-377, 2022.
doi.org/10.1080/21870764.2022.2054512

85.

Synthesis of Monophasic Al3BC3 Powder with Hexagonal Plate-like Morphology, Ryosuke S. S. Maki, Shunta Matsumura, Sota Kida, Tomoyuki Maeda, Hatsuo Taira, Yoshihiro Kusano, Inorg. Chem., 61 [8], 3493-3497, 2022.
doi/10.1021/acs.inorgchem.1c03424

84.

Microstructure and Coloring Mechanism of Purplish Red Shiso on Bizen Stoneware, Zeliang Peng,Hiroyuki Nakata, Ryosuke S. S. Maki, Minoru Fukuhara, and YoshihiroKusano, J. Ceram. Soc. Jpn., 130 [4], 313-319, 2022.
doi.org/10.2109/jcersj2.21167

2021年
83.

Studyng and Utilizing Traditional Technologies: Microstructure and Formation Mechanism of ε-Fe2O3 on Traditional Japanese Bizen Stoneware, Yoshihiro Kusano, Hiroyuki Nakata, Zeliang Peng, Ryosuke S. S. Maki, Tomoyuki Ogawa, and Minoru Fukuhara, ACS Appl. Mater. Interfaces, 13 [32], 38491-38498, 2021.
doi.org/10.1021/acsami.1c09394

2020年
82.

Synthesis and Microstructure of Single-Crystalline Cobalt Oxyhydroxide  and Topotactic Transformation to Cobalt Oxide, Y. Kusano, S. Kawasaki, J.  Takada, M. Azuma,  J. Am. Ceram. Soc., 103  [12], 7240-7246, 2020.
doi.org/10.1111/jace.17140

81.

Preparation and Characterization of Additional Metallic Element-Containing Tubular Iron Oxides of Bacterial Origin, K. Tamura, T.  Kunoh, M. Nakanishi, Y. Kusano, J. Takada, ACS Omega, 5 [42], 27287-27294, 2020.
doi.org/10.1021/acsomega.0c03574

80.

Hydrothermal Synthesis and Crystal Structure of a Mixed Valence Bismuthate,Na3Bi3O8,Md  Saiduzzaman,Shuhei Akutsu, Nobuhiro Kumada, Takahiro  Takei,SayakaYanagida,HisanoriYamane,  Yoshihiro Kusano,  Inorg.  Chem., 59[7], 4950-4960,  2020.
doi.org/10.1021/acs.inorgchem.0c00213

79.

Synthesis and characterization of pyrochlore lanthanide (Pr, Sm) zirconate ceramics, B. Matovic, J. Maletaskic, J.Zagorac,  V. Pavkov,R. S. S. Maki, K. Yoshida, T. Yano, J.  Eur. Ceram. Soc., 40, 2652-2657, 2020.
doi.org/10.1016/j.jeurceramsoc.2019.11.012

2019年
78.

High pressure synthesis of a quasi-one-dimensional GdFeO3-type perovskite PrCuO3 with nearly divalent  Cu ions, M. Ito, H. Takahashi, H. Sakai, H. Sagayama, Y.  Yamasaki, Y. Yokoyama, H. Setoyama, H. Wadati, K. Takahashi,  Y. Kusano, S.  Ishiwata,  Chem. Commun., 55, 8931-8934,  2019.
doi.org/10.1039/C9CC04656A

77.

Formation of Gold Particles via Thiol Groups on Glycoconjugates  Comprising the Sheath Skeleton of Leptothrix, T. Kunoh, Y. Kusano, M.  Takeda, M. Nakanishi, S. Matsumoto, M. Takano, H. Kunoh, J.  Takada, Geomicrobiology J., 36 [3], 251-260, 2019.
doi.org/10.1080/01490451.2018.1550127

76.

A further investigation of the complex M3 murataite structure using Hf  substitution and STEM-EELS techniques, R. S. S. Maki, P. E. D. Morgan,  Acta. Crystallogr. B., 75, 442-448, 2019.
doi.org/10.1107/S2052520619005419

75.

Microstructure and piezoelectricpropertiesof (Bi0.5Na0.51-xBaxTi1-x(Fe0.5Nb0.5)xO3  ceramics, H. Nishijima, T. Kawashima, R. S. S. Maki, Y.  Suzuki,  Arab. J.  Chem., 12, 5253-5259, 2019.
doi.org/10.1016/j.arabjc.2016.12.017

74.

