語系:
繁體中文
English
說明(常見問題)
回圖書館首頁
手機版館藏查詢
登入
回首頁
切換:
標籤
|
MARC模式
|
ISBD
FindBook
Google Book
Amazon
博客來
Structure Engineering and Electrochemical Applications of Metal-Organic Framework-Based Materials.
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Structure Engineering and Electrochemical Applications of Metal-Organic Framework-Based Materials./
作者:
Chen, Gan.
面頁冊數:
1 online resource (144 pages)
附註:
Source: Dissertations Abstracts International, Volume: 84-08, Section: B.
Contained By:
Dissertations Abstracts International84-08B.
標題:
Acids. -
電子資源:
http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=30232615click for full text (PQDT)
ISBN:
9798371947895
Structure Engineering and Electrochemical Applications of Metal-Organic Framework-Based Materials.
Chen, Gan.
Structure Engineering and Electrochemical Applications of Metal-Organic Framework-Based Materials.
- 1 online resource (144 pages)
Source: Dissertations Abstracts International, Volume: 84-08, Section: B.
Thesis (Ph.D.)--Stanford University, 2021.
Includes bibliographical references
Metal-organic frameworks (MOFs) are a class of crystalline porous solids consisting of metal ions or clusters coordinated to organic ligands. Because of their appealing features such as regular and adjustable pore size, large specific surface area, and diverse topologies and morphologies, MOFs are traditionally used in many applications including gas/vapor separation, gas storage, and catalysis. In the past decade, MOFs have been identified as a promising platform in electrochemical applications. The very recent advances in electrically conductive MOFs further enhanced the prospect of electrochemical applications for MOFs. Despite the increasing interest of applying MOF-based materials in many electrochemical applications, there is still much to be investigated, including the stability, particle size engineering, electronic property, and novel structure development for the next generation of MOF-based materials to promote their electrochemical applications.In this work, I explore the possibility of employing metal-organic framework (MOF)-based materials in electrochemical applications. Chapter 1 introduces the background and motivation of this thesis. Chapter 2 demonstrates the efforts to employ an Aluminum porphyrinic MOF for oxygen reduction reaction. Chapter 3 focuses on particle size study in oxygen electroreduction done by a Zirconium porphyrinic MOF with impressive stability in acidic electrolyte, which provides general guidelines for utilizing non-conductive MOF materials in electrocatalysis. Chapter 4 presents tuning the electronic properties of a series of conductive MOFs comprised of otcaaminophthalocynine ligands and divalent transition metals (Co2+, Ni2+ and Cu2+) and then studied their electrocatalytic performances in oxygen reduction under basic condition. The remainder of the dissertation focuses on the design and synthesis of a 3D conductive MOF and its valence-dependent conductivity. These findings provide general guidelines for utilizing MOF materials in electrochemical applications.
Electronic reproduction.
Ann Arbor, Mich. :
ProQuest,
2023
Mode of access: World Wide Web
ISBN: 9798371947895Subjects--Topical Terms:
922327
Acids.
Index Terms--Genre/Form:
542853
Electronic books.
Structure Engineering and Electrochemical Applications of Metal-Organic Framework-Based Materials.
LDR
:03402nmm a2200397K 4500
001
2358924
005
20230830051521.5
006
m o d
007
cr mn ---uuuuu
008
241011s2021 xx obm 000 0 eng d
020
$a
9798371947895
035
$a
(MiAaPQ)AAI30232615
035
$a
(MiAaPQ)STANFORDnm132gv7105
035
$a
AAI30232615
040
$a
MiAaPQ
$b
eng
$c
MiAaPQ
$d
NTU
100
1
$a
Chen, Gan.
$3
3699473
245
1 0
$a
Structure Engineering and Electrochemical Applications of Metal-Organic Framework-Based Materials.
264
0
$c
2021
300
$a
1 online resource (144 pages)
336
$a
text
$b
txt
$2
rdacontent
337
$a
computer
$b
c
$2
rdamedia
338
$a
online resource
$b
cr
$2
rdacarrier
500
$a
Source: Dissertations Abstracts International, Volume: 84-08, Section: B.
500
$a
Advisor: Salleo, Alberto; Cui, Yi.
502
$a
Thesis (Ph.D.)--Stanford University, 2021.
