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Dive into the research topics where Kuen-Song Lin is active.

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Featured researches published by Kuen-Song Lin.


International Journal of Molecular Sciences | 2010

Synthesis, Characterization, and Application of 1-D Cerium Oxide Nanomaterials: A Review

Kuen-Song Lin; Sujan Chowdhury

The present work provides a comprehensive overview of the recent progress of research work toward developing new one dimensional (1-D) ceria (CeO2) nanomaterials. The review has been classified into three parts: the preparation procedures with identification of the existing different dimensional ceria nanomaterials, the formation mechanisms, and an analysis of their applications. From literature survey, it is inaugurated that the fundamental structures of the ceria nanomaterials constructively dominate their properties and applications. In addition, this work will also provide a perspective on the future technical trends for the development of different dimensional CeO2 nanomaterials.


Molecules | 2011

Hydrogen Generation Using a CuO/ZnO-ZrO2 Nanocatalyst for Autothermal Reforming of Methanol in a Microchannel Reactor

Kuen-Song Lin; Cheng-Yu Pan; Sujan Chowdhury; Mu-Ting Tu; Wan-Ting Hong; Chuin-Tih Yeh

In the present work, a microchannel reactor for autothermal reforming of methanol using a synthesized catalyst porous alumina support-CuO/ZnO mixed with ZrO2 sol washcoat has been developed and its fine structure and inner surface characterized. Experimentally, CuO/ZnO and alumina support with ZrO2 sol washcoat catalyst (catalyst slurries) nanoparticles is the catalytically active component of the microreactor. Catalyst slurries have been dried at 298 K for 5 h and then calcined at 623 K for 2 h to increase the surface area and specific pore structures of the washcoat catalyst. The surface area of BET N2 adsorption isotherms for the as-synthesized catalyst and catalyst/ZrO2 sol washcoat samples are 62 and 108 ± 2 m2g−1, respectively. The intensities of Cu content from XRD and XPS data indicate that Al2O3 with Cu species to form CuAl2O4. The EXAFS data reveals that the Cu species in washcoat samples have Cu-O bonding with a bond distance of 1.88 ± 0.02 Å and the coordination number is 3.46 ± 0.05, respectively. Moreover, a hydrogen production rate of 2.16 L h−1 is obtained and the corresponding methanol conversion is 98% at 543 K using the CuO/ZnO with ZrO2 sol washcoat catalyst.


International Journal of Hydrogen Energy | 2012

Synthesis and characterization of porous HKUST-1 metal organic frameworks for hydrogen storage

Kuen-Song Lin; Abhijit Krishna Adhikari; Chi-Nan Ku; Chao-Lung Chiang; Hua Kuo


Catalysis Today | 2011

Synthesis and characterization of nickel ferrite nanocatalysts for CO2 decomposition

Kuen-Song Lin; Abhijit Krishna Adhikari; Zong-Yan Tsai; Yu-Pei Chen; Tzu-Ting Chien; Hung-Bin Tsai


Journal of Power Sources | 2010

Catalytic gasification of automotive shredder residues with hydrogen generation

Kuen-Song Lin; Sujan Chowdhury; Ze-Ping Wang


Adsorption-journal of The International Adsorption Society | 2012

Synthesis, characterization, and hydrogen storage study by hydrogen spillover of MIL-101 metal organic frameworks

Kuen-Song Lin; Abhijit Krishna Adhikari; Yu-Hsien Su; Chia-Wei Shu; Ho-Yang Chan


Catalysis Today | 2011

Hydrogen adsorption in metal organic frameworks by hydrogen spillover

Kuen-Song Lin; Abhijit Krishna Adhikari; Kai-Che Chang; Mu-Ting Tu; Wei Lu


Catalysis Today | 2011

Preparation and characterization of CuO/ZnO–Al2O3 catalyst washcoats with CeO2 sols for autothermal reforming of methanol in a microreactor

Kuen-Song Lin; Sujan Chowdhury; Hsiu-Ping Yeh; Wang-Ting Hong; Chuin-Tih Yeh


Thin Solid Films | 2009

Preparation and characterization of aligned iron nanorod using aqueous chemical method

Kuen-Song Lin; Ze-Ping Wang; Sujan Chowdhury; Abhijit Krishna Adhikari


International Journal of Hydrogen Energy | 2017

Preparation and characterization of CuOAl2O3 catalyst for dimethyl ether production via methanol dehydration

Chao-Lung Chiang; Kuen-Song Lin

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Ping-Ju Tsai

University of New South Wales

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S.L.I. Chan

University of New South Wales

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