Effect of Al2O3 addition on texturing in a  rotating strong magnetic field and densification of B4C,  M. Fajar, A. Gubarevich, R. S. S. Maki, T. Uchikoshi, T. S.  Suzuki, T.  Yano,  K. Yoshida, Ceram. Int., 45 [15],  18222-18228, 2019.
doi.org/10.1016/j.ceramint.2019.06.032

2018年
73.

Alchemy in the Art of Traditional Japanese Ceramics: Microstructure and Formation Mechanism of Gold-Colored Bizen Stoneware, Y.  Kusano, M. Fukuhara, T. Fujino, T. Fujii, J. Takada, M.  Takano, Cryst. Growth  Des.,  18[7], 4017-4021, 2018,
10.1021/acs.cgd.8b00368.

2017年
72.

Biosorption of metal elements by exopolymer nanofibrils excreted from Leptothrix cells, T. Kunoh, M. Nakanishi, Y. Kusano, A.  Itadani, K.  Ando,  S. Matsumoto, K. Tamura, H. Kunoh, J.  Takada, Water Research,  122,  139-147, 2017,
10.1016/j.watres.2017.05.003.

71.

Synchrotron X-ray powder diffraction pattern of the M8 murataite polytype, R. S. S. Maki, and P. E. D. Morgan, Powder Diffr., 32 [3],  210-212, 2017.
doi.org/10.1017/S0885715617000525

70.

Synthesis and characterization of a simpler Mn-free, Fe-rich M3-type murataite, R. S. S. Maki, P. E. D. Morgan, Y. Suzuki, J. Alloys Compd.,  698 [25], 99-102, 2017.
doi.org/10.1016/j.jallcom.2016.12.142

69.

Effect of spark plasma sintering (SPS) on the thermoelectric  properties of magnesium ferrite, R. S. S. Maki, S. Mitani, T. Mori,  Mater. Renew. Sustain. Energy, 6 [1], 2017.
doi.org/10.1007/s40243-016-0086-9

2016年
68.

High-Pressure Polymorph of NaBiO3, O.Naa, N.Kumada, A.Miura, T.Takei, M.Azuma, Y.Kusano, K.Oka, Inorg. Chem., 55[12],  5747-5749, 2016.
10.1021/acs.inorgchem.6b00947

67.

Size-controlled Synthesis and Magnetic Properties of FePt/PbS  Core/Shell Nanoparticles, S.Yamamoto, Y.Kusano, Chem. Lett., 45[1],  78-80, 2016.
DOI.10.1246/cl.150901.

66.

Electrical properties of murataite modules with complex and  large-volume fluorite-type superstructures, R. S. S. Maki, K. Kobayashi,  Y. Suzuki, Mater. Res. Bull., 84, 254-258, 2016.
doi.org/10.1016/j.materresbull.2016.08.016

65.

X-ray powder diffraction characterization of the large volume  unit-cell of the M8 murataite polytype, R. S. S. Maki, P. E. D. Morgan,  Y. Suzuki, Powder Diffr., 31 [1], 8-15, 2016.
doi.org/10.1017/S0885715615000913

64.

Mechanical strength and electrical conductivity of reactively-sintered  pseudobrookite-type  Al2TiO5-MgTi2O5 solid  solutions, R. S. S. Maki, Y. Suzuki, J. Ceram. Soc. Jpn., 124 [1],  838-840, 2016.
doi.org/10.2109/jcersj2.15098

63.

High-strength pseudobrookite-type MgTi2O5 by spark plasma sintering, H.-W. Son, R. S. S. Maki, B.-N. Kim, Y.  Suzuki,  J.  Ceram. Soc. Jpn., 124 [8], 838-840, 2016.
doi.org/10.2109/jcersj2.16058

62.

Impact of densification on microstructure and transport properties of  CaFe5O7, C. Delacotte, S. Hebert, V.  Hardy, Y. Breard, R. Maki, T Mori, D. Pelloquin, Solid State  Sci.., 54, 54-58, 2016.
doi.org/10.1016/j.solidstatesciences.2015.11.006

2015年
61.

Pre-milling Effects on Self-propagating Reactions in Mechanochemical  Synthesis of CdSe and ZnSe, T.Ohtani, Y.Kusano, K.Ishimaru, T.Morimoto,  A.Togano, T.Yoshioka, Chem. Lett., 44[9], 2015, 1234-1236.
DOI.10.1246/cl.150475.

60.

Preparation and microstructure of electrospun BaTiO3  fibers, T. Kawashima, R. S. S. Maki, Y. Suzuki, International Letters  of Chemistry, Physics and Astronomy, 62, 2015, 5-9.
doi.org/10.18052/www.scipress.com/ILCPA.62.5

2014年
59.

