Curriculum Vitaes

Tomokazu Umeyama

  (梅山 有和)

Profile Information

Affiliation
of Engineering, Graduate School, University of Hyogo
Degree
(BLANK)(Kyoto University)

Contact information
umeyamaeng.u-hyogo.ac.jp
Researcher number
30378806
J-GLOBAL ID
200901071986704046
researchmap Member ID
1000327135

External link

Committee Memberships

 4

Papers

 172
  • Wataru Suzuki, Ayumi Okamoto, Yusuke Kizuki, Futo Tanaka, Ryo Inoue, Tomohiro Agou, Tomokazu Umeyama
    JOURNAL OF ORGANIC CHEMISTRY, 90(51) 18244-18254, Dec 26, 2025  Peer-reviewedLast authorCorresponding author
  • Wataru Suzuki, Ryo Takahata, Tomu Morigaki, Yuki Chiga, Tomokazu Umeyama, Toshiharu Teranishi
    ACS Nano, 19(50) 42148-42157, Dec 13, 2025  Peer-reviewedCorresponding author
  • Kenta Yamada, Wataru Suzuki, Jun-ichi Nishida, Masayuki Gon, Kazuo Tanaka, Tomokazu Umeyama
    Chemical Communications, 61(71) 13401-13404, Aug, 2025  Peer-reviewedLast authorCorresponding author
    The stereoisomers of 2-ethylhexyl-substituted cyclopentadithiophene, a widely used π-conjugated building block, have been systematically separated for the first time.
  • Yasunari Tamai, Midori Akiyama, Lorenzo Vallan, Daiki Sasada, Katsuaki Suzuki, Hironori Kaji, Takumi Urakami, Hirofumi Sato, Masahiro Higashi, Seiichiro Izawa, Motohisa Kubota, Tomokazu Umeyama, Hiroshi Imahori
    Chemical Science, 16(34) 15378-15386, Jul, 2025  
    A supramolecular photosynthetic system was developed.
  • Tomokazu Umeyama, Kaho Yasuzato, Seiya Sugiura, Kenta Yamada, Junichi Inamoto, Shunjiro Fujii, Wataru Suzuki
    Journal of Photopolymer Science and Technology, 38(3) 197-204, Jun 24, 2025  Peer-reviewed
  • Wataru Suzuki, Futo Tanaka, Yusuke Kizuki, Ryo Inoue, Tomohiro Agou, Tomokazu Umeyama
    Organic & biomolecular chemistry, 23(19) 4686-4693, May 14, 2025  
    N-Methylation is a facile way to tune the structures and the electronic properties of porphyrin macrocycles, which could induce molecular recognition abilities or asymmetric geometric structures for organocatalytic and optoelectronic applications. However, as N-methylation reactions require a strong methylating reagent such as methyl triflate, control over the reactivities including methylation number and positions is still elusive. In this work, we have achieved highly regioselective and efficient 21N,23N-dimethylation of β-tetrabrominated porphyrins by methyl triflate. The experimental and theoretical evidence reveal that steric effects of bulky Br groups and unique tautomerisms of β-substituted porphyrins play essential roles in determining the regioselectivity of the nucleophilic N-methylation. Moreover, the high basicity of the formed 21N,23N-dimethylporphyrins induces the facile protonation of imine nitrogen atoms, which regulates the number of introduced methyl groups to suppress further N-methylation. As Br groups can be easily converted into various types of substituents, this work provides significant insights to expand the synthetic methods of N-methylporphyrins with precisely tunable reactivities and physicochemical properties.
  • Motohisa Kubota, Tomokazu Umeyama, Wataru Suzuki, Tomoyuki Koganezawa, Midori Akiyama, Hiroshi Imahori
    Bulletin of the Chemical Society of Japan, 98(1), Jan 8, 2025  
    Abstract The singlet exciton (S1) lifetime of nonfullerene acceptor (NFA) films is a crucial factor influencing their photovoltaic performances, as a longer S1 lifetime increases the exciton diffusion length. We previously reported that a NFA with a two-dimensionally π-extended thienoazacoronene (TAC) central core, S-TACIC, exhibits an exceptionally long S1 lifetime in the film. In this study, we examined the effects of replacing thiophene with selenophene on the photophysical and photovoltaic properties. Fluorescence decay measurements showed that the S1 lifetime of the selenophene-substituted TAC-based NFA (Se-TACIC) is longer in solution (500 ps) but significantly shorter in the film (<200 ps) compared to S-TACIC (220 ps in solution and 1,590 ps in film). When blended with the polymer donor PBDB-T, the Se-TACIC-based organic photovoltaic (OPV) device exhibited a lower power conversion efficiency (5.58%) than the S-TACIC-based one (9.92%), due to inferior photovoltaic parameters of the Se-TACIC-based OPV device.
