Publications since 2015
- Chem. Eur. J. 2023, 29, e202203608. Selected as an Inside Cover.
- Eur. J. Org. Chem. 2022, 2022, e202201207.
- Chem. Eur. J. 2022, 28, e202202018.
- Beilstein J. Org. Chem. 2022, 18, 1100–1106. Highlighted as a Front Cover.
- Chem. Eur. J. 2022, 28, e202201560. Selected as a Hot Paper and Highlighted as a Front Cover.
- Powder Technol. 2022, 405, 117514.
- Fuel 2022, 321, 124110.
- J. Environ. Chem. Eng. 2022, 10, 107490.
- Ind. Eng. Chem. Res. 2022, 61, 3358–3364.
- ACS Sustain. Chem. Eng. 2021, 9, 15315–15321. Highlighted as a supplementary Cover.
- Powder Technol. 2021, 395, 663–668.
- ChemistrySelect 2021, 6, 2923–2927.
- ACS Sustain. Chem. Eng. 2021, 9, 3727–3734. Highlighted as a supplementary Cover.
- Ind. Eng. Chem. Res. 2021, 60, 1067–1070.
- Adv. Powder Technol. 2021, 32, 283–289.
- ACS Sustain. Chem. Eng. 2020, 51, 18864–18868. Highlighted as a supplementary Cover.
- J. Electrochem. Soc. 2020, 167, 155529.
- J. Electrochem. Soc. 2020, 167, 155518.
- Ind. Eng. Chem. Res. 2020, 59, 16185–16190. Highlighted as a Supplementary Cover.
- Powder Technol. 2020, 374, 492–495.
- Energy Fuels 2020, 34, 6338–6345.
- J. Org. Chem. 2020, 85, 6551–6566. Highlighted as a Supplementary Cover.
- Energy Fuels 2020, 34, 3797–3804.
- Anal. Sci. 2019, 35, 995–1001.
- Powder Technol. 2019, 354, 369–376.
- Org. Process Res. Dev. 2019, 23, 2576–2581.
- Org. Lett. 2019, 21, 8519–8522. Highlighted as a Supplementary Cover.
- Energy Fuels 2019, 33, 9363–9366.
- Org. Lett. 2019, 21, 2246–2250.
- Energy Fuels 2018, 32, 13015–13020. Highlighted as a Supplementary Cover.
- ChemistrySelect 2018, 3, 8458–8461.
- Langmuir 2018, 34, 5495–5504.
- J. Org. Chem. 2018, 83, 4948–4962. Selected as a Featured Article.
- Chem. Eur. J. 2018, 24, 1853–1858. Highlighted as a Cover Feature.
- Eur. J. Org. Chem. 2017, 40, 5961–5965. Selected as a Very Important Paper and Highlighted as a Front Cover.
- Powder Technol. 2016, 303, 59–67.
- Soft Matter 2016, 12, 6851–6857.
- Adv. Powder Technol. 2016, 27, 830–838.
- Adv. Powder Technol. 2016, 27, 215–222.
- Aerosol Air Qual. Res. 2016, 16, 36–45.
- Colloids Surf. A Physicochem. Eng. Asp. 2015, 482, 195–202.
- J. Pept. Sci. 2015, 21, 691–695.
- Powder Technol. 2015, 285, 128–137.
- Pharm. Res. 2015, 32, 2086–2096.
2023
Dispersibility of TiO2 Nanoparticles in Less Polar Solvents: Role of Ligand Tail Structures.
Sudo, T.; Yamashita, S.; Koike, N.; Kamiya, H.; Okada, Y.*

2022
Photochemical Radical Cation Cycloadditions of Aryl Vinyl Ethers.
Adachi, S.; Horiguchi, G.; Kamiya, H.; Okada, Y.*

Design of a Photocatalytic [2 + 2] Cycloaddition Reaction Using Redox-Tag Strategy.
Hashimoto, Y.; Horiguchi, G.; Kamiya, H.; Okada, Y.*


Radical cation Diels–Alder reactions of arylidene cycloalkanes
Nakayama, K.; Kamiya, H.; Okada, Y.*


Colloidal Stability of TiO2 Nanoparticles: The Roles of Phosphonate Ligand Length and Solution Temperature
Yamashita, S.; Sudo, T.; Kamiya, H.; Okada, Y.*

Particle adhesion induced by calcium carbonate nanoparticles at 900 °C
Horiguchi, G.; Fujimoto, T.; Yoshinaga, K.; Okada, Y.*; Kamiya H.