Characterization of Microtubule Material Consisting of Iron Oxide Nanoparticles Produced by Bacteria, R. Sakuma, H. Hashimoto, Y.  Kusano,  Y.  Ikeda, M. Nakanishi, T. Fujii, M. Takano, J.  Takada, J. Jpn. Soc.  Powder  Powder Metallurgy, 61[S1],  S90-S92, 2014,
10.2497/jjspm.61.S90.

58.

Preparation of Yellowish-Red Al-Substituted α-Fe2O3 Powders and Their Thermostability in Color,  H. Hashimoto, M. Nakanishi, H. Asaoka, T. Tomoaki, Y. Kusano,  T.  Fujii, J.  Takada, ACS Appl. Mater. Interfaces, 6[22]  20282-20289,  2014.
doi.org/10.1021/am505820b

57.

備前焼模様の微構造と形成過程, 草野圭弘, 福原 実, 日本結晶学会誌, 56[3], 179-185, 2014.
doi.org/10.5940/jcrsj.56.179

56.

Valence Transitions in Negative Thermal Expansion Material  SrCu3Fe4O12, I. Yamada, K. Shiro, H.  Etani, S. Marukawa, N. Hayashi, M. Mizumaki, Y. Kusano, S. Ueda, H.  Abe, T. Irifune, Inorg. Chem., 53[19], 10563-10569,  2014.
doi.org/10.1021/ic501665c

55.

Stability of α”-Fe16N2 in hydrogenous atmospheres, S. Yamamoto, R. Gallage, S. Isoda, Y. Ogata, Y. Kusano, N.  Kobayashi, T. Ogawa, N. Hayashi, M. Takahashi, M. Takano, Chem.  Comm.,  50,  2014 7040-7043.
DOI:10.1039/c4cc01839g

54.

Synthesis and thermoelectric behavior of copper telluride nanosheets,  C. Nethravathi, C. R. Rajamathi, M. Rajamathi, R. Maki, T.  Mori, D. Golberg, Y. Bando, J. Mater. Chem. A, 2 [4] 2014  985-990.
doi.org/10.1039/C3TA12877F

2013年
53.

Control of Bond-Strain-Induced Electronic Phase Transitions in Iron Perovskites, I. Yamada, H. Etani, K. Tsuchida,S.Marukawa,N.  Hayashi,  T.  Kawakami, M. Mizumaki, K. Ohgushi, Y. Kusano, J.  Kim, N. Tsuji,  R.  Takahashi, N. Nishiyama, T. Inoue, T.  Irifune, M. Takano, Inorg.  Chem.,  52[23], 13751-13761,  2013.
doi.org/10.1021/ic402344m

52.

Quantitative understanding of thermal stability of α”-Fe16N2, S.Yamamoto, R.Gallage, Y.Ogata, Y.Kusano,  N.Kobayashi, T.Ogawa, N.Hayashi, K.Kohara, M.Takahashi,  M.Takano,  Chem.  Comm., 49[70] 7708-7710, 2013.
doi.org/10.1016/j.jpowsour.2008.08.062

51.

Challenge to the Synthesis of α”-Fe16N2 Compound Nanoparticle with High Saturation Magnetization for Rare Earth  Free  New  Permanent Magnetic Material, T.Ogawa, Y.Ogata,  R.Gallage,  N.Kobayashi,  N.Hayashi, Y.Kusano, S.Yamamoto,  K.Kohara, M.Doi,  M.Takano, M.Takahashi,  Appl. Phys. Express,  6, 2013, 073007.
https://iopscience.iop.org/article/10.7567/APEX.6.073007

50.

Nano-Micrometer-Architectural Acidic Silica Prepared from Iron Oxide  of Leptothrix ochracea Origin, H.Hashimoto, A.Itadani, T.Kudoh, S.Fukui,  Y.Kuroda, M.Seno, Y.Kusano, Y.Ikeda, Y.Benino,  T.Nanba,  M.Nakanishi,  T.Fujii, J.Takada, ACS Appl. Mater.  Interfaces, 5 [11]  2013,  5194-5200.
doi.org/10.1021/am401029r

49.

圧密試験による瓦用粘土成形体の乾燥変形要因の検討, 原田達也, 江木俊雄, 草野圭弘, 清水一郎, 高田 潤, 粘土科学, 51 [3] 2013, 95-106.
doi.org/10.11362/jcssjnendokagaku.51.3_95

48.

