跳至主導覽
跳至搜尋
跳過主要內容
國立中央大學 首頁
說明與常見問題
連結會在新分頁中打開
English
中文
在 國立中央大學 搜尋內容
首頁
人才檔案
研究單位
研究計畫
研究成果
資料集
榮譽/獲獎
學術活動
新聞/媒體
影響
金屬奈米顆粒/中孔洞材料之複合材料於鋰/鈉離子電池及製氫之應用
Kao, Hsien-Ming
(PI)
化學學系
概覽
指紋
研究成果
(16)
指紋
探索此專案觸及的研究主題。這些標籤是根據基礎獎勵/補助款而產生。共同形成了獨特的指紋。
排序方式
重量
按字母排序
Keyphrases
Solid Polymer Electrolyte
46%
Mesopore
29%
Cage Type
26%
CMK-8
26%
Carboxylic Acids
26%
Hybrid Solid
26%
Lithium-ion Battery
24%
SBA-16
24%
Ordered Mesoporous Carbon
24%
Cubic Mesoporous Silica
24%
Cubic Mesoporous Carbon
23%
Hybrid Electrolyte
23%
Carboxylic Acid Functionalized
23%
Organosilane
23%
Ni Nanoparticles
23%
Photocatalytic Hydrogen Generation
23%
Mesoporous Silica
23%
Sodium-ion Batteries
23%
Ultrasmall
20%
Functionalized Mesoporous Silica
19%
Lithium
19%
Copper(II) Oxide
17%
Electrochromic Device
17%
Cycling Stability
17%
Highly Dispersed
17%
Anode Material
17%
4-Nitrophenol Reduction
16%
Enhanced Activity
16%
Cage Type
16%
Electrochemical Devices
16%
Polyether Amine
16%
Nanoparticles
15%
SBA-1
15%
Papain
15%
CuO Nanostructures
15%
CuO Nanorods
15%
Reduction Method
15%
Polysiloxane
15%
Morphology Control
15%
Enlarged Pores
15%
Enzyme Adsorption
15%
CO2 Hydrogenation
15%
Highly Active Catalyst
15%
Cobalt Nanoparticles (CoNPs)
15%
Durability Improvement
15%
Double Agent
15%
Large Pore
15%
Co Nanoparticles
15%
Nanocage
15%
Design Synthesis
15%
Comb-like
15%
4-nitrophenol Reduction
15%
Particle Size
13%
Mesoporous Silica Nanoparticles
11%
Catalytic Activity
11%
Hydrogen Generation
11%
Large-pore Mesoporous Silica
10%
Ionic Conductivity
10%
Nano-ellipsoids
10%
Ultrafine
10%
High Current Density
10%
Reversible Capacity
10%
Metal Nanoparticles
10%
Ion Conductivity
9%
Composite Anode
9%
Cu Nanoparticles
9%
Electrochemical Stability Window
9%
Electrochemical Performance
8%
Selective Adsorption
8%
Adsorbent
8%
Sodium Salt
8%
Structural Properties
8%
Tetraethyl Orthosilicate
8%
Silica Source
8%
Trimethylbenzene
8%
Environmentally Friendly
8%
Capacity Retention
8%
Efficiency Value
8%
SBA-15
7%
Pore Architecture
7%
Channel Pore
7%
LiFePO4 Nanoparticles
7%
Theoretical Capacity
7%
Tunable Size
7%
Silica Particles
7%
Diamine
7%
Block Copolymer
7%
Facile Fabrication
7%
High Performance
7%
Catalytic Performance
7%
Mesoporous Carbon Composite
7%
Ordered Mesoporous Silica
7%
High-capacity Cathodes
7%
Conducting Blends
7%
Carbon Support
7%
Dye Adsorption
7%
PH-responsive
7%
Composite Effect
7%
All-solid-state Battery
7%
Selective Protein Adsorption
7%
Polyether
7%
Monoamines
7%
Catalytic Tests
7%
Amines
7%
Bifunctional
7%
Nitroarene Hydrogenation
7%
Nanosized SnO2
7%
Ni Doping
7%
In Situ Formation
7%
Highly Conducting
7%
Well-defined
7%
FDU-12
7%
Material-based
7%
Size Reduction
7%
Adsorption Capacity
7%
Time Variation
7%
Adsorption Isotherm
7%
Low Leaching
7%
Triblock Copolymer
7%
Leaching Rate
7%
Mesoporous Materials
7%
Pore Size
7%
Organic-inorganic Hybrid Electrolyte
7%
Enzyme Stability
7%
Pluronic F127
7%
Surface Chemistry
7%
Ordered Mesoporous Silica Materials
7%
Solution pH
7%
Pseudo-second-order Model
7%