504
$a
Includes bibliographical references
520
$a
Metal-organic frameworks (MOFs) are a class of crystalline porous solids consisting of metal ions or clusters coordinated to organic ligands. Because of their appealing features such as regular and adjustable pore size, large specific surface area, and diverse topologies and morphologies, MOFs are traditionally used in many applications including gas/vapor separation, gas storage, and catalysis. In the past decade, MOFs have been identified as a promising platform in electrochemical applications. The very recent advances in electrically conductive MOFs further enhanced the prospect of electrochemical applications for MOFs. Despite the increasing interest of applying MOF-based materials in many electrochemical applications, there is still much to be investigated, including the stability, particle size engineering, electronic property, and novel structure development for the next generation of MOF-based materials to promote their electrochemical applications.In this work, I explore the possibility of employing metal-organic framework (MOF)-based materials in electrochemical applications. Chapter 1 introduces the background and motivation of this thesis. Chapter 2 demonstrates the efforts to employ an Aluminum porphyrinic MOF for oxygen reduction reaction. Chapter 3 focuses on particle size study in oxygen electroreduction done by a Zirconium porphyrinic MOF with impressive stability in acidic electrolyte, which provides general guidelines for utilizing non-conductive MOF materials in electrocatalysis. Chapter 4 presents tuning the electronic properties of a series of conductive MOFs comprised of otcaaminophthalocynine ligands and divalent transition metals (Co2+, Ni2+ and Cu2+) and then studied their electrocatalytic performances in oxygen reduction under basic condition. The remainder of the dissertation focuses on the design and synthesis of a 3D conductive MOF and its valence-dependent conductivity. These findings provide general guidelines for utilizing MOF materials in electrochemical applications.
533
$a
Electronic reproduction.
$b
Ann Arbor, Mich. :
$c
ProQuest,
$d
2023
538
$a
Mode of access: World Wide Web
650
4
$a
Acids.
$3
922327
650
4
$a
Basketball.
$3
629604
650
4
$a
Electrodes.
$3
629151
650
4
$a
Sulfur.
$3
1027219
650
4
$a
Energy storage.
$3
652130
650
4
$a
Voltammetry.
$3
3681694
650
4
$a
Graphene.
$3
1569149
650
4
$a
Electrocatalysis.
$3
872243
650
4
$a
Thin films.
$3
626403
650
4
$a
Climate change.
$2
bicssc
$3
2079509
650
4
$a
Nitrogen.
$3
1314426
650
4
$a
Electrolytes.
$3
656992
650
4
$a
Fourier transforms.
$3
3545926
650
4
$a
Carbon.
$3
604057
650
4
$a
Licenses.
$3
755699
650
4
$a
Particle size.
$3
3564817
650
4
$a
Pore size.
$3
3564182
650
4
$a
Cobalt.
$3
3682549
650
4
$a
Catalysis.
$3
560465
650
4
$a
Atoms & subatomic particles.
$3
3560412
650
4
$a
Atomic physics.
$3
3173870
650
4
$a
Condensed matter physics.
$3
3173567
650
4
$a
Energy.
$3
876794
650
4
$a
Materials science.
$3
543314
650
4
$a
Mathematics.
$3
515831
650
4
$a
Physics.
$3
516296
655
7
$a
Electronic books.
$2
lcsh
$3
542853
690
$a
0404
690
$a
0748
690
$a
0611
690
$a
0791
690
$a
0794
690
$a
0405
690
$a
0605
710
2
$a
ProQuest Information and Learning Co.
$3
783688
710
2
$a
Stanford University.
$3
754827
773
0
$t
Dissertations Abstracts International
$g
84-08B.
856
4 0
$u
http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=30232615
$z
click for full text (PQDT)
筆 0 讀者評論
館藏地:
全部
電子資源
出版年:
卷號:
館藏
1 筆 • 頁數 1 •
1
條碼號
典藏地名稱
館藏流通類別
資料類型
索書號
使用類型
借閱狀態
預約狀態
備註欄
附件
W9481280
電子資源
11.線上閱覽_V
電子書
EB
一般使用(Normal)
在架
0
1 筆 • 頁數 1 •
1
多媒體
評論
新增評論
分享你的心得
Export
取書館
處理中
...
變更密碼
登入