Controlling Particle Adhesion in High Temperature Combustion using Metal Oxide Nanoparticles
Horiguchi, G.; Ito, M.; Ito, A.; Kamiya, H.; Okada, Y.*

Oxidation of benzyl alcohol using linear paired electrolysis
Horiguchi, G.; Kamiya, H.; Chiba, K.; Okada, Y.*

Shear Strength Testing of Synthetic Ash: Role of Surface vs. Interparticle Adhesive Forces
Aoki, N.; Horiguchi, G.; Kamiya, H.; Okada, Y.*

2021

Role of Phosphorus and Iron in Particle Adhesiveness at High Temperatures Using Synthetic Ashes
Horiguchi, G.; Ito, M.; Ito, A.; Kamiya, H.; Okada, Y.*

Porous and Spherical Ethyl Cellulose Fine Particles Produced by Ternary System-based Emulsion Castings
Takezaki, H.; Otsubo, T.; Echigo, Y.; Kamiya, H.; Okada, Y.*

Ligand Exchange Reactions between Phosphonic Acids at TiO2 Nanoparticle Surfaces
Yamashita, S.; Sudo, T.; Kamiya, H.; Okada, Y.*


Mechanistic Determination of the Role of Aluminum in Particle Adhesiveness at High Temperature Induced by Sodium and Potassium with a Synthetic Ash Strategy
Horiguchi, G.; Beppu, Y.; Yoshinaga, K.; Kamiya, H.; Okada, Y.*

Engineering Plastic Fine Particles: Emulsion Castings Enabled by a Ternary System
Takezaki, H.; Asano, I.; Echigo, Y.; Kamiya, H.; Okada, Y.*

Evaluation and Control of the Adhesiveness of Cohesive Calcium Carbonate Particles at High Temperatures
Horiguchi, G.; Kamiya, H.*; García-Triñanes, P.

2020

Direct Measurements of Shear Strengths of Fly Ash Powder Beds
Aoki, N.; Okada, Y.*; Kamiya, H.

Mechanistic Studies on TiO2 Photoelectrochemical Radical Cation [2 + 2] Cycloadditions
Horiguchi, G.; Kamiya, H.; Okada, Y.

EC-Backward-E Electrochemistry in Radical Cation Diels-Alder Reactions
Nakayama, K.; Kamiya, H.; Okada, Y.*


Understanding the Mechanism of Particle Adhesion in High Temperature Combustion Induced by Sodium and Potassium: Use of a Synthetic Ash Strategy
Horiguchi, G.; Fujii, R.; Beppu, Y.; Kamiya, H.; Okada, Y.*

Controlling fly ash adhesion at high temperatures via porosity effect
Ito, M.; Horiguchi, G.; Hariu, T.; Ito, A.; Kamiya, H.; Okada, Y.*

Direct Measurement of Single-Particle Adhesion Behaviors on Metal Surfaces at High Temperatures Using Model and Modified Pulverized Coal Combustion Ash
Gao, J.; Aozawa, T.; Tsukada, M.; Matsuda, H.; Mikino, H.; Kamiya, H.*
Radical-Cation Vinylcyclopropane Rearrangements by TiO2 Photocatalysis
Maeta, N; Kamiya, H; Okada, Y.*

Modification of phosphorus-rich sewage sludge combustion ash using pure source materials for analysis of ash adhesion behavior at high temperature
Gao, J.; Kamiya, H.*
2019
Sulfur-free Surfactant for Carbide Nanoparticle Characterization in Steel Using Asymmetric Flow Field-Flow Fractionation Hyphenated Inductively Coupled Plasma-Mass Spectrometry
Itabashi, D.; Mizukami, K.; Taniguchi, S; Nishifuji, M.; Kamiya, H.*
Alumina particle surface interaction in copolymer of isobutylene and maleic anhydride aqueous solution characterized by colloidal probe atomic force microscopy
Yamamoto, M.; Shimai, S.; Oguma, K; Wang, S.; Kamiya, H.*
Improved Tag-Assisted Liquid-Phase Peptide Synthesis: Application to the Synthesis of Bradykinin Receptor-Antagonist Icatibant Acetate
Okada, Y.; Takasawa, R.; Kubo, D.; Iwanaga, N.; Fujita, S.; Suzuki, K.; Suzuki, H.; Kamiya, H.; Chiba, K.*

