113 / 2 |
A Photovoltaic-electrolysis System with High Solar-to-Hydrogen Efficiency under Practical Current Densities
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#07.可負擔的潔淨能源 #09.產業創新與基礎設施 #17.夥伴關係
|
2025-06-30 |
112 / 2 |
美國碳中和發展現況
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#07.可負擔的潔淨能源 #09.產業創新與基礎設施 #11.永續城市與社區 #12.負責任的消費與生產 #13.氣候行動 #16.和平正義與有力的制度 #17.夥伴關係
|
2025-05-27 |
106 / 1 |
Direct Synthesis of Formic Acid via CO2 Hydrogenation over Cu/ZnO/Al2O3 Catalyst
|
#07.可負擔的潔淨能源 #09.產業創新與基礎設施 #13.氣候行動
|
2025-07-06 |
105 / 1 |
Enhancement of DME Formation from Methanol Dehydration by Doping CuO–ZnO–Al2O3 into H-form Zeolites
|
#07.可負擔的潔淨能源 #09.產業創新與基礎設施 #13.氣候行動
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2025-07-05 |
104 / 2 |
利用高效率新穎觸媒催化二氧化碳生成甲醇, 二甲醚及碳酸二甲酯之技術研發與應用
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#07.可負擔的潔淨能源 #09.產業創新與基礎設施 #13.氣候行動
|
2025-07-05 |
105 / 2 |
Preparation and Characterization of Ni5Ga3 for Methanol Formation via CO2 Hydrogenation
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#07.可負擔的潔淨能源 #09.產業創新與基礎設施 #13.氣候行動
|
2025-07-05 |
105 / 2 |
Preparation and Characterization of CuO-Al2O3 Catalyst for Dimethyl Ether Production via Methanol Dehydration
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#07.可負擔的潔淨能源 #09.產業創新與基礎設施 #13.氣候行動
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2025-07-05 |
110 / 2 |
同步輻射光譜分析應用於綠色能源材料之開發
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#07.可負擔的潔淨能源 #09.產業創新與基礎設施
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2025-06-02 |
108 / 2 |
Enhancement of Biodiesel Production via Sequential Esterification/Transesterification over Solid Superacidic and Superbasic Catalysts
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#07.可負擔的潔淨能源 #09.產業創新與基礎設施 #12.負責任的消費與生產 #17.夥伴關係
|
2025-07-06 |
107 / 1 |
Acid-Catalyzed Synthesis and CO2 Adsorption of Cu and Cu-Zn Bimetallic Imidazolate Frameworks
|
#11.永續城市與社區 #13.氣候行動
|
2025-07-05 |
106 / 1 |
Synthesis and Characterization of H3PW12O40/Ce0.1Ti0.9O2 for Dimethyl Carbonate Formation via Methanol Carbonation
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#07.可負擔的潔淨能源 #09.產業創新與基礎設施 #13.氣候行動
|
2025-07-06 |
106 / 1 |
Synthesis and Characterization of Magnetic Zinc and Manganese Ferrite Catalysts for Decomposition of Carbon Dioxide into Methane
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#07.可負擔的潔淨能源 #09.產業創新與基礎設施 #11.永續城市與社區 #12.負責任的消費與生產 #13.氣候行動
|
2025-07-06 |
106 / 1 |
Conversion of hydrogen/carbon dioxide into formic acid and methanol over Cu/CuCr2O4 catalyst
|
#07.可負擔的潔淨能源 #09.產業創新與基礎設施 #13.氣候行動
|
2025-06-03 |
106 / 2 |
Preparation and Characterization of H3PW12O40/ZrO2 Catalyst for Carbonation of Methanol into Dimethyl Carbonate
|
#07.可負擔的潔淨能源 #09.產業創新與基礎設施 #13.氣候行動
|
2025-07-06 |
100 / 2 |
Structural Characterization of Chromium Atoms in MIL-101 Metal Organic Frameworks using XANES/EXAFS Spectroscopy
