Jee-Yee Chen
Materials Science · The Ohio State University
Publications
14
Citations
158
Est. group size
~2
Recurring co-author estimate
Active years
9
Publishing since 2017
Jee-Yee Chen's research focuses on catalytic materials, particularly mesoporous aminosilica catalysts used for reactions like the aldol condensation and nitroaldol reaction, which are relevant to converting biomass into fuels. Earlier work also explored nanostructured metal materials (such as PtSn, Pd2Ge, and nickel germanide) for applications in fuel cells, hydrogen production, and lithium-ion battery electrodes. This work sits within materials chemistry and catalysis, combining materials synthesis with mechanistic studies of catalytic active sites.
Publication output has been modest and somewhat variable over the last decade, with small peaks (e.g., 2022) and gaps (e.g., 2020), averaging about 1-2 papers per year in recent years.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Investigating Cooperative Interactions for the Nitroaldol Reaction and Condensation: Clarifying the Impact of Microporosity and Particle Size on Catalytic Activity of Mesoporous Aminosilica Materials
SSRN Electronic Journal · 2025
- Investigating cooperative interactions for the nitroaldol reaction and condensation: Clarifying the impact of microporosity and pore size on catalytic activity of mesoporous aminosilica materials
Microporous and Mesoporous Materials · 2025
- Evolution of the different types of catalytic sites in aminosilica materials during recycle experiments in aldol chemistry
Journal of Catalysis · 2024
- Evolution of the Different Types of Catalytic Sites in Aminosilica Materials During Recycle Experiments in Aldol Chemistry
SSRN Electronic Journal · 2023
- Quantifying the fraction and activity of catalytic sites at different surface densities of aminosilanes in SBA-15 for the aldol reaction and condensation
Journal of Catalysis · 2022
- Evaluating the per site activity of common mesoporous materials as supports for aminosilica catalysts for the aldol reaction and condensation
Applied Catalysis A General · 2022
- Investigating the Impact of Microporosity of Aminosilica Catalysts in Aldol Condensation Reactions for Biomass Upgrading of 5-Hydroxymethylfurfural and Furfuraldehyde to Fuels
Energy & Fuels · 2021
- Sub-1 nm PtSn ultrathin sheet as an extraordinary electrocatalyst for methanol and ethanol oxidation reactions
Journal of Colloid and Interface Science · 2019
- Morphology controlled synthesis of Pd2Ge nanostructures and their shape-dependent catalytic properties for hydrogen evolution reaction
International Journal of Hydrogen Energy · 2019
- Solution-liquid-solid growth of CuInTe2 nanowires as lithium-ion battery anodes
Materials & Design · 2018
- Synthesis of nickel germanide (Ge <sub>12</sub> Ni <sub>19</sub> ) nanoparticles for durable hydrogen evolution reaction in acid solutions
Nanoscale · 2018
- Zinc diphosphide nanowires: bismuth nanocrystal-seeded growth and their use as high-capacity lithium ion battery anodes
CrystEngComm · 2017
- 亜鉛二りん化ナノワイヤ:ビスマスナノ結晶の種結晶成長とその利用高容量リチウムイオン電池アノードとして【Powered by NICT】
CrystEngComm · 2017
- Journal of Catalysis×3
- CrystEngComm×2
- SSRN Electronic Journal×2
- Journal of Colloid and Interface Science×1
- Energy & Fuels×1
- Nitish Deshpande
Materials Science · The Ohio State University
- Nicholas A. Brunelli
Materials Science · The Ohio State University
- Xiaoyuan Yang
Materials Science · The Ohio State University
- Songhyun Lee
Chemistry · Purdue University West Lafayette
- Prabir K. Dutta
Chemistry · The Ohio State University
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 19, 2026.
Claim or correct this profile