IP Library Granted Patent US 7,112,366
Granted Patent B2
US 7,112,366 · App. 09/755,437 · Granted Sep 26, 2006

Chemical monolayer and micro-electronic junctions and devices containing same

Assignee: The Ohio State University
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Quick Facts
Patent No.
US 7,112,366
App. No.
09/755,437
Granted
Sep 26, 2006
Kind
B2
Abstract

The present invention includes a chemical monolayer construction that comprises: (a) a substrate having a contact surface; and (b) a plurality of substantially parallel molecular units, wherein said molecular units are attached to said substrate so as to be strongly coupled electronically to said substrate, such as through a conjugated bond. The present invention also includes electronic circuit components and devices including a chemical monolayer construction of the present invention.

Claims (30)

1. A method of producing a chemical monolayer construction, said method comprising:

(a) providing a substrate consisting of conductive carbon, said substrate having a contact surface; and

(b) reacting a chemical precursor bearing molecular units with said substrate so as to form a monolayer of a plurality of substantially parallel molecular units attached to said contact surface of said substrate, wherein said molecular units are attached to said substrate through a conjugated bond and wherein said molecular units have an average length, said contact surface of said substrate has a roughness value substantially less than or equal to said average length of said molecular units.

2. A chemical monolayer construction, said construction comprising:

(a) a substrate consisting of conductive carbon, said substrate having a contact surface; and

(b) a monolayer of a plurality of substantially parallel molecular units attached to said contact surface of said substrate through a conjugated bond.

3. The chemical monolayer construction according to claim 2 , wherein said molecular units have an average length and said contact surface of said substrate has a roughness value that is substantially less than or equal to said average length of said molecular units.

4. A chemical monolayer construction according to claim 2 wherein said substantially parallel molecular units are of substantially the same length.

5. A chemical monolayer construction according to claim 2 wherein said substantially parallel molecular units comprise at least two types of molecular units of different lengths.

6. A chemical monolayer construction according to claim 2 wherein said roughness value is less than 200 Angstroms.

7. A chemical monolayer construction according to claim 2 wherein said roughness value is less than 20 Angstroms.

8. A chemical monolayer construction according to claim 2 wherein said roughness value is less than 5 Angstroms.

9. A chemical monolayer construction according to claim 2 additionally comprising a source of electrical current supplied to said substrate so as to be conducted by said plurality of substantially parallel molecular units.

10. A chemical monolayer construction, said construction comprising:

(a) a substrate having a contact surface; and

(b) a monolayer of a plurality of substantially parallel molecular units attached through a conjugated bond to said contact surface of said substrate, wherein said substantially parallel molecular units comprise at least two types of molecular units of different lengths.

11. The chemical monolayer construction according to claim 10 wherein said substrate comprises conductive carbon.

12. The chemical monolayer construction according to claim 10 wherein said molecular units have an average length, said contact surface of said substrate having a roughness value that is less than or equal to said average length of said molecular units.

13. The chemical monolayer construction according to claim 10 wherein said roughness value is less than 200 Angstroms.

14. The chemical monolayer construction according to claim 10 wherein said roughness value is less than 20 Angstroms.

15. The chemical monolayer construction according to claim 10 wherein said roughness value is less than 5 Angstroms.

16. The chemical monolayer construction according to claim 10 additionally comprising a source of electrical current supplied to said substrate so as to be conducted by said plurality of substantially parallel molecular units.

17. A chemical monolayer construction, said construction comprising:

(a) a substrate comprising conductive carbon, said substrate having a contact surface; and

(b) a monolayer of a plurality of substantially parallel molecular units attached to said contact surface of said substrate through a conjugated bond, wherein said substantially parallel molecular units comprise at least two types of molecular units of different lengths.

18. The chemical monolayer construction according to claim 17 , wherein said molecular units have an average length and said contact surface of said substrate has a roughness value that is less than or equal to said average length of said molecular units.

19. The chemical monolayer construction according to claim 17 , wherein said roughness value is less than 200 Angstroms.

20. The chemical monolayer construction according to claim 17 , wherein said roughness value is less than 20 Angstroms.

21. The chemical monolayer construction according to claim 17 , wherein said roughness value is less than 5 Angstroms.

22. The chemical monolayer construction according to claim 17 additionally comprising a source of electrical current supplied to said substrate so as to be conducted by said plurality of substantially parallel molecular units.

Assignments (3)
CONFIRMATORY LICENSE