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#13.氣候行動
|
2025-06-30 |
101 / 1 |
Synthesis and Characterization of Porous HKUST-1 Metal Organic Frameworks for Hydrogen Storage
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#07.可負擔的潔淨能源 #09.產業創新與基礎設施
|
2025-06-30 |
101 / 2 |
Preparation, Characterization, and Hydrogen Storage Capacity of MIL-53 Metal-Organic Frameworks
|
#07.可負擔的潔淨能源 #09.產業創新與基礎設施
|
2025-07-01 |
102 / 2 |
Synthesis, Characterization, and Hydrogen Storage Enhancement of M2(BDC)2dabco with Palladium-Doped Activated Carbon
|
#07.可負擔的潔淨能源 #09.產業創新與基礎設施
|
2025-07-01 |
103 / 2 |
ZnO Nanoparticles Affect Bacillus Subtilis Cell Growth and Biofilm Formation
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#06.潔淨水與衛生 #09.產業創新與基礎設施
|
2025-07-01 |
104 / 1 |
The Antimicrobial Properties of Silver Nanoparticles in Bacillus Subtilis Are Mediated by Released Ag+ Ions
|
#06.潔淨水與衛生 #09.產業創新與基礎設施
|
2025-07-01 |
105 / 1 |
An Innovative Solar Energy-powered Floating Media Bed Reactor for Nutrient Removal (II): Material Characterization
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#06.潔淨水與衛生 #09.產業創新與基礎設施 #11.永續城市與社區 #14.水下生命 #17.夥伴關係
|
2025-07-05 |
106 / 1 |
Copper, Nickel, and Zinc Cations Biosorption Properties of Gram-positive and Gram-negative MerP Mercury-resistance Proteins
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#03.良好健康和福祉 #06.潔淨水與衛生 #11.永續城市與社區 #12.負責任的消費與生產 #15.陸域生命
|
2025-07-06 |
106 / 1 |
Antimicrobial Effects of Zero-valent Iron Nanoparticles on Gram-positive Bacillus Strains and Gram-negative Escherichia Coli Strains
|
#03.良好健康和福祉 #06.潔淨水與衛生 #11.永續城市與社區 #15.陸域生命
|
2025-07-06 |
106 / 2 |
Degradation of TCE, PCE, and 1, 2–DCE DNAPLs in Contaminated Groundwater using Polyethylenimine-modified Zero-valent iron Nanoparticles
|
#06.潔淨水與衛生 #09.產業創新與基礎設施 #11.永續城市與社區 #14.水下生命
|
2025-07-06 |
106 / 2 |
Magnetic Separation and Recycling of Ferrite Nanocatalysts for CO2 Decomposition with CH4 Recovery from Steel Industrial Flyash
|
#07.可負擔的潔淨能源 #09.產業創新與基礎設施 #11.永續城市與社區 #13.氣候行動
|
2025-07-06 |
106 / 2 |
Recycling Copper Nanoparticles from Printed Circuit Board Waste Etchants via a Microemulsion Process
|
#06.潔淨水與衛生 #09.產業創新與基礎設施 #11.永續城市與社區 #12.負責任的消費與生產
|
2025-07-06 |
107 / 1 |
Decontamination of 1, 2-dichloroethane DNAPL in Contaminated Groundwater by Polymer-modified Zero-valent Iron Nanoparticles
|
#06.潔淨水與衛生 #09.產業創新與基礎設施 #11.永續城市與社區 #14.水下生命
|
2025-07-06 |
107 / 2 |
Enhancement of CO2 Adsorption and Separation for Non-porous Zn/Co Azolate Frameworks via Ethanol-induced Structural Transformation
|
#09.產業創新與基礎設施 #13.氣候行動
|
2025-07-06 |
108 / 2 |
Direct Ultrasound Synthesis of Vanadyl Pyrophosphate Catalyst for Partial Oxidation of N-Butane to Maleic Anhydride
|
#09.產業創新與基礎設施 #17.夥伴關係
|
2025-07-06 |
110 / 2 |
Preparation and characterization of Ni/Al2O3 for carbon nanofiber fabrication from CO2 hydrogenation
|
#09.產業創新與基礎設施 #13.氣候行動