Adsorption Kinetics
7%
Incubation Time
7%
Enzyme Immobilization
7%
Pore Channel
7%
Solid-state Batteries
7%
High-performance Lithium-ion Batteries
7%
Size-tunable
7%
Copper Nanoparticles (CuNPs)
7%
Rate Capability
7%
LiFePO4
7%
Lithium Perchlorate
7%
Optical Density
6%
Conductivity Values
6%
Density Change
6%
Rutile
6%
Discharge Capacity
5%
Triethoxysilane
5%
Solid-state nuclear Magnetic Resonance (ssNMR)
5%
NMR Measurements
5%
Nitrogen Adsorption Isotherm
5%
Coulombic Efficiency
5%
Reaction Rate
5%
Mesoporous Silica SBA-16
5%
Magnetic Properties
5%
Expander
5%
SnO2 Nanoparticles
5%
Wet Impregnation
5%
Pore Expander
5%
Reducing Agent
5%
CuO Nanoflakes
5%
Hydrothermal Approach
5%
Nanoflakes
5%
Polypropylene Glycol
5%
Hydrosilylation
5%
Anodic
5%
Electronic Conductivity
5%
Diffusion Path
5%
Nanorods
5%
Electrolyte
5%
Low Current Density
5%
Structure-directing Agent
5%
Alkaline Condition
5%
Diffusion Coefficient Measurement
5%
Comparative Analysis
5%
Ni Loading
5%
Nanorod Morphology
5%
Exceptional Performance
5%
Nanostructures
5%
Small Particle Size
5%
NH 3
5%
Conductivity Stability
5%
Active Sites
5%
Material Science
Nanoparticle
100%
Mesoporous Silica
63%
Polymer Electrolyte
53%
Lithium Ion Battery
47%
Nanocomposite
35%
Ordered Mesoporous Carbon
31%
Hydrogenation
30%
Silicon Dioxide
27%
Papain
23%
Sodium Ion Battery
23%
Density
21%
Silica Nanoparticle
20%
Lithium
19%
Anode
18%
Ordered Mesoporous Silica
18%
Metal Nanoparticle
17%
Catalyst
17%
Nanostructure
16%
Anode Material
16%
Electrochemical Device
16%
Cathode
16%
Carbon Dioxide
16%
Polysiloxane
15%
Block Copolymer
15%
Nanorod
15%
Pore Size
14%
Ionic Conductivity
14%
Catalyst Activity
14%
Nuclear Magnetic Resonance
13%
Sodium
11%
Magnetic Property
10%
Electrochromic Devices
10%
Surface (Surface Science)
10%
Structural Property
9%
Tetraethyl Orthosilicate
9%
Desorption
9%
X-Ray Diffraction
9%
Composite Material
7%
Electrochromic Device
7%
Titanium Dioxide
7%
Solid State Battery
7%
Cobalt
7%
Adsorption Kinetics
7%
Oxide Compound
7%
Copolymer
7%
Mesoporous Material
7%
Adsorption Isotherm
7%
Solid-State Battery
7%
Hydrogen
7%
Polyethylene Glycol
7%
Nitrogen Adsorption
6%
Electrochromics
6%
Thermal Stability
6%
Electrostatic Interaction
5%
Polypropylene
5%
Chemistry
Nanoparticle
53%
Carboxylic Acid
40%
Mesoporous Silica
33%
4-Nitrophenol
30%
Polymer Electrolyte
23%
Nanocage
15%
Polysiloxane
15%
Meso Porosity
15%
Copper(II) Oxide
15%
Catalyst
10%
Sodium Salt
10%
Tetraethyl Orthosilicate
10%
Pore Size
10%
Trimethylbenzene
10%
Catalyst Activity
9%
Nitroarene
7%
Surface Chemistry
7%
Ordered Mesoporous Silica
7%
Adsorption Isotherm
7%
Solid-State NMR
7%
Adsorption Kinetics
7%
Pluronic
7%
Glycol
7%
Hydrogen
7%
Hydrogenation
7%
Block Copolymer
7%
Enzyme Immobilization
7%
Cobalt
7%
Nanocomposite
7%
Fourier Transform Infrared Spectroscopy
6%
Ionic Conductivity
6%
Silicon Dioxide
6%
Hemoglobin
5%
Magnetic Property
5%
Metal Nanoparticle
5%
29Si Solid-State Nuclear Magnetic Resonance Spectroscopy
5%
Hydrosilylation
5%
Poly(propylene)
5%