Probing Intramolecular Electron Transfer in Redox Tag Processes
Maeta, N.; Kamiya, H.; Okada, Y.*

Toward Stable Operation of Sewage Sludge Incineration Plants: The Use of Alumina Nanoparticles to Suppress Adhesion of Fly Ash
Gao, J.; Matsushita, M.; Horiguchi, G.; Fujii, R.; Tsukada, M.; Okada, Y.; Kamiya, H.*

Radical Cation Diels-Alder Reactions by TiO2 Photocatalysis
Nakayama, K.; Maeta, N.; Horiguchi, G.; Kamiya, H.; Okada, Y.*

2018

Toward Stable Operation of Coal Combustion Plants: The Use of Alumina Nanoparticles To Prevent Adhesion of Fly Ash
Horiguchi, G.; Fujii, R.; Yamauchi, Y.; Okabe, H.; Tsukada, M.; Okada, Y.; Kamiya, H.*
Direct Ordering of Anchoring Events at the Surface of Iron Oxide Nanoparticles Enabled by A Stepwise Phase-Transfer Strategy
Okada, Y.*; Asama, H.; Koike, N.; Yamashita, S.; Maeta, N.; Uesaka, A.; Kamiya, H.

Direct Monitoring of Molecular Events at the Surface: One-Step Access to Flexibly Stable Colloidal Ag Nanoparticles
Maeta, N.; Kamiya, H.; Okada, Y.*

TiO2 Photocatalysis in Aromatic “Redox Tag”-Guided Intermolecular Formal [2 + 2] Cycloadditions
Okada, Y.*; Maeta, N.; Nakayama, K.; Kamiya, H.


Understanding the Colloidal Stability of Nanoparticle-Ligand Complexes: Design, Synthesis, and Structure-Function Relationship Studies of Amphiphilic Small-Molecule Ligands
Okada, Y.*; Ishikawa, K.; Maeta, N.; Kamiya, H.

2017

Hydrophobic Magnetic Nanoparticle-Assisted One-Pot Liquid Phase Peptide Synthesis
Okada, Y.*; Asama, H.; Wakamatsu, H.; Chiba, K.; Kamiya, H.

2016
Liquid penetration as a simple detection method for structural differences in particulate films prepared from slurries
Miyazaki, H.; Nomura, Y.; Sugai, H.; Iijima, M.; Inasawa, S.*; Kamiya, H.*
Formation kinetics of particulate films in directional drying of a colloidal suspension
Inasawa, S.*; Oshimi, Y.; Kamiya, H.
Effect of surface modification of silica particles on interaction forces and dispersibility in suspension
Mori, T.; Okada, Y.; Kamiya, H.*
Numerical and experimental study of tensile stresses of biomass combustion ash with temperature variation
Shao, Y.; Aoki, N.; Tong, Z.*; Zhong, W.; Yu, A; Kamiya, H.
A Two-Stage Virtual Impactor for In-Stack Sampling of PM2.5 and PM10 in Flue Gas of Stationary Sources
Wada, M.*; Tsukada, M.; Namiki, N.; Szymanski, W, W.; Noda, N.; Makino, H.; Kanaoka, C.; Kamiya, H.
2015
Non-aqueous colloidal processing route for fabrication of highly dispersed aramid nanofibers attached with Ag nanoparticles and their stability in epoxy matrixes
Iijima, M.*; Kamiya, H.
Hydrophobic benzyl amines as supports for liquid-phase C-terminal amidated peptide synthesis: application to the preparation of ABT-510
Matsumoto, E.; Fujita, Y.; Okada, Y.; Kauppinen, E. I.; Kamiya, H.; Chiba, K.*
Computational fluid dynamics (CFD) investigation of the gas–solid flow and performance of Andersen cascadeimpactor
Flynnz, S.J.; Tong, Z.*; Yang, R.; Kamiya, H.; Yu, A.; Chan, H. K.
Multi-Scale Modelling of Powder Dispersion in a Carrier-Based Inhalation System
Tong, Z.; Kamiya, H.: Yu, A.; Chan, H. K.; Yang, R.*