|
2025-06-22 |
112 / 1 |
Direct synthesis of CH3OH from CO2 hydrogenation over Ni5Ga3/SiO2 catalysts
|
#07.可負擔的潔淨能源 #08.尊嚴就業與經濟發展 #09.產業創新與基礎設施 #11.永續城市與社區 #12.負責任的消費與生產 #13.氣候行動
|
2025-06-22 |
112 / 2 |
Two-stage conversion of CO2 to methanol and dimethyl ether using CuO–ZnO–Al2O3/protonated Y-type zeolite catalysts
|
#07.可負擔的潔淨能源 #09.產業創新與基礎設施 #12.負責任的消費與生產 #13.氣候行動 #17.夥伴關係
|
2025-06-22 |
111 / 1 |
科學神燈窺視奈米建築美學
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#09.產業創新與基礎設施
|
2025-06-22 |
113 / 1 |
Electron-transfer Dynamics and Photocatalytic H2-production Activity of PbS@ Cu2S Nanocomposites
|
#07.可負擔的潔淨能源 #09.產業創新與基礎設施 #11.永續城市與社區 #13.氣候行動
|
2025-06-30 |
108 / 1 |
Sandwich-Nanostructured n-Cu₂O/AuAg/p-Cu₂O Photocathode with Highly Positive Onset Potential for Improved Water Reduction
|
#07.可負擔的潔淨能源 #09.產業創新與基礎設施
|
2025-07-06 |
107 / 2 |
Improvement of Dimethyl Carbonate Formation via Methanol Carbonation over Vanadium-doped Cu–Ni/AC Catalyst
|
#07.可負擔的潔淨能源 #09.產業創新與基礎設施 #13.氣候行動
|
2025-07-06 |
107 / 2 |
N,P Co-coordinated Fe Species Embedded in Carbon Hollow Spheres for Oxygen Electrocatalysis
|
#07.可負擔的潔淨能源 #09.產業創新與基礎設施 #17.夥伴關係
|
2025-07-06 |
108 / 1 |
Two-Dimensional Cobalt Phosphate Hydroxide Nanosheets: A New Type of High-Performance Electrocatalysts with Intrinsic CoO6 Lattice Distortion for Water Oxidation
|
#07.可負擔的潔淨能源 #09.產業創新與基礎設施 #17.夥伴關係
|
2025-07-06 |
108 / 1 |
Structural and Electronic Optimization of MoS2 Edges for Hydrogen Evolution
|
#07.可負擔的潔淨能源 #09.產業創新與基礎設施 #17.夥伴關係
|
2025-07-06 |
108 / 2 |
KSCN-activation of Hydrogenated NiO/TiO2 for Enhanced Photocatalytic Hydrogen Evolution
|
#07.可負擔的潔淨能源 #09.產業創新與基礎設施
|
2025-07-06 |
108 / 2 |
Synthesis of FeCo-N@N-doped Carbon Oxygen Reduction Catalysts via Microwave-assisted Ammoxidation
|
#09.產業創新與基礎設施 #11.永續城市與社區 #12.負責任的消費與生產
|
2025-07-06 |
109 / 1 |
Co‐Induced Electronic Optimization of Hierarchical NiFe LDH for Oxygen Evolution
|
#07.可負擔的潔淨能源 #09.產業創新與基礎設施 #17.夥伴關係
|
2025-07-07 |
108 / 2 |
Tracking Charge Transfer to Residual Metal Clusters in Conjugated Polymers for Photocatalytic Hydrogen Evolution
|
#07.可負擔的潔淨能源 #09.產業創新與基礎設施 #17.夥伴關係
|
2025-07-07 |
109 / 1 |
Carbon-coated Porous Si/C Composite Anode Materials via Two-step Etching/coating Processes for Lithium-ion Batteries
|
#08.尊嚴就業與經濟發展 #09.產業創新與基礎設施 #11.永續城市與社區 #17.夥伴關係
|
2025-07-07 |
109 / 1 |
Creation of NC=O Active Groups on N-doped CNT as an Efficient CarboCatalyst for Solvent-Free Aerobic Coupling of Benzylamine
|
#09.產業創新與基礎設施 #17.夥伴關係
|
2025-07-07 |
109 / 1 |
Exploring Lithium Storage Mechanism and Cycling Stability of Bi2Mo3O12 Binary Metal Oxide Anode Composited with Ti3C2 MXene
|
#07.可負擔的潔淨能源 #09.產業創新與基礎設施 #17.夥伴關係
|
2025-07-07 |
109 / 1 |
FeN@N-doped Graphitic Biochars Derived from Hydrothermal-microwave Pyrolysis of Cellulose Biomass for Fuel Cell Catalysts
|
#07.可負擔的潔淨能源 #09.產業創新與基礎設施 #12.負責任的消費與生產
|
2025-07-07 |