熊本県下扇原遺跡出土古代ベンガラのキャラクタリゼーション, 辻 広美, 村上 隆, 宮崎敬士, 橋本英樹, 團野瑛章, 草野圭弘, 菊地孝宏, 中西 真, 藤井 達生, 高田 潤, 粉体および粉末冶金, 60 [4] 2013, 146-153.
doi.org/10.2497/jjspm.60.146

47.

Suppression of Intersite Charge Transfer inCharge-Disproportionated  Perovskite YCu3Fe4O12, H.Etani, I.Yamada,  K.Ohgushi, N.Hayashi, Y.Kusano, M.Mizumaki, J.Kim, N.Tsuji, R.Takahashi,  N.Nishiyama, T.Inoue, T.Irifune, M.Takano,  J.  Am. Chem. Soc., 135 [16]  2013, 6100-6106.
doi.org/10.1021/ja312015j

46.

微生物が作るマンガン酸化物の熱処理による結晶構造と微細構造の変化, 木村倫康, 橋本英樹, 宮田直幸, 仁科勇太, 草野圭弘, 池田靖訓, 中西 真, 藤井達生, Ivo SAFARIK, Mirka SAFARIKOVA, 高田 潤, 粉体および粉末冶金,   60 [3]  2013,  92-99.
doi.org/10.2497/jjspm.60.92

45.

B-Site Deficiencies inA-site-OrderedPerovskite LaCu3Pt3.75O12, M.Ochi, I.Yamada,  K.Ohgushi, Y.Kusano, M.Mizumaki, R.Takahashi, S.Yagi, N.Nishiyama,  T.Inoue, T.Irifune, Inog. Chem., 52 [7] 2013, 3985-3989.
doi.org/10.1021/ic302809v

44.

Nano-micro-architectural composites with acid properties: Magnetic  iron oxides/amorphous silicate prepared from iron oxide produced  by iron-oxidizing bacterium, Leptothrix ochracea, H.Hashimoto,  A.Itadani, T.Fujii, M.Nakanishi, H.Asaoka, Y.Kusano, Y.Ikeda,  Y.Kuroda, J.Takada, Mater. Res. Bull., 48 [3] 2013,  1174-1177.
doi.org/10.1016/j.materresbull.2012.12.022

43.

Crystal Structure of β-Fe2O3 and Topotactic Phase Transformation to α-Fe2O3, T.Danno,  D.Nakatsuka, Y. Kusano, H.Asaoka, M.Nakanishi, T.Fujii, Y.Ikeda,  J.Takada, Cryst. Growth Des., 13[2], 2013, 770-774.
doi.org/10.1021/cg301493a

42.

Acidic Amorphous Silica Prepared from Iron Oxide of Bacterial Origin,  H.Hashimoto, A.Itadani, T.Kudoh, Y.Kuroda, M.Seno, Y.Kusano,  Y.Ikeda, M.Nakanishi, T.Fujii, J.Takada, ACS Appl. Mater.  Interfaces, 5 [3]  2013,  518-523.
doi.org/10.1021/am302837p

41.

Microstructure and mechanicalpropertiesofMgO-doped  Al2TiO5 prepared by reactive sintering, R.Maki,  Y.Suzuki, J. Ceram. Soc. Jpn., 121 [7] 2013, 568-571.
doi.org/10.2109/jcersj2.121.568

40.

Microstructural control of porous Al2TiO5 by using potato starch as pore-forming agent, H.Nishijima, R.Maki, Y.Suzuki,  J. Ceram. Soc. Jpn., 121 [8] 2013, 730-733.
doi.org/10.2109/jcersj2.121.730

2012年
39.

Preparation, microstructure, and color tone of microtubule material composed of hematite/amorphous-silicate nanocompositefromiron  oxide  of  bacterial origin, H.Hashimoto, H.Asaoka, T.Nakano,  Y.Kusano, H.Ishihara,Y.Ikeda, M.Nakanishi, T.Fujii,  T.Yokoyama, N.Horiishi,T.Nanba, J.Takada, Dyes and Pigments,  95, 2012, 639-643.
doi.org/10.1016/j.dyepig.2012.06.024

38.

Amorphous structure of iron oxide of bacterial origin, H.Hashimoto, T.Fujii, S.Kohara, H.Asaoka, Y.Kusano, Y.Ikeda, M.Nakanishi,  Y.Benino, T.Nanba, J.Takada, Mater. Chem. Phys., 137 [2] 2012,  571-575.
doi.org/10.1016/j.matchemphys.2012.10.002

37.