  • Kenta Yamada, Wataru Suzuki, Motohisa Kubota, Junichi Inamoto, Mizuho Kondo, Tomoyuki Koganezawa, Yuki Chiga, Ryo Takahata, Toshiharu Teranishi, Hiroshi Imahori, Tomokazu Umeyama
    Journal of Materials Chemistry C, 13(16) 7984-7995, 2025  
    Substituents of the quinoxaline core influence the aggregation properties of S-shaped acceptors.
  • Tomokazu Umeyama, Motohisa Kubota, Haoxuan Zhang, Rintaro Adachi, Akira Yamakata, Tomoyuki Koganezawa, Hiroshi Imahori
    Journal of Photopolymer Science and Technology, 37(2) 197-204, Jun 25, 2024  
  • Akira Yamakata, Kosaku Kato, Takumi Urakami, Sota Tsujimura, Kasumi Murayama, Masahiro Higashi, Hirofumi Sato, Yasuhiro Kobori, Tomokazu Umeyama, Hiroshi Imahori
    Chemical Science, 15(32) 12686-12694, 2024  
    Neat ITIC films are found to facilitate charge transfer, dissociation, and free carrier formation without the need for donor layers. This process, driven by V-type molecular stacking, significantly boosts organic photovoltaic efficiency.
  • Tomokazu Umeyama, Daizu Mizutani, Yuki Ikeda, W. Ryan Osterloh, Futa Yamamoto, Kosaku Kato, Akira Yamakata, Masahiro Higashi, Takumi Urakami, Hirofumi Sato, Hiroshi Imahori
    Chemical Science, 14(42) 11914-11923, 2023  
    An unusual emissive charge-transfer excited state was formed at the pyrene–MoS2 interface.
  • Shaoxian Li, Ryosuke Nishikubo, Tatsuho Wada, Tomokazu Umeyama, Hiroshi Imahori, Akinori Saeki
    Polymer Journal, Sep 27, 2022  Peer-reviewed
  • Tomokazu Umeyama, Tatsuho Wada, Kensho Igarashi, Kosaku Kato, Akira Yamakata, Taiki Takeyama, Yuji Sakamoto, Yasunari Tamai, Hideo Ohkita, Keiichi Ishida, Tomoyuki Koganezawa, Shunsuke Ohtani, Kazuo Tanaka, Hiroshi Imahori
    ACS Applied Energy Materials, 4(12) 14022-14033, Dec 27, 2021  
  • Bhagyashree Mahesha Sachith, Takuya Okamoto, Sushant Ghimire, Tomokazu Umeyama, Yuta Takano, Hiroshi Imahori, Vasudevanpillai Biju
    The Journal of Physical Chemistry Letters, 12(35) 8644-8651, Sep 9, 2021  
    Interfacial electron transfer across perovskite-electron acceptor heterojunctions plays a significant role in the power-conversion efficiency of perovskite solar cells. Thus, electron donor-acceptor thin films of halide perovskite nanocrystals receive considerable attention. Nevertheless, understanding and optimizing distance- and thickness-dependent electron transfer in perovskite-electron acceptor heterojunctions are important. We reveal the distance-dependent and diffusion-controlled interfacial electron transfer across donor-acceptor heterojunction films formed by formamidinium or cesium lead bromide (FAPbBr3/CsPbBr3) perovskite nanocrystals with TiO2/C60. Self-assembled nanocrystal films prepared from FAPbBr3 show a longer photoluminescence lifetime than a solution, showing a long-range carrier migration. The acceptors quench the photoluminescence intensity but not the lifetime in a solution, revealing a static electron transfer. Conversely, the electron transfer in the films changes from dynamic to static by moving toward the donor-acceptor interface. While radiative recombination dominates the electron transfer at 800 μm or farther, the acceptors scavenge the photogenerated carriers within 100 μm. This research highlights the significance of interfacial electron transfer in perovskite films.
