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
Expanding the Properties and Utility...
~
Oh, Taegon.
FindBook
Google Book
Amazon
博客來
Expanding the Properties and Utility of DNA-Engineered Nanoparticle Superlattices Through Monodispersity, Metallization, and Interfacing With Electronic Circuitry.
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Expanding the Properties and Utility of DNA-Engineered Nanoparticle Superlattices Through Monodispersity, Metallization, and Interfacing With Electronic Circuitry./
作者:
Oh, Taegon.
出版者:
Ann Arbor : ProQuest Dissertations & Theses, : 2019,
面頁冊數:
146 p.
附註:
Source: Dissertations Abstracts International, Volume: 80-10, Section: B.
Contained By:
Dissertations Abstracts International80-10B.
標題:
Nanoscience. -
電子資源:
http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=13808793
ISBN:
9781392028575
Expanding the Properties and Utility of DNA-Engineered Nanoparticle Superlattices Through Monodispersity, Metallization, and Interfacing With Electronic Circuitry.
Oh, Taegon.
Expanding the Properties and Utility of DNA-Engineered Nanoparticle Superlattices Through Monodispersity, Metallization, and Interfacing With Electronic Circuitry.
- Ann Arbor : ProQuest Dissertations & Theses, 2019 - 146 p.
Source: Dissertations Abstracts International, Volume: 80-10, Section: B.
Thesis (Ph.D.)--Northwestern University, 2019.
This item is not available from ProQuest Dissertations & Theses.
Colloidal crystal engineering with DNA offers new opportunities for materials scientists to build and program the structures of superlattices beyond what can be accomplished in Nature with atomic crystal lattices. Thus far, such materials primarily have been studied for their optical properties due to the insulating nature of the DNA bonds and the large distances between the particles, a consequence of DNA length. In addition, the size heterogeneity of the colloidal crystals generated by all known techniques, limits the use of such structures for device applications. My thesis introduces strategies for controlling the growth and monodispersity of colloidal crystals engineered with DNA, introduces a novel way to metallize and strengthen the DNA bond interconnects, so that such structures can be moved from aqueous media into a wide variety of other media, and explores the functional consequences of metallization in the context of conductivity. Chapter 1 reviews the field of colloidal crystal engineering with DNA, setting the stage for the experiments carried out in this thesis. In Chapter 2, On Wire Lithography (OWL) is used to create nanowire devices that allow for the selective functionalization of electrodes with DNA and the controlled growth of nanoparticle devices in a pre-designed nanogap. Chapter 3 takes inspiration from biology where density gradients are used to separate proteins based upon size. In Chapter 3, a powerful density gradient method for controlling the growth of superlattices in such a way that they can be driven to one size is described. In this method, growth quenching is effected by the superlattices falling into sublayers that do not permit growth. Chapter 4 describes a post-synthetic stabilization procedure for DNA-assembled colloidal crystals that relies on Ag+ ions to form coordinate covalent bonds between the nucleobases in the "DNA bonds". This substantially increases the stability of such structures and avoids the need to move them into solid-state matrices to study or use them. Using the methods introduced in Chapter 2 and the synthetic procedures described in Chapters 3 and 4, the work in Chapter 5 explores the conductivity of the metallized superlattices, showing that Ag+ not only stabilizes the DNA bonds but transforms them into conducting entities. Chapter 6 provides a forward looking perspective and examines the consequences of these advances with respect to generating programmable device architectures based upon nanoparticle superlattices engineered with DNA.
ISBN: 9781392028575Subjects--Topical Terms:
587832
Nanoscience.
Expanding the Properties and Utility of DNA-Engineered Nanoparticle Superlattices Through Monodispersity, Metallization, and Interfacing With Electronic Circuitry.
LDR
:03808nmm a2200349 4500
001
2263378
005
20200316071957.5
008
220629s2019 ||||||||||||||||| ||eng d
020
$a
9781392028575
035
$a
(MiAaPQ)AAI13808793
035
$a
(MiAaPQ)northwestern:14533
035
$a
AAI13808793
040
$a
MiAaPQ
$c
MiAaPQ
100
1
$a
Oh, Taegon.
$3
3540467
245
1 0
$a
Expanding the Properties and Utility of DNA-Engineered Nanoparticle Superlattices Through Monodispersity, Metallization, and Interfacing With Electronic Circuitry.
260
1
$a
Ann Arbor :
$b
ProQuest Dissertations & Theses,
$c
2019
300
$a
146 p.
500
$a
Source: Dissertations Abstracts International, Volume: 80-10, Section: B.
500
$a
Publisher info.: Dissertation/Thesis.
500
$a
Advisor: Mirkin, Chad A.
502
$a
Thesis (Ph.D.)--Northwestern University, 2019.
506
$a
This item is not available from ProQuest Dissertations & Theses.
506
$a
This item must not be sold to any third party vendors.
520
$a
Colloidal crystal engineering with DNA offers new opportunities for materials scientists to build and program the structures of superlattices beyond what can be accomplished in Nature with atomic crystal lattices. Thus far, such materials primarily have been studied for their optical properties due to the insulating nature of the DNA bonds and the large distances between the particles, a consequence of DNA length. In addition, the size heterogeneity of the colloidal crystals generated by all known techniques, limits the use of such structures for device applications. My thesis introduces strategies for controlling the growth and monodispersity of colloidal crystals engineered with DNA, introduces a novel way to metallize and strengthen the DNA bond interconnects, so that such structures can be moved from aqueous media into a wide variety of other media, and explores the functional consequences of metallization in the context of conductivity. Chapter 1 reviews the field of colloidal crystal engineering with DNA, setting the stage for the experiments carried out in this thesis. In Chapter 2, On Wire Lithography (OWL) is used to create nanowire devices that allow for the selective functionalization of electrodes with DNA and the controlled growth of nanoparticle devices in a pre-designed nanogap. Chapter 3 takes inspiration from biology where density gradients are used to separate proteins based upon size. In Chapter 3, a powerful density gradient method for controlling the growth of superlattices in such a way that they can be driven to one size is described. In this method, growth quenching is effected by the superlattices falling into sublayers that do not permit growth. Chapter 4 describes a post-synthetic stabilization procedure for DNA-assembled colloidal crystals that relies on Ag+ ions to form coordinate covalent bonds between the nucleobases in the "DNA bonds". This substantially increases the stability of such structures and avoids the need to move them into solid-state matrices to study or use them. Using the methods introduced in Chapter 2 and the synthetic procedures described in Chapters 3 and 4, the work in Chapter 5 explores the conductivity of the metallized superlattices, showing that Ag+ not only stabilizes the DNA bonds but transforms them into conducting entities. Chapter 6 provides a forward looking perspective and examines the consequences of these advances with respect to generating programmable device architectures based upon nanoparticle superlattices engineered with DNA.
590
$a
School code: 0163.
650
4
$a
Nanoscience.
$3
587832
650
4
$a
Nanotechnology.
$3
526235
650
4
$a
Materials science.
$3
543314
690
$a
0565
690
$a
0652
690
$a
0794
710
2
$a
Northwestern University.
$b
Materials Science and Engineering.
$3
1058406
773
0
$t
Dissertations Abstracts International
$g
80-10B.
790
$a
0163
791
$a
Ph.D.
792
$a
2019
793
$a
English
856
4 0
$u
http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=13808793
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
W9415612
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