Invention Grant
US08173842B2 Multifunctional linker molecules for tuning electronic charge transport through organic-inorganic composite structures and uses thereof
失效
用于通过有机 - 无机复合结构调整电子电荷传输的多功能连接分子及其用途
- Patent Title: Multifunctional linker molecules for tuning electronic charge transport through organic-inorganic composite structures and uses thereof
- Patent Title (中): 用于通过有机 - 无机复合结构调整电子电荷传输的多功能连接分子及其用途
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Application No.: US11360298Application Date: 2006-02-23
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Publication No.: US08173842B2Publication Date: 2012-05-08
- Inventor: Jurina Wessels , William Ford , Akio Yasuda
- Applicant: Jurina Wessels , William Ford , Akio Yasuda
- Applicant Address: DE Cologne
- Assignee: Sony Deutschland GmbH
- Current Assignee: Sony Deutschland GmbH
- Current Assignee Address: DE Cologne
- Agency: Oblon, Spivak, McClelland, Maier & Neustadt, L.L.P.
- Priority: EP00126968 20001208
- Main IPC: C07C239/00
- IPC: C07C239/00 ; B32B7/12

Abstract:
The invention relates to tuned multifunctional linker molecules for charge transport through organic-inorganic composite structures. The problem underlying the present invention is to provide multifunctional linker molecules for tuning the conductivity in nanoparticle-linker assemblies which can be used in the formation of electronic networks and circuits and thin films of nanoparticles. The problem is solved according to the invention by providing a multifunctional linker molecule of the general structure CON1—FUNC1—X—FUNC2—CON2 in which X is the central body of the molecule, FUNC1 and FUNC2 independently of each other are molecular groups introducing a dipole moment and/or capable of forming intermolecular and/or intramolecular hydrogen bonding networks, and CON1 and CON2 independently of each other are molecular groups binding to nanostructured units comprising metal and semiconductor materials.
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