  • Tomokazu Umeyama, Han Xu, Tomoya Ohara, Yusuke Tsutsui, Shu Seki, Hiroshi Imahori
    The Journal of Physical Chemistry C, Jul 1, 2021  
  • Tomokazu Umeyama, Kensho Igarashi, Yasunari Tamai, Tatsuho Wada, Taiki Takeyama, Daiki Sasada, Keiichi Ishida, Tomoyuki Koganezawa, Shunsuke Ohtani, Kazuo Tanaka, Hideo Ohkita, Hiroshi Imahori
    Sustainable Energy and Fuels, 5(7) 2028-2035, Apr, 2021  
  • Xin-Gui Li, Yun-Bin Xie, Mei-Rong Huang, Tomokazu Umeyama, Hiroshi Imahori
    Journal of Cleaner Production, 279, Jan 10, 2021  
  • Mitsuhiko Morisue, Genki Saito, Daiki Sasada, Tomokazu Umeyama, Hiroshi Imahori, Koji Mitamura, Hiroyasu Masunaga, Taiki Hoshino, Shinichi Sakurai, Sono Sasaki
    Langmuir : the ACS journal of surfaces and colloids, 36(45) 13583-13590, Nov 17, 2020  
    Morphological control of C60 fullerene using liquefied porphyrins (1 and 2) as the host matrices was explored. Slow evaporation of the solvent of the equimolar mixture of porphyrin and C60 in toluene afforded the porphyrin/C60 composite with a 3:1 molar ratio. The stoichiometric binding behaviors suggest that specific porphyrin-C60 interactions operate the formation of the porphyrin/C60 composites, as corroborated by spectroscopic and thermal properties, and glazing-incidence wide-angle X-ray diffraction. Under the bulk conditions, the conventional thermodynamic advantage of multiple binding cooperativity for molecular recognition is unlikely to explain the stoichiometric binding behaviors. Instead, we propose a size-matching effect on the porphyrin-C60 interaction in the bulk porphyrin matrices, i.e., "supramolecular solvation". The glassy nature of the porphyrin matrices was transmitted to C60 through the specific interaction, and the porphyrin/C60 composites adopted glassy states at room temperature.
  • Tomokazu Umeyama, Kensho Igarashi, Daiki Sasada, Keiichi Ishida, Tomoyuki Koganezawa, Shunsuke Ohtani, Kazuo Tanaka, Hiroshi Imahori
    ACS Applied Materials and Interfaces, 12(35) 39236-39244, Sep 2, 2020  
  • Xin-Gui Li, Mei-Rong Huang, Tao Tao, Zhonghua Ren, Jie Zeng, Jie Yu, Tomokazu Umeyama, Tomoya Ohara, Hiroshi Imahori
    CHEMICAL ENGINEERING JOURNAL, 391 ARTN 123515, Jul, 2020  Peer-reviewed
  • Ryosuke Fukuda, Tomokazu Umeyama, Masahiko Tsujimoto, Fumiyoshi Ishidate, Takeshi Tanaka, Hiromichi Kataura, Hiroshi Imahori, Tatsuya Murakami
    CARBON, 161 718-725, May, 2020  Peer-reviewed
  • Tomokazu Umeyama, Tomoya Ohara, Yusuke Tsutsui, Shota Nakano, Shu Seki, Hiroshi Imahori
    CHEMISTRY-A EUROPEAN JOURNAL, 26(29) 6726-6735, May, 2020  Peer-reviewed
    Few-layered antimonene (FLSb) nanosheets were noncovalently functionalized with fullerene C60 clusters by quick addition of a poor solvent (i.e., acetonitrile) into a mixed dispersion of FLSb and C60 in a good solvent (i.e., toluene). In a flash-photolysis time-resolved microwave conductivity (FP-TRMC) measurement, the FLSb-C60 composite, (FLSb+C60 )m , showed a rapid rise in transient conductivity, whereas no conductivity signal was observed in the single components, FLSb and C60 . This demonstrated the occurrence of photoinduced charge separation between FLSb and C60 in (FLSb+C60 )m . Furthermore, a photoelectrochemical device with an electrophoretically deposited (FLSb+C60 )m film exhibited an enhanced efficiency of photocurrent generation, compared to those of the single-components, FLSb and C60 , due to the photoinduced charge separation between FLSb and C60 . This work provides a promising approach for fabrication of antimonene-organic molecule composites and paves the way for their application in optoelectronics.
  • Tomokazu Umeyama, Kensho Igarashi, Daiki Sasada, Yasunari Tamai, Keiichi Ishida, Tomoyuki Koganezawa, Shunsuke Ohtani, Kazuo Tanaka, Hideo Ohkita, Hiroshi Imahori
