@article{CTT100890777, author = {Rurika Kubota and Akinori Tateyama and Yoshiharu Ito and Takahisa Shiraishi and Minoru Kurosawa and Hiroshi Funakubo}, title = {Process window for growth of polar-axis-oriented tetragonal (Bi,K)TiO3 epitaxial films on (100)cSrRuO3//(100)SrTiO3 substrates by hydrothermal method}, journal = {J. Mater. Sci.}, year = 2022, } @article{CTT100890808, author = {Akinori Tateyama and Yoshiharu Ito and Takahisa Shiraishi and Minoru Kurosawa and Hiroshi Funakubo}, title = {Effect of film thickness on piezoelectric vibrator using hydrothermally synthesized epitaxial (K0.88Na0.12)NbO3 film}, journal = {Jpn. J. Appl. Phys.}, year = 2022, } @article{CTT100890761, author = {Kazuma Yoshizawa and Masashi Suzuki and Shoji Kakio and Yoshiharu Ito and Akinori Tateyama and Takahisa Shiraishi and Hiroshi Funakubo and Tsuyoshi Wakabayashi and Kenji Shibata}, title = {Evaluation of bulk and surface acoustic waves propagation properties of (K,Na)NbO3 films deposited by hydrothermal synthesis or RF sputtering}, journal = {Jpn. J. Appl. Phys.}, year = 2022, } @article{CTT100874631, author = {Rurika Kubota and Akinori Tateyama and Takahisa Shiraishi and Yoshiharu Ito and Minoru Kurosawa and Hiroshi Funakubo}, title = {Film thickness dependence of ferroelectric properties in polar-axis oriented epitaxial (Bi,K)TiO3 films prepared by Hydrothermal method}, journal = {AIP Adv.}, year = 2022, } @article{CTT100874609, author = {Reijiro Shimura and Takanori Mimura and Akinori Tateyama and Takahisa Shiraishi and Takao Shimizu and Tomoaki Yamada and Yoshitomo Tanaka and Yukari Inoue and Hiroshi Funakubo}, title = {No-Heating Deposition of 1-μm-Thick Y-Doped HfO2 Ferroelectric Films with Good Ferroelectric and Piezoelectric Properties by Radio Frequency Magnetron Sputtering Method}, journal = {Phys. Status Solidi RRL}, year = 2022, } @article{CTT100874607, author = {Yoshiharu Ito and Akinori Tateyama and Rurika Kubota and Takahisa Shiraish and Takao Shimizu and Osami Sakata and Jaemyung Kim and Minoru Kurosawa and Hiroshi Funakubo}, title = {Polar-axis oriented epitaxial tetragonal (Bi,K)TiO3 films deposited below Curie temperature by hydrothermal method}, journal = {Appl. Phys. Lett.}, year = 2022, } @inproceedings{CTT100902544, author = {Hiroshi Funakubo and Shinnosuke Yasuoka and Ryoichi Mizutani and Takahisa Shiraishi and Akinori Tateyama and Reika Ota and Kazuki Okamoto and Takao Shimizu and Masato Uehara and Hiroshi Yamada and Morito Akiyama}, title = {Thickness Scaling and Low Voltage Operation of Ferroelectric (Al1-xScx)N Films Prepared by Sputtering Method}, booktitle = {}, year = 2022, } @inproceedings{CTT100902542, author = {Hiroshi Funakubo and Rurika Kubota and Yoshiharu Ito and Akinori Tateyama and Yuxian Hu and Minoru Kurosawa}, title = {Ferroelectricity of Polar-axis Oriented Epitaxial (Bi, K)TiO3 Thin Films Grown by Hydrothermal Method}, booktitle = {}, year = 2022, } @inproceedings{CTT100902625, author = {Rurika Kubota and Yoshiharu Ito and Akinori Tateyama and Takahisa Shiraishi and Minoru Kurosawa and Hiroshi Funakubo}, title = {Domain structure of