跳至主導覽
跳至搜尋
跳過主要內容
國立陽明交通大學研發優勢分析平台 首頁
English
中文
首頁
人員
單位
研究成果
計畫
獎項
活動
貴重儀器
影響
按專業知識、姓名或所屬機構搜尋
查看斯高帕斯 (Scopus) 概要
張 君輔
助理教授
應用化學系
https://orcid.org/0000-0001-7750-220X
電話
03-5712121 #56550
電子郵件
chunfuc
nycu.edu
tw
網站
https://dac.nycu.edu.tw/en/members/7451
h-index
h10-index
h5-index
88
引文
3
h-指數
按照存儲在普爾(Pure)的出版物數量及斯高帕斯(Scopus)引文計算。
35
引文
3
h-指數
按照存儲在普爾(Pure)的出版物數量及斯高帕斯(Scopus)引文計算。
25
引文
2
h-指數
按照存儲在普爾(Pure)的出版物數量及斯高帕斯(Scopus)引文計算。
2013
2025
每年研究成果
概覽
指紋
網路
研究成果
(6)
類似的個人檔案
(2)
指紋
查看啟用 Chun-Fu Chang 的研究主題。這些主題標籤來自此人的作品。共同形成了獨特的指紋。
排序方式
重量
按字母排序
Keyphrases
Chromophore
100%
Retinal Schiff Base
74%
Ball Mill Synthesis
74%
Photoisomerization
68%
Counterion
62%
Rhodopsin
58%
Microbial rhodopsin
56%
Proteorhodopsin
49%
Perovskite
46%
Time-resolved Absorption
38%
Photoreaction
37%
Molecular Spectroscopy
37%
Femtochemistry
37%
Unified View
37%
Tetradentate
37%
Osmium(II) Complexes
37%
Raman Spectroscopy
37%
Retinal Chromophore
37%
Ultrafast Dynamics
37%
Ultrafast Spectroscopy
37%
Excited-state Relaxation Dynamics
37%
Spectroscopy Raman
37%
Wide Bandgap
37%
Mixed-halide
37%
Acid-base Equilibrium
37%
Chelates
37%
Tin Perovskite Solar Cells
37%
Emissive
37%
Water-stable
37%
Dimethylammonium
37%
Tin-based
37%
Photocatalytic CO2 Reduction
37%
Pseudohalides
37%
Solvent-free
37%
Excited State Dynamics
34%
Femtosecond Time-resolved
31%
Time-resolved Absorption Spectroscopy
31%
Band Gap
29%
Absorption Spectra
25%
Milling Duration
24%
Ball Milling Speed
24%
Formamidinium Cation
24%
Ultrafast
19%
Stimulated Raman
18%
Raman Measurements
18%
Proton
18%
Structural Difference
18%
Retinal Isomerization
18%
Cysteine
18%
Isomerization Dynamics
18%
Chemistry
Chromophore
93%
Excited State
74%
Counterion
56%
Imine
54%
Photoisomerization
53%
Acid Base Equilibrium
37%
Protein Interaction
37%
Osmium
37%
Molecular Spectroscopy
37%
Ultrafast Spectroscopy
37%
Raman Spectroscopy
37%
Raman Spectrometry
37%
chelate
37%
Relaxation
33%
Ground State
24%
protonation
20%
Absorption Spectroscopy
15%
Red
14%
Cysteine
12%
Potential Energy Surface
10%
Deprotonation
9%
Pyrazole
7%
Doping Material
7%
Single Crystalline Solid
7%
Isomerization
6%
Cysteine Residue
6%
Structural Protein
6%
Spectroscopy
5%
Sodium
5%
Engineering
Band Gap
87%
Ball Milling
74%
Photocatalytic CO2 Reduction
74%
Perovskite Solar Cells
37%
Energy dispersive spectrometry
24%
Synthesis Method
24%
Optimal Condition
24%
Mols
24%
Ray Diffraction
24%
Photoelectron
24%
Humid Environment
24%
Nanoparticle
24%