    CHEMICAL SCIENCE, 11(12) 3250-3257, Mar, 2020  Peer-reviewed
    Electron-acceptor small-molecules possessing a long exciton lifetime and a narrow energy band gap, opposing the energy gap law, are highly desirable for high-performance organic photovoltaics (OPVs) by realizing their efficient light-harvesting ability (LH), exciton diffusion (ED), and charge transfer (CT). Toward this goal, we designed an acceptor-donor-acceptor (A-D-A) type nonfullerene acceptor (NFA), TACIC, having an electron-donating, self-assembling two-dimensional (2D) nanographene unit, thienoazacoronene, at the center with electron-withdrawing groups at both ends. The TACIC film exhibited a narrow band gap (1.59 eV) with excellent LH. Surprisingly, the TACIC film showed an extremely long exciton lifetime (1.59 ns), suppressing undesirable nonradiative decay by its unique self-assembling behavior. When combined with a conjugated polymer donor, PBDB-T, slow ED and CT were observed (60 ps) with the excitation of TACIC owing to the large TACIC domain sizes. Nevertheless, the unusually high efficiencies of ED and CT (96% in total) were achieved by the long TACIC exciton lifetime. Additionally, unusual energy transfer (EnT) from the excited PBDB-T to TACIC was seen, demonstrating its dual LH role. The OPV device with PBDB-T and TACIC showed a high incident photon-to-current efficiency (IPCE) exceeding 70% at up to 710 nm and a power conversion efficiency of ∼10%. This result will open up avenues for a rational strategy of OPVs where LH, ED, and CT from the acceptor side as well as LH, EnT, ED, and CT from the donor side can be better designed by using 2D nanographene as a promising building block for high-performance A-D-A type NFAs.
  • Xin-Gui Li, Yun-Bin Xie, Mei-Rong Huang, Tomokazu Umeyama, Tomoya Ohara, Hiroshi Imahori
    JOURNAL OF CLEANER PRODUCTION, 237 UNSP 117543, Nov, 2019  Peer-reviewed
  • Tomokazu Umeyama, Yohei Okawada, Tomoya Ohara, Hiroshi Imahori
    CHEMISTRY-AN ASIAN JOURNAL, 14(22) asia.201900835-4047, Aug, 2019  Peer-reviewed
    Supramolecular composites composed of fullerene C60 and carbon nanodiamond (ND) were constructed through spontaneous complexation of C60 aggregates onto the surface of ND aggregates in N-methylpyrrolidone (NMP). The resulting C60 -ND composite was assembled onto a nanostructured SnO2 electrode by an electrophoretic deposition method. Formation of the C60 -ND composite was confirmed by dynamic light scattering (DLS) and field-emission scanning electron microscopy (FESEM). The C60 -ND composite on the SnO2 electrode showed high incident photon-to-current efficiencies (IPCEs) in the visible region as compared with the single component system of C60 or ND. The improved photocurrent generation of the C60 -ND composite may result from the photoinduced charge separation at the interface between C60 and ND. These results obtained here will provide valuable information on the design of optoelectronic devices based on all-nanocarbon materials.
  • Tomokazu Umeyama, Hiroshi Imahori
    ACCOUNTS OF CHEMICAL RESEARCH, 52(8) 2046-2055, Aug, 2019  Peer-reviewed
    Solar energy conversion is one of the most important issues for creating and maintaining a future sustainable society. In this regard, photovoltaic technologies have attracted much attention because of their potential to solve energy and environmental issues. In particular, thin-film solar cells, such as organic photovoltaics (OPVs) and perovskite solar cells (PSCs), are highly promising owing to their flexibility, light weight, and low-cost production. One of the most important factors used to evaluate solar-cell performance is the power conversion efficiency (PCE), which is the ratio of the output electric power divided by the input light power. The PCEs of PSCs