World's Best Scientists 2026 revealed!

D-Index & Metrics

Materials Science

D-Index
46
Citations
9534
World Ranking
11359
National Ranking
2668

Overview

Dean-Mo Liu is affiliated with ITRI International in the United States. Their academic contributions and research activities are linked to this institution, reflecting a professional engagement within the scientific community there.

Available data does not specify particular research fields, subfields, or main topics of study associated with Dean-Mo Liu. There is no recorded information on recent papers, co-authors, or frequent publication venues tied to their work at this time.

No book publications or awards have been documented for Dean-Mo Liu in the available data. Additionally, there is no indication regarding any notable recognition or honors received throughout their career.

With limited publicly accessible bibliographic or citation records, Dean-Mo Liu's specific research focus and scholarly contributions remain broadly undefined based on the current dataset.

Best Publications

  • Water-based sol–gel synthesis of hydroxyapatite: process development

    Dean-Mo Liu;T Troczynski;Wenjea J Tseng

  • Sol-gel hydroxyapatite coatings on stainless steel substrates.

    Dean-Mo Liu;Quanzu Yang;Tom Troczynski

  • Influence of porosity and pore size on the compressive strength of porous hydroxyapatite ceramic

    Dean-Mo Liu

  • Magnetic-sensitive behavior of intelligent ferrogels for controlled release of drug.

    Ting Yu Liu;Shang Hsiu Hu;Tse Ying Liu;Dean-Mo LIu

  • Structural evolution of sol-gel-derived hydroxyapatite.

    Dean-Mo Liu;Quanzu Yang;Tom Troczynski;Wenjea J. Tseng;Wenjea J. Tseng

  • Controlled Rupture of Magnetic Polyelectrolyte Microcapsules for Drug Delivery

    Shang Hsiu Hu;Chia Hui Tsai;Chen Fu Liao;Dean-Mo LIu

  • Biomedical nanoparticle carriers with combined thermal and magnetic responses

    Ting-Yu Liu;Ting-Yu Liu;Shang-Hsiu Hu;Dean-Mo Liu;San-Yuan Chen

  • Structural evolution and optical properties of TiO2 thin films prepared by thermal oxidation of sputtered Ti films

    Chu-Chi Ting;San-Yuan Chen;Dean-Mo Liu

  • Particle packing and rheological property of highly-concentrated ceramic suspensions: φm determination and viscosity prediction

    Dean-Mo Liu

  • Drug release behavior of chitosan-montmorillonite nanocomposite hydrogels following electrostimulation.

    Kun Ho Liu;Ting Yu Liu;San-Yuan Chen;Dean-Mo LIu

  • Study on controlled drug permeation of magnetic-sensitive ferrogels: effect of Fe3O4 and PVA.

    Ting Yu Liu;Shang Hsiu Hu;Kun Ho Liu;Dean-Mo LIu

  • On the study of BSA-loaded calcium-deficient hydroxyapatite nano-carriers for controlled drug delivery

    Tse Ying Liu;San-Yuan Chen;Dean-Mo LIu;Sz Chian Liou

  • Magnetic-sensitive silica nanospheres for controlled drug release.

    Shang Hsiu Hu;Ting Yu Liu;Hsin Yang Huang;Dean-Mo LIu

  • Core-shell CuInS2/ZnS quantum dots assembled on short ZnO nanowires with enhanced photo-conversion efficiency

    Kuan Ting Kuo;Dean-Mo LIu;San-Yuan Chen;Chin Ching Lin

  • Synthesis and Characterization of Amphiphatic Carboxymethyl-hexanoyl Chitosan Hydrogel: Water-Retention Ability and Drug Encapsulation

    Tse Ying Liu;San-Yuan Chen;Yi Ling Lin;Dean-Mo LIu

  • Controlled pulsatile drug release from a ferrogel by a high-frequency magnetic field

    Shang Hsiu Hu;Ting Yu Liu;Dean-Mo LIu;San-Yuan Chen

  • Preparation and characterization of smart magnetic hydrogels and its use for drug release

    Ting Yu Liu;Shang Hsiu Hu;Kun Ho Liu;Dean-Mo LIu

  • Core/single-crystal-shell nanospheres for controlled drug release via a magnetically triggered rupturing mechanism

    Shang-Hsiu Hu;San-Yuan Chen;Dean-Mo Liu;Chi-Sheng Hsiao

  • In-Situ Growing CdS Single-Crystal Nanorods via P3HT Polymer as a Soft Template for Enhancing Photovoltaic Performance

    Hung Chou Liao;San-Yuan Chen;Dean-Mo LIu

  • Nano-ferrosponges for controlled drug release

    Shang Hsiu Hu;Ting Yu Liu;Dean-Mo LIu;San-Yuan Chen

  • Temperature-Sensitive Nanocapsules for Controlled Drug Release Caused by Magnetically Triggered Structural Disruption

    Ting-Yu Liu;Ting-Yu Liu;Kun-Ho Liu;Dean-Mo Liu;San-Yuan Chen

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