Synthesis and magnetic properties of magnetite-silicate nanocomposites  derived from iron oxide of bacterial origin, H.Hashimoto,  T.Fujii, M.Nakanishi, Y.Kusano, Y.Ikeda, J.Takada, Mater.  Chem. Phys., 136  [2-3]  2012, 1156-1161.
doi.org/10.1016/j.matchemphys.2012.08.070

36.

An oxyhydride of BaTiO3 exhibiting hydride exchange and  electronic conductivity, Y.Kobayashi, O.J.Hernandez, T.Sakaguchi,  T.Yajima, T.Roisnel, Y.Tsujimoto, M.Morita, Y.Noda, Y.Mogami,  A.Kitada, M.Ohkura, S.Hosokawa, Z.Li, K.Hayashi, Y.Kusano,  J.Kim, N.Tsuji, A.Fujiwara, Y.Matsushita, K.Yoshimura,  K.Takegoshi, M.Inoue, M.Takano, H.Kageyama, Nat. Mater., 11,  2012, 507-511.
10.1038/nmat3302

2011年
35.

Microstructure and Formation Conditions of the Reddish Hi-iro Marking  on Traditional Japanese Ceramics, Y.Kusano, T.Danno,  K.Tokunaga, N.Kamochi, H.Hashimoto, M.Nakanishi, T.Fujii,  M.Fukuhara, J.Takada, J. Ceram. Soc. Jpn., 119 [12], 2011,  942-946.
doi.org/10.2109/jcersj2.119.942

34.

ビックスバイト型 β-Fe2O3の生成機構, 團野瑛章, 草野圭弘, 浅岡裕史, 中西真, 藤井達生, 池田靖訓, 高田潤, 粉体および粉末冶金, 58 [9], (2011) 529-534.
doi.org/10.2497/jjspm.58.529

33.

Morphology effects of Co3O4 nanocrystals catalyzing CO oxidation in a dry reactant gas stream, Y.Teng,  Y.Kusano, M.Azuma, M.Haruta, Y.Shimakawa, Catal. Sci.  Technol., 1 [6] (2011) 920-922.
doi.org/10.1039/C1CY00113B

32.

Transformation of Nano- to Mesosized Iron Oxide Cores to α-Fe within Organic Shells Preserved Intact, S.Yamamoto, G.Ruwan, Y.Tamada, K.Kohara, Y.Kusano, T.Sasano, K.Ohno, Y.Tsujii, H.Kageyama, T. Ono, M.Takano, Chem. Mater., 23 [6] (2011)1564-1569.
doi.org/10.1021/cm103412h

2010年
31.

Science in the Art of the Master Bizen Potter, Y.Kusano, M.Fukuhara, J.Takada, A.Doi, Y.Ikeda, M.Takano, Acc. Chem. Res., 43 [6]  (2010) 906-915.
doi.org/10.1021/ar9001872

30.

One-pot hydrothermal synthesis of uniformly cubic Co3O4 nanocrystals, Y.Teng, S.Yamamoto, Y.Kusano,  M.Azuma, Y.Shimakawa, Mater. Lett., 64 [3] (2010) 239-242.
doi.org/10.1016/j.matlet.2009.10.039

2009年
29.

Effects of Rice Straw on the Color and Microstructure of Bizen, a Traditional Japanese Stoneware, as a Function of Oxygen Partial  Pressure, Y.Kusano, A.Doi, M.Fukuhara, M.Nakanishi, T.Fujii,  J.Takada,  Y.Ikeda,  M.Takano, C.Henrist, R.Cloots, A.Rulmont,  M.Ausloos, J. Am. Ceram. Soc., 92 [8] (2009) 1840-1844.
doi.org/10.1111/j.1551-2916.2009.03125.x

28.

Synthesis, Crystal Structure, and Magnetic Properties of Bi3Mn4O12(NO3) Oxynitrate  Comprising S=3/2 Honeycomb Lattice, O.Smirnova, M.Azuma,  N.Kumada, Y.Kusano, M.Matsuda, Y.Shimakawa, T.Takei, Y.Yonesaki,  N.Kinomura, J. Am. Chem. Soc., 131 [23] (2009) 8313-8317.
doi.org/10.1021/ja901922p

27.

Synthesis and magnetic properties of AgI intercalated Bi-Ca-Co-O misfit-layer cobalt oxide, Y.Tanaka, T.Fujii, M.Nakanishi, Y.Kusano,  Y.Ikeda, J.Takada, Mater. Lett., 63 [2] (2009) 328-330.
doi.org/10.1016/j.matlet.2008.10.032

2008年
26.