have become comparable to those of multicrystalline silicon solar cells in a laboratory level, but the PCEs of OPVs have yet to catch up with them and still need to be improved. The insufficient durability of PSCs and OPVs is also a challenge that needs to be addressed. Fullerene derivatives have been utilized as electron acceptors and electron-transport materials in OPVs and PSCs. However, the use of fullerene derivatives requires attention to their isomers if they are multiadducts or even monoadducts produced from fullerenes with low symmetry. Their nonuniform structures and electronic properties may exert a negative effect on photovoltaic properties. However, most researchers in the field of OPVs and PSCs have been unaware of the importance of the isomerism. Even the most prevalent, high-performance fullerene acceptor, [6,6]-phenyl-C71-butyric acid methyl ester ([70]PCBM), has been used as an isomer mixture. In this Account, we summarize recent studies on the effects of isomer separation of fullerene derivatives on the device performances of OPVs and PSCs. Largely, fullerene derivatives containing various isomers are categorized into [60]fullerene bisadducts, [70]fullerene bisadducts, and [70]fullerene monoadducts. In all cases, the difference in isomerism was found to have a large impact on PCEs. The miscibility with polymer donors and film-forming property of fullerene derivatives were affected by the isomer separations, which exert the most potent influence on device performances. Although the disorders in energy levels among isomers are not definitely influencing on photovoltaic properties of isomer mixtures, the molecular packing structures of fullerene derivatives make a significant effect on their photovoltaic properties. Notably, isomerically pure fullerene derivatives often-but not always-exhibit higher PCEs than the isomer mixture. The search for the best isomers of fullerene derivatives and their optimal compositional ratios, which extensively depend on their roles and the combined materials, will be an indispensable step to achieving consistently higher device performances for OPVs and PSCs.
  • Tomokazu Umeyama, Takuma Hanaoka, Hiroki Yamada, Yuki Namura, Satoshi Mizuno, Tomoya Ohara, Jinseok Baek, JaeHong Park, Yuta Takano, Kati Stranius, Nikolai V. Tkachenko, Hiroshi Imahori
    CHEMICAL SCIENCE, 10(27) 6642-6650, Jul, 2019  Peer-reviewed
    As structure defined cutouts of the graphene lattice, nanographene molecules have gained plenty of attention because of their high potential for versatile applications in organic electronics and energy conversion devices and as ideal model systems for the better understanding of intrinsic structure-property correlations of graphenes. In this study, well-defined nanographenes with sp2 carbon networks of different sizes, hexa-peri-hexabenzocoronene (HBC) and its rectangularly π-extended version, a short graphene nanoribbon (GNR), have been covalently functionalized with photoactive porphyrin molecules. On the basis of their spectroscopic studies, the photodynamics of the porphyrin-linked nanographenes was found to be influenced substantially by the size of the nanographenes. Photoexcitation of the porphyrin-HBC linked system led to exclusive energy transfer (EnT) from the first singlet excited state (S1) of the nanographene to the porphyrin, whereas opposite selective EnT occurred from the first and second singlet excited states (S1 and S2) of the porphyrin to the nanographene in the porphyrin-GNR linked system. In particular, ultrafast efficient EnTs from both the S2 and S1 states of the porphyrin to GNR mimic the corresponding ultrafast EnTs from the S2 and S1 states of carotenoids to chlorophylls in light-harvesting systems of natural photosynthesis. Such unique photophysical properties will be useful for the rational design of carbon-based photofunctional nanomaterials for optoelectronics and solar energy conversion devices.
