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Fingerprint Dive into the research topics where Ryo Kishida is active. These topic labels come from the works of this person. Together they form a unique fingerprint.

  • 4 Similar Profiles
quinones Physics & Astronomy
thiols Physics & Astronomy
Cyclization Chemical Compounds
Apatite Engineering & Materials Science
density functional theory Physics & Astronomy
Honeycomb structures Chemical Compounds
Carbonates Engineering & Materials Science
Bone Chemical Compounds

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Research Output 2014 2019

  • 25 Citations
  • 4 h-Index
  • 9 Article
  • 1 Conference contribution

Carbonate Apatite Micro-Honeycombed Blocks Generate Bone Marrow-Like Tissues as well as Bone

Hayashi, K., Kishida, R., Tsuchiya, A. & Ishikawa, K., Jan 1 2019, (Accepted/In press) In : Advanced Biosystems. 1900140.

Research output: Contribution to journalArticle

Cytology
Honeycomb structures
Apatites
Tissue regeneration
Microporosity

Surface compositions of Pt–Pd=Pd(111) alloys in the presence of O and OH during oxygen reduction reaction: A first-principles study

Chantaramolee, B., Aspera, S. M., Arevalo, R. L., Arguelles, E. F., Kishida, R., Padama, A. A. B., Kasai, H. & Nakanishi, H., Jan 1 2019, In : journal of the physical society of japan. 88, 4, 044802.

Research output: Contribution to journalArticle

oxygen
surface stability
electrodes
selectivity
density functional theory

Vertical bone augmentation using carbonate apatite bone substitute

Ishikawa, K., Hayashi, K., Tsuchiya, A. & Kishida, R., Jan 1 2019, Society for Biomaterials Annual Meeting and Exposition 2019: The Pinnacle of Biomaterials Innovation and Excellence - Transactions of the 42nd Annual Meeting. Society for Biomaterials, 1 p. (Transactions of the Annual Meeting of the Society for Biomaterials and the Annual International Biomaterials Symposium; vol. 40).

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Bone Substitutes
Apatite
Carbonates
Bone
Bone and Bones
dopamine
quinones
protons
density functional theory
melanin
3 Citations (Scopus)

Branching Reaction in Melanogenesis: The Effect of Intramolecular Cyclization on Thiol Binding

Kishida, R., Kasai, H., Aspera, S. M., Arevalo, R. L. & Nakanishi, H., Jun 1 2017, In : Journal of Electronic Materials. 46, 6, p. 3784-3788 5 p.

Research output: Contribution to journalArticle

Cyclization
Sulfhydryl Compounds
thiols
Molecular orbitals
Electronic structure