Multitechnique solutionofanewstructuraltype Bi3Mn4O11.22(NO3)0.93, O.Smirnova, A.Masaki, N.Kumada, Y.Kusano, T.Takei, Y.Yonesaki, N.Kinomura,  Acta Cryst., A64 (2008) C214.
http://scripts.iucr.org/cgi-bin/paper?S0108767308093124

25.

Microstructure and Formation Process of Reddish Color Pattern  Hidasukki on Bizen Stoneware, Y.Kusano, M.Fukuhara, T.Fujii, J.Takada,  A.Doi, Y.Ikea, M.Takano, Acta Cryst., A64 (2008)C165.
http://scripts.iucr.org/cgi-bin/paper?S0108767308094683

24.

Epitaxial Growth of ε-Fe2O3 on Mullite Found through Studies on a Traditional Japanese Stoneware, Y.Kusano,  T.Fujii, J.Takada, M.Fukuhara, A.Doi, Y.Ikeda, M.Takano, Chem.  Mater., 20 [1] (2008) 151-156.
doi.org/10.1021/cm7023247

2007年
23.

錯体重合法による炭素/Fe-Ni-Cu合金複合材料の調製と構造・電波吸収特性の評価, 中西 真, 内田有紀子, 藤井達生, 高田 潤, 草野圭弘, 菊池丈幸, 炭素, 228 (2007) 158-162.
doi.org/10.7209/tanso.2007.158

22.

Synthesis, morphology and color tone properties of the lanthanum  substituted hematite, T.I.Bhuiyan, M.Nakanishi, Y.Kusano, T.Fujii,  J.Takada, Y.Ikeda, Mater. Lett., 61 [17] (2007) 3774-3777.
doi.org/10.1016/j.matlet.2006.12.032

21.

Characteristics of hollow microtubes consisting of amorphous iron oxide nanoparticles produced by iron oxidizing bacteria, Leptothrix  ochracea, H.Hashimoto, S.Yokoyama, H.Asaoka, Y.Kusano,  Y.Ikeda, M.Seno, J.Takada, T.Fujii, M.Nakanishi, R.Murakami,  J. Magn. Magn. Mater., 310, [2], (2007) 2405-2407.
doi.org/10.1016/j.jmmm.2006.10.793

20.

Systematic study on synthesis and structural, electrical transport and magnetic properties of Pb-substituted Bi-Ca-Co-O misfit-layer cobaltites,  Y.Tanaka, T.Fujii, M.Nakanishi, Y.Kusano,  H.Hashimoto,  Y.Ikeda, J.Takada,  Solid State Commun., 141 [3]  (2007)  122-126.
doi.org/10.1016/j.ssc.2006.10.015

19.

Synthesis, Structure and Properties of the Cerium Doped Hematite  Co-existing with CeO2, T.I.Bhuiyan, M.Nakanishi,  Y.Kusano, T.Fujii, J.Takada, Y.Ikeda, J. Jpn. Soc. Powder  Powder Metallurgy, 54 (2007) 112-118.
doi.org/10.2497/jjspm.54.112

18.

備前焼模様「緋(火)襷」の材料科学的研究, 草野圭弘, 山口一裕, 福原 実, 土井 章, 粉体および粉末冶金, 54 [2] (2007) 75-80.
doi.org/10.2497/jjspm.54.75

17.

Transport Properties of a Single Crystal of Misfit Cobaltate with Double RS-type Sr-O Layers, S.Ishiwata, I.Terasaki, Y.Kusano,  M.Takano, Physica C, 460-462 (2007) 491-492.
doi.org/10.1016/j.physc.2007.03.065

2006年
16.

Effects of pH Control on Preparation of Z-type Hexagonal Ferrite Ba3Co2Fe24O41 by  Polymerized Complex Method, M.Nakanishi, A.Akiyama, T.Fujii,  J.Takada, T.Kikuchi, Y.Kusano, Ceramic Transactions, 196,  435-440, 2006.
doi.org/10.1002/9781118144121.ch42

15.

Iodine Intercalation and Deintercalation of a Sr-Free Bi-Based  Cuprate:Bi2(La,Na)2CuOz,  Y.Tanaka, M.Nakanishi, T.Fujii, J.Takada, Y.Kusano, Y.Ikeda,  Ceramic Transactions, 196, 85-90, 2006.
doi.org/10.1002/9781118144121.ch9

14.

