Issue Date | Title | Author(s) | Relation | scopus | WOS | Fulltext/Archive link |
2023 | Amino group functionalized pitch-based carbocatalyst for the Henry reaction of furfural | Gemechu Dadi Bedasso; Der-Lii M. Tzou ; Po-Wen Chung | Journal of the Taiwan Institute of Chemical Engineers | | | |
2022 | Boosting photocatalytic CO2 reduction in a ZnS/ZnIn2S4 heterostructure through strain-induced direct Z-scheme and a mechanistic study of molecular CO2 interaction thereon | Amr Sabbah; Indrajit Shown; Mohammad Qorbani; Fang-Yu Fu; Tsai-Yu Lin; Heng-Liang Wu; Po-Wen Chung ; Chih-I Wu; Svette Reina Merden Santiago; Ji-Lin Shen; Kuei-Hsien Chen ; Li-Chyong Chen | Nano Energy 93:106809 | | | |
2018 | Carbon-doped SnS2 nanostructure as a high-efficiency solar fuel catalyst under visible light | I. Shown; S. Samireddi; Y.C. Chang; R. Putikam; P.H. Chang; A. Sabbah; F.Y. Fu; W.F. Chen; C.I. Wu; T.Y. Yu; P.W. Chung ; M. C. Lin; L.C. Chen; K.H. Chen | NATURE COMMUNICATIONS 9:169 | | | |
2014 | Catalytic Hydrolysis of Cellulose to Glucose Using Weak-Acid Surface Sites on Postsynthetically Modified Carbon. | Alexandre Charmot; Po-Wen Chung ; Alexander Katz | ACS Sustainable Chemistry & Engineering 2 (12), 2866-2872 | | | |
2018 | Chemical Transformation for 5-Hydroxymethylfurfural Production from Saccharides Using Molten Salt System | Prasenjit Bhaumik; Hao-Ju Chou; Ling-Chieh Lee; Po-Wen Chung | ACS Sustainable Chemistry & Engineering 6(5), 5712-5717 | | | |
2022 | Chromatic Fulleropyrrolidine as Long‐Lived Metal‐Free Catalyst for CO2 Photoreduction Reaction | ShihHao Wang; Rathinam Raja; Chuen-Yo Hsiow; Farheen Khurshid; Hau-Ren Yang; Po-Wen Chung ; Yu-Ying Lai; Ru-Jong Jeng; Leeyih Wang | ChemSusChem 15(5), e202102476 | | | |
2022 | Connecting Molecular and Supramolecular Shapeshifting by the Ostwald’s Nucleation Stages of a Star Giant Molecule | Hong-Yu Hsu; Jou-Tsen Ou; Tsu-Tung Cheng; Heng-Yi Lin; Chan-Yi Lin; Jia Chen; Bin Sun; Po-Wen Chung ; Chien-Lung Wang | Journal of the American Chemical Society 144(21), 9390-9398 | | | |
2023 | Facile synthesis of the atomically dispersed hydrotalcite oxide supported copper catalysts for the selective hydrogenation of 5–hydroxymethylfurfural into 2,5-bis(hydroxymethyl)furan | Raju Kumar; Hsin-Hui Lee; En Chen; Yuan-Peng Du; Chan-Yi Lin; Warot Prasanseang; Thanasak Solos; Kittisak Choojun; Tawan Sooknoi; Rui-Kun Xie; Jyh-Fu Lee; Po-Wen Chung | Applied Catalysis B: Environmental 329, 122547 | | | |
2012 | Glucan Adsorption on Mesoporous Carbon Nanoparticles: Effect of Chain Length and Internal Surface. | Po-Wen Chung ; Alexandre Charmot; Oz M. Gazit; Alexander Katz | LANGMUIR 28, 15222-15232 | | | |
2014 | Hydrolysis Catalysis of Miscanthus Xylan to Xylose Using Weak-Acid Surface Sites. | Po-Wen Chung ; Alexandre Charmot; Olayinka A. Olatunji-Ojo; Kathleen A. Durkin; Alexander Katz | ACS Catalysis 4, 302-310. | | | |
2024 | Hydrolysis of Cellulose using boronic-acid multifunctional carbocatalysts | Gemechu Dadi Bedasso; Chan-Yi Lin; Chia-Hui Wu; Der-Lii M. Tzou ; Po-Wen Chung | Journal of the Taiwan Institute of Chemical Engineers 157, 105435 | | | |