epitaxial tetragonal (Bi,K)TiO3 films grown below Curie temperature by hydrothermal method}, booktitle = {}, year = 2022, } @inproceedings{CTT100902563, author = {Rurika Kubota and Akinori Tateyama and Takahisa Shiraishi and Minoru Kuribayashi Kurosawa and HIROSHI FUNAKUBO and Yoshiharu Ito}, title = {水熱合成法を用いて種々の合成条件で作製した(Bi,K)TiO3薄膜の結晶構造および電気特性}, booktitle = {}, year = 2022, } @inproceedings{CTT100902569, author = {Akinori Tateyama and Yoshiharu Ito and Takahisa Shiraishi and yuichiro orino and Minoru Kuribayashi Kurosawa and HIROSHI FUNAKUBO}, title = {水熱合成法で作製した(K,Na)NbO3厚膜の振動特性及び発電特性の膜厚依存性}, booktitle = {}, year = 2022, } @inproceedings{CTT100874822, author = {Yoshiharu Ito and Rurika Kubota and Akinori Tateyama and Takahisa Shiraishi and Minoru Kuribayashi Kurosawa and HIROSHI FUNAKUBO}, title = {水熱法を用いた種々の原料投入量比における(Bi,K)TiO3薄膜の合成}, booktitle = {}, year = 2022, } @inproceedings{CTT100874825, author = {Rurika Kubota and Akinori Tateyama and Takahisa Shiraishi and Minoru Kuribayashi Kurosawa and HIROSHI FUNAKUBO and Yoshiharu Ito}, title = {水熱法を用いてキュリー温度以下で(001), (110), および(111)SrTiO3基板上合成したエピタキシャル(Bi,K)TiO3薄膜のドメイン構造}, booktitle = {}, year = 2022, } @inproceedings{CTT100874798, author = {吉澤宗眞 and 鈴木雅視 and 垣尾省司 and Yoshiharu Ito and Akinori Tateyama and Takahisa Shiraishi and HIROSHI FUNAKUBO and 若林剛 and 柴田憲治}, title = {水熱合成または高周波スパッタリングにより成膜された (K,Na)NbO3膜のBAW・SAW伝搬特性}, booktitle = {}, year = 2022, } @misc{CTT100866480, author = {Akinori Tateyama}, title = {Study on piezoelectric properties of hydrothermally synthesized (K,Na)NbO3 films using various evaluation methods}, year = 2022, } @misc{CTT100866481, author = {Akinori Tateyama}, title = {Study on piezoelectric properties of hydrothermally synthesized (K,Na)NbO3 films using various evaluation methods}, year = 2022, } @misc{CTT100895151, author = {Akinori Tateyama}, title = {Study on piezoelectric properties of hydrothermally synthesized (K,Na)NbO3 films using various evaluation methods}, year = 2022, } @misc{CTT100866482, author = {Akinori Tateyama}, title = {Study on piezoelectric properties of hydrothermally synthesized (K,Na)NbO3 films using various evaluation methods}, year = 2022, } @phdthesis{CTT100866480, author = {Akinori Tateyama}, title = {Study on piezoelectric properties of hydrothermally synthesized (K,Na)NbO3 films using various evaluation methods}, school = {Tokyo Institute of Technology}, year = 2022, } @phdthesis{CTT100866481, author = {Akinori Tateyama}, title = {Study on piezoelectric properties of hydrothermally synthesized (K,Na)NbO3 films using various evaluation methods}, school = {Tokyo Institute of Technology}, year = 2022, } @phdthesis{CTT100895151, author = {Akinori Tateyama}, title = {Study on piezoelectric properties of hydrothermally synthesized (K,Na)NbO3 films using various evaluation methods}, school = {Tokyo Institute of Technology}, year = 2022, } @phdthesis{CTT100866482, author = {Akinori Tateyama}, title = {Study on piezoelectric properties of hydrothermally synthesized (K,Na)NbO3 films using various evaluation methods}, school = {Tokyo Institute of Technology}, year = 2022, }