Tailoring an interface microstructure for high-performance reversible protonic ceramic electrochemical cells via soft lithography
Micropatterning is considered a promising strategy for improving the performance of
electrochemical devices. However, micropatterning on ceramic is limited by its mechanically …
electrochemical devices. However, micropatterning on ceramic is limited by its mechanically …
Fabrication of a micropatterned composite electrode for solid oxide fuel cells via ultraviolet nanoimprint lithography
R Akama, T Okabe, K Sato, Y Inaba… - Microelectronic …, 2020 - Elsevier
A micropatterned object composed of La 0.75 Sr 0.25 Co 0.50 Mn 0.50 O 3/Gadolinium-
doped Ceria (LSCM/GDC) nanocomposite was fabricated for anode of solid oxide fuel cells …
doped Ceria (LSCM/GDC) nanocomposite was fabricated for anode of solid oxide fuel cells …
Replicating biological 3D root and hyphal networks in transparent glass chips
T Koga, S Nakashima, F Tsumori - Scientific Reports, 2024 - nature.com
Replicating the complex 3D microvascular architectures found in biological systems is a
critical challenge in tissue engineering and other fields requiring efficient mass transport …
critical challenge in tissue engineering and other fields requiring efficient mass transport …
Fabrication process for micropatterned ceramics via UV-nanoimprint lithography using UV-curable binder
T Okabe, Y Kim, Z Jiao, N Shikazono… - Japanese Journal of …, 2018 - iopscience.iop.org
Ceramic electrochemical devices, such as solid oxide fuel cell (SOFC), require a high
electrochemical reaction density. UV-nanoimprint lithography (UV-NIL) process comprising …
electrochemical reaction density. UV-nanoimprint lithography (UV-NIL) process comprising …
Combining multi-step imprinting with the in-plane compression method
T Miyata, K Tokumaru, F Tsumori - Japanese journal of applied …, 2020 - iopscience.iop.org
In this study, a micro-patterning process is proposed and developed in order to obtain
various functional properties on the surface of an object. Nano imprint lithography has …
various functional properties on the surface of an object. Nano imprint lithography has …
Study of the antifouling polymer sheet which used biomimetics technique
A Sekiguchi, Y Matsumoto, H Minami… - Journal of …, 2018 - jstage.jst.go.jp
It has long been known that snail shells have an excellent anti-fouling function, as it is said
that there are no dirty snails. The snails encountered during the baiu rainy season in Japan …
that there are no dirty snails. The snails encountered during the baiu rainy season in Japan …
Imprint process with in-plane compression method for bio-functional surface
K Tokumaru, K Yonekura, F Tsumori - Journal of Photopolymer …, 2019 - jstage.jst.go.jp
In this research, we propose an in-plane compression imprint method as a further
development of the special micro patterning method to realize various biomimetic functional …
development of the special micro patterning method to realize various biomimetic functional …
Dimension change during multi-step imprint process and in-plain compression
T Miyata, K Tokumaru, F Tsumori - Journal of Photopolymer Science …, 2020 - jstage.jst.go.jp
In nature, there are living organisms that have functional properties with a special surface
structure. The research has been widely conducted to apply the same functional properties …
structure. The research has been widely conducted to apply the same functional properties …
Submicron imprint patterning of compound sheet with ceramic nanopowder
R Taira, F Tsumori - Japanese journal of applied physics, 2022 - iopscience.iop.org
Nanoimprint lithography is a highly productive process and has an advantage in its
resolution of printed patterns. In this paper, inorganic materials are imprinted using mixtures …
resolution of printed patterns. In this paper, inorganic materials are imprinted using mixtures …
Interfacial pattern changes of imprinted multilayered material in milli-and microscales
K Yonekura, K Tokumaru… - Japanese journal of …, 2018 - iopscience.iop.org
Nanoimprint lithography (NIL) is a technique that transfers a mold pattern of nanometer
order to the surface of a resist material by heating and pressing. NIL is an excellent …
order to the surface of a resist material by heating and pressing. NIL is an excellent …