2020 | Hydrophobic Copper Catalysts Derived from Copper Phyllosilicates in the Hydrogenation of Levulinic Acid to γ-Valerolactone | Ya-Ju Tsou; Thien Dien To; Yu-Chia Chiang; Jyh-Fu Lee; Raju Kumar; Po-Wen Chung ; Yu-Chuan Lin | ACS Applied Materials & Interfaces 12(49), 54851-54861 | | | |
2015 | Importance of Internal Porosity for Glucan Adsorption in Mesoporous Carbon Materials. | Po-Wen Chung ; Alexandre Charmot; Timothy Click; Yuchun Lin; YounJue Bae; Jhih-Wei Chu; Alexander Katz | LANGMUIR 31, 7288-7295. | | | |
2019 | KSCN-induced Interfacial Dipole in Black TiO2 for Enhanced Photocatalytic CO2 Reduction | Fu, Fang-Yu; Shown, Indrajit; Li, Chia-Shuo; Raghunath, Putikam; Lin, Tsai-Yu; Billo, Tadesse; Wu, Heng-Liang; Wu, Chih-I; Chung, Po-Wen ; Lin, Ming-Chang; Chen, Li-Chyong; Chen, Kuei-Hsien | ACS Applied Materials & Interfaces 11(28), 25186-25194 | | | |
2015 | Long-Chain Glucan Adsorption and Depolymerization in Zeolite-Templated Carbon. | Po-Wen Chung ; Mizuho Yabushita; Anh The To; YounJue Bae; Joseph Jankolovits; Hirokazu Kobayashi; Atsushi Fukuoka; Alexander Katz | ACS Catalysis 5, 6422-6425 | | | |
2021 | Materials Engineering of Violin Soundboards by Stradivari and Guarneri | Cheng-Kuan Su; Szu-Yu Chen; Jen-Hsuan Chung; Guo-Chian Li; Brigitte Brandmair; Thomas Huthwelker; John L Fulton; Camelia N Borca; Shing-Jong Huang; Joseph Nagyvary; Hsiao-Han Tseng; Chih-Hui Chang; Dai-Ting Chung; Rafael Vescovi; Yi-Shiuan Tsai; Wenjie Cai; Bing-Jyun Lu; Jia-Wei Xu; Chia-Shuo Hsu; Jun-Jie Wu; Hao-Zhi Li; Yu-Kai Jheng; Sheng-Fong Lo; Hao Ming Chen; Yi-Ting Hsieh; Po-Wen Chung ; Chien-Sheng Chen; Yuh-Chang Sun; Jerry Chun Chung Chan; Hwan-Ching Tai | Angewandte Chemie International Edition 60(35), 19144-19154 | | | |
2022 | Metal-free four-in-one modification of g-C3N4 for superior photocatalytic CO2 reduction and H2 evolution | Mahmoud Kamal Hussien; Amr Sabbah; Mohammad Qorbani; Mohamed Hammad Elsayed; Putikam Raghunath; Tsai-Yu Lin; Shaham Quadir; Hong-Yi Wang; Heng-Liang Wu; Der-Lii M Tzou ; Ming-Chang Lin; Po-Wen Chung ; Ho-Hsiu Chou; Li-Chyong Chen; Kuei-Hsien Chen | Chemical Engineering Journal 430(Part 2):132853 | | | |
2022 | Naphthalene Diimide-Based Donor–Acceptor–Donor Small Molecules as Metal-Free Organocatalysts for Photocatalytic CO2 Reaction | Shih-Hao Wang; Pin-Zhen Chen; Yen-Yu Chen; Farheen Khurshid; Cheng-Wei Cai; Yu-Ying Lai; Po-Wen Chung ; Ru-Jong Jeng; Syang-Peng Rwei; Leeyih Wang | ACS APPLIED MATERIALS & INTERFACES 14(38), 43109-43115 | | | |
2022 | Photocatalytic CO2 reduction for C2-C3 oxy-compounds on ZIF-67 derived carbon with TiO2 | Pei-Hsun Sung; Chih-Yang Huang; Chan-Yi Lin; Po-Wen Chung ; Yu-Chung Chang; Li-Chyong Chen; Hsin-Yu Chen; Chien-Neng Liao; Erh-Li Chiu; Cheng-Yu Wang | Journal of CO2 Utilization 58, 101920 | | | |
2023 | Potassium Citrate-Activated Porous Carbon Nanostructures for CO2 Adsorption and Electroreduction | Lee-Lee Chang; Chechia Hu; Chun-Chieh Huang; Chan-Yi Lin; Po-Wen Chung ; Kuo-Lun Tung | ACS Applied Nano Materials 6(10), 8839-8848 | | | |