  • Xin-Gui Li, Ge Song, Mei-Rong Huang, Tomoya Ohara, Hiroki Yamada, Tomokazu Umeyama, Tomohiro Higashino, Hiroshi Imahori
    JOURNAL OF CLEANER PRODUCTION, 206 483-497, Jan, 2019  Peer-reviewed
  • Hiroyuki Kanda, Naoyuki Shibayama, Abdullah Uzum, Tomokazu Umeyama, Hiroshi Imahori, Koji Ibi, Seigo Ito
    ACS APPLIED MATERIALS & INTERFACES, 10(41) 35016-35024, Oct, 2018  Peer-reviewed
  • Tomokazu Umeyama, Hiroshi Imahori
    NANOSCALE HORIZONS, 3(4) 352-366, Jul, 2018  Peer-reviewed
    In the past few decades, research on the construction of donor-bridge-acceptor linked systems capable of efficient photoinduced charge separation has fundamentally contributed to the fields of artificial photosynthesis and solar energy conversion. Specifically, the above systems are often fabricated by using carbon-based nanomaterials such as fullerenes, carbon nanotubes, and graphenes, offering limitless possibilities of tuning their optical and electronic properties. Accordingly, since understanding the structure-photodynamics relationships of π-aromatic donor-bridge-nanocarbon linked systems is crucial for extracting the full potential of nanocarbon materials, this review summarizes recent research on their photophysical properties featuring nanocarbon materials as electron acceptors. In particular, we highlight the electronic coupling effects on the photodynamics of donor-bridge-nanocarbon acceptor linked systems, together with the effects of donor dimerization. On a basis of their time-resolved spectroscopic data, the photodynamics of donor-bridge-nanocarbon acceptor linked systems is shown to be substantially influenced by the formation and decay of an exciplex state, i.e., an excited-state consisting of a π-molecular donor and a nanocarbon acceptor with partial charge-transfer character. Such basic information is essential for realizing future application of carbon-based nanomaterials in optoelectronic and energy conversion devices.
  • Koji Miki, Kenzo Saiki, Tomokazu Umeyama, Jinseok Baek, Takeru Noda, Hiroshi Imahori, Yuta Sato, Kazu Suenaga, Kouichi Ohe
    Small, 14(26) 1800720, Jun 27, 2018  Peer-reviewed
  • Hiroyuki Kanda, Naoyuki Shibayama, Abdullah Uzum, Tomokazu Umeyama, Hiroshi Imahori, Yu-Hsien Chiang, Peter Chen, Mohammad Khaja Nazeeruddin, Seigo Ito
    Materials Today Energy, 7 190-198, Mar 1, 2018  Peer-reviewed
  • Jinseok Baek, Tomokazu Umeyama, Wookjin Choi, Yusuke Tsutsui, Hiroki Yamada, Shu Seki, Hiroshi Imahori
    Chemistry - A European Journal, 24(7) 1561-1572, Feb 1, 2018  Peer-reviewed
  • Tomokazu Umeyama, Kensho Igarashi, Daisuke Sakamaki, Shu Seki, Hiroshi Imahori
    Chemical Communications, 54(4) 405-408, 2018  Peer-reviewed
  • Tomokazu Umeyama, Shogo Takahara, Sho Shibata, Kensho Igarashi, Tomohiro Higashino, Kenji Mishima, Koichi Yamashita, Hiroshi Imahori
    RSC Advances, 8(33) 18316-18326, 2018  Peer-reviewed
  • Tomokazu Umeyama, Hiroshi Imahori
    DALTON TRANSACTIONS, 46(45) 15615-15627, Dec, 2017  Peer-reviewed
  • Hironobu Hayashi, Wataru Nihashi, Tomokazu Umeyama, Yoshihiro Matano, Shu Seki, Yo Shimizu, Hiroshi Imahori
    JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 139(39) 13957-13957, Oct, 2017  Peer-reviewed
  • Hironobu Hayashi, Wataru Nihashi, Tomokazu Umeyama, Yoshihiro Matano, Shu Seki, Yo Shimizu, Hiroshi Imahori
    Journal of the American Chemical Society, 133(28) 10736-10739, Jul 20, 2017  Peer-reviewed
  • Tomokazu Umeyama, Sho Shibata, Kensho Igarashi, Shogo Takahara, Tomohiro Higashino, Shu Seki, Hiroshi Imahori
    CHEMISTRY LETTERS, 46(7) 1001-1003, Jul, 2017  Peer-reviewed