Transport Properties of the Misfit-layered Cobalt Oxide [Sr2O2-δ]0.53CoO2, S.Ishiwata,  I.Terasaki, Y.Kusano, M.Takano, J. Phys. Soc. Jpn. 75 (2006) 104716.
doi.org/10.1143/JPSJ.75.104716

13.

Surface oxidation, size and shape of nano-sized magnetite obtained by  co-precipitation, I.Nedkov, T.Merodiiska, L.Slavov,  R.E.Vandenberghe, Y.Kusano, J.Takada, J. Magn. Magn. Mater.,  300 [2] 2006  358-367.
doi.org/10.1016/j.jmmm.2005.05.020

2005年
12.

錯体重合法を応用した炭素/Fe-Co合金複合材料の調製と磁気特性, 内田有紀子,大石響子,中西真,藤井達生,高田潤,草野圭弘,菊池丈幸, 粉体および粉末冶金, 52, 640-645, (2005).
doi.org/10.2497/jjspm.52.640

2004年
11.

Preparation and characterization of nanocrystalline CeO2-ZrO2 catalysts by dry method: effect of  oxidizing conditions, A.Muto, T.Bhaskar, Y.Kaneshiro, Y.Sakata,  Y.Kusano, K.Murakami, Appl. Catal. A-Gen., 275 [1-2] (2004)  173-181.
doi.org/10.1016/j.apcata.2004.07.031

10.

Microstructure and Formation Process of the Characteristic Reddish Color Pattern Hidasuki on Bizen Stoneware:ReactionsInvolving  Rice  Straw,  Y.Kusano, M.Fukuhara, T.Fujii, J.Takada,  R.Murakami, A.Doi,  L.Anthony,  Y.Ikeda, M.Takano, Chem. Mater.  16 [19], (2004)  3641-3646.
doi.org/10.1021/cm0352145

9.

Crystalline Control of Bincho Charcoalby using Catalytic  Graphitization and Electromagnetic Wave Absorption Characteristics of  Derived Carbon, Y.Uchida, M.Nakanishi, T.Fujii, J.Takada, A.Muto,  Y.Sakata, Y.Kusano, T.Kikuchi, Transactions of the Materials  Research Society of Japan, 29 [5] (2004) 2511-2514.
https://www.mrs-j.org/pub/store.php?pid=2010

2003年
8.

吹屋ベンガラのキャラクタリゼーションとFe2O3-Al2O3系赤色顔料の合成, 浅岡裕史, 草野圭弘, 中西 真, 藤井達生, 高田 潤, 粉体および粉末冶金, 50  (2003)1062-1067.
doi.org/10.2497/jjspm.50.1062

7.

Utilization of waste biomass and replacement of stoichiometric reagents for the synthesis of nanocrystalline CeO2,  ZrO2 and CeO2-ZrO2, A.Muto,  T.Bhaskar, Y.Kaneshiro, Md.A.Uddin, Y.Sakata, Y.Kusano,  K.Murakami, Green  Chemistry,  5 [4] (2003) 480-483.
doi.org/10.1039/B304574A

2002年
6.

Microstructure and Magnetic Behavior of Nonosized Fe3O4 Powders and Polycrystalline Films, I.Nedkov,  T.Merodiiska, S.Kolev, K.Krezhov, D.Niarchos, E.Moraitakis,  Y.Kusano, J.Takada, Monatshefte fur Chemie /Chemical Monthly,  133 (2002) 823-828.
DOI:10.1007/s007060200054

5.

A new tetragonal phaseinLa-rich  Pr2-xLaxCuO4 (1.35<x<1.5), Y.Ikeda, K.Yamada, Y.Kusano, J.Takada,  Physica C, 378-381 (2002) 395-398.
doi.org/10.1016/S0921-4534(02)01453-3

4.

Synthesis and Properties of Pb-doped Bi-2212 Phase, Y.Kusano, A.Doi, M.Nakanishi, T.Fujii, J.Takada, Y.Ikeda, M.Takano, Key  Engineering Materials, Trans Tech Publications (Switzerland),  206-213 (2002) 1469-1472.
doi.org/10.4028/www.scientific.net/KEM.206-213.1469

2000年
3.

Vapor phase catalytic hydrodechlorination of chlorobenzen over Ni-carbon composite catalysts, N.Lingaiah, Md.A.Uddin, A.Muto,  T.Iwamoto, Y.Sakata, Y.Kusano, J. Molecular Catalysis A:  Chemical, 161 (2000) 157-162.
doi.org/10.1016/S1381-1169(00)00328-9

2.

Elastic behavior of metal compound / microporous carbon composite, T.Iwamoto, A.Muto, M.A.Uddin, Y.Sakata, J.Takada, Y.Kusano,  Transactions of the Materials Research Society of Japan, 25  [4] (2000)  1115-1118.
https://www.mrs-j.org/pub/store.php?pid=2000

1.

Preparation of Ultra Fine Metal Compounds Highly Dispersed in the  Porous Carbon Matrix from Iron Exchanged Resin, H.Suga, A.Muto,  Md.Azhar Uddin, Y.Sakata, J.Takada, Y.Kusano, Transactions of  the Materials Research Society of Japan,, 25 [1] (2000) 103-106.
https://www.mrs-j.org/pub/store.php?pid=2000

Proceedings
10.

Evaluation of thermal shock fracture resistance of B4C/CNT composites with high-frequency induction-heating furnace, R. S. S. Maki, M. Fajar, J. Maletaskic, A. V. Gubarevich, K. Yoshida, T. Yano, T. S. Suzuki, T. Uchikoshi, Mater. Today Proc., 16, 2019, 137-143.
doi.org/10.1016/j.matpr.2019.05.280

9.

High-temperature synthesis and characterization of boron suboxide (B6O) and boron containing hard materials, J.  Maletaskic, J. Lukovic, K. Yoshida, T. Yano, R. S. S. Maki, A. Gubarevich, B. Matovic, Mater. Today Proc., 16, 2019, 95-101.
doi.org/10.1016/j.matpr.2019.05.281

8. Characterization of Ancient Iron Oxide Pigment, Bengala, Excavated from Japanese Archaeological Site, H.Tsuji, R.Murakami, T.Miyazaki, H.Hashimoto, T.Danno, T.Kikuchi, Y.Kusano, T.Fujii, J.Takada, Proc. Powder Metallurgy World Congress & Exhibition(PM2012), 2012, P-T16-144.
7. Microstructure and Formation Conditions of Brownish Color Pattern on Traditional Japanese Stoneware, Y.Oomori, Y.Kusano, M.Nakanishi, T.Fujii,M.Fukuhara, J.Takada, Proc. Powder Metallurgy World Congress &Exhibition(PM2012), 2012, P-T16-143.
6.

Frustrated S=3/2honeycombantiferromagnet  Bi3Mn4O12(NO3), M.Azuma, M.Matsuda, N.Onishi, S.Olga, Y.Kusano, M.Tokunaga, Y.Shimakawa, N.Kumada, International Conference on Frustration in Condensed Matter (ICFCM),  Jan.  14, 2011, Sendai, Japan.
doi:10.1088/1742-6596/320/1/012005

5. Morphological and Microstructural Study of Iron Oxide Microtubes Formed by Iron Oxidizing Bacteria, Leptothrix Ochracea, H.Hashimoto, S.Yokoyama, H.Asaoka, Y.Kusano, Y.Ikeda, M.Seno, J.Takada, T.Fujii, 2nd International Congress on Ceramics, (2008) 6-P011.
4. Epitaxial growth of epsilon iron oxide on mullite found through studies on traditional Japanese stoneware, Y.Kusano, T.Fujii, J.Takada, M.Fukuhara, K.Yamaguchi, K.Takabatake, A.Doi, Y.Ikeda, M.Takano, 2nd International Congress on Ceramics, (2008) 4-P52.
3. Bio-compatible nanostructured magnetite powder encapsulated by β-cyclodextrin, L.Slavov, T.Merodiiska, I.Nedkov, I.Mitov, M.Milanova, Y.Kusano, J.Takada, Nanoscience & Nanotechnology, 5 (2005) eds. E. Balabanova, I. Dragieva, Heron Press, Sofia.
2. Microstructure and formation mechanism of fire-mark pattern on Japanese traditional “Bizen” earthenware, Y.Kusano, A.Doi, M.Nakanishi, T.Fujii, J.Takada, M.Fukuhara, R.Murakami, Proc. Science for New Technology of Silicate Ceramics, Edited by P.Vincenzini and M.Dondi, (2003) 39-42.
1. Microstructure and magnetic behavior of nanosized Fe3O4 powders, I.Nedkov, T.Merodiiska, S.Kolev, I.Mitov, Y.Kusano, J.Takada, Proc. Workshop Nanoscience & Nanotechnology, pp. 158-160,HeronPressLtd.,Sofia,Bulgaria,2002.