  • Jinseok Baek, Tomokazu Umeyama, Kati Stranius, Hiroki Yamada, Nikolai V. Tkachenko, Hiroshi Imahori
    JOURNAL OF PHYSICAL CHEMISTRY C, 121(25) 13952-13961, Jun, 2017  Peer-reviewed
  • Tomokazu Umeyama, Tetsushi Miyata, Andreas C. Jakowetz, Sho Shibata, Kei Kurotobi, Tomohiro Higashino, Tomoyuki Koganezawa, Masahiko Tsujimoto, Simon Gelinas, Wakana Matsuda, Shu Seki, Richard H. Friend, Hiroshi Imahori
    CHEMICAL SCIENCE, 8(1) 181-188, Jan, 2017  Peer-reviewed
  • Tomokazu Umeyama, Daichi Matano, Sho Shibata, Jinseok Baek, Seigo Ito, Hiroshi Imahori
    ECS JOURNAL OF SOLID STATE SCIENCE AND TECHNOLOGY, 6(6) M3078-M3083, 2017  Peer-reviewed
  • Tomokazu Umeyama, Sho Shibata, Tetsushi Miyata, Kensho Igarashi, Tomoyuki Koganezawa, Hiroshi Imahori
    RSC ADVANCES, 7(72) 45697-45704, 2017  Peer-reviewed
  • Tomokazu Umeyama, Jinseok Baek, Junya Mihara, Nikolai V. Tkachenko, Hiroshi Imahori
    CHEMICAL COMMUNICATIONS, 53(6) 1025-1028, Jan, 2017  Peer-reviewed
  • Jinseok Baek, Tomokazu Umeyama, Satoshi Mizuno, Nikolai V. Tkachenko, Hiroshi Imahori
    Journal of Physical Chemistry C, 121(39) 13285-13293, 2017  Peer-reviewed
  • Ajay Kumar Baranwal, Hideaki Masutani, Hidetaka Sugita, Hiroyuki Kanda, Shusaku Kanaya, Naoyuki Shibayama, Yoshitaka Sanehira, Masashi Ikegami, Youhei Numata, Kouji Yamada, Tsutomu Miyasaka, Tomokazu Umeyama, Hiroshi Imahori, Seigo Ito
    Nano Convergence, 4(26) 1-14-26, 2017  Peer-reviewed
    Research of CH3NH3PbI3 perovskite solar cells had significant attention as the candidate of new future energy. Due to the toxicity, however, lead (Pb) free photon harvesting layer should be discovered to replace the present CH3NH3PbI3 perovskite. In place of lead, we have tried antimony (Sb) and bismuth (Bi) with organic and metal monovalent cations (CH3NH3+, Ag+ and Cu+). Therefore, in this work, lead-free photo-absorber layers of (CH3NH3)3Bi2I9, (CH3NH3)3Sb2I9, (CH3NH3)3SbBiI9, Ag3BiI6, Ag3BiI3(SCN)3 and Cu3BiI6 were processed by solution deposition way to be solar cells. About the structure of solar cells, we have compared the normal (n-i-p: TiO2-perovskite-spiro OMeTAD) and inverted (p-i-n: NiO-perovskite-PCBM) structures. The normal (n-i-p)-structured solar cells performed better conversion efficiencies, basically. But, these environmental friendly photon absorber layers showed the uneven surface morphology with a particular grow pattern depend on the substrate (TiO2 or NiO). We have considered that the unevenness of surface morphology can deteriorate the photovoltaic performance and can hinder future prospect of these lead-free photon harvesting layers. However, we found new interesting finding about the progress of devices by the interface of NiO/Sb3+ and TiO2/Cu3BiI6, which should be addressed in the future study.
  • Hiroyuki Kanda, Abdullah Uzum, Hitoshi Nishino, Tomokazu Umeyama, Hiroshi Imahori, Yasuaki Ishikawa, Yukiharu Uraoka, Seigo Ito
    ACS APPLIED MATERIALS & INTERFACES, 8(49) 33553-33561, Dec, 2016  Peer-reviewed
  • Tomokazu Umeyama, Takuma Hanaoka, Jinseok Baek, Tomohiro Higashino, Fawzi Abou-Chahine, Nikolai V. Tkachenko, Hiroshi Imahori
    JOURNAL OF PHYSICAL CHEMISTRY C, 120(49) 28337-28344, Dec, 2016  Peer-reviewed
  • Hiroyuki Kanda, Abdullah Uzum, Ajay K. Baranwal, T. A. Nimial Peiris, Tomokazu Umeyama, Hiroshi Imahori, Hiroshi Segawa, Tsutomu Miyasaka, Seigo Ito
    JOURNAL OF PHYSICAL CHEMISTRY C, 120(50) 28441-28447, Dec, 2016  Peer-reviewed
  • Taku Miura, Ran Tao, Sho Shibata, Tomokazu Umeyama, Takashi Tachikawa, Hiroshi Imahori, Yasuhiro Kobori
    JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 138(18) 5879-5885, May, 2016  Peer-reviewed

Misc.

 219

Books and Other Publications

 8

Presentations

 33

Teaching Experience

 13

Professional Memberships

 4

Research Projects

 21

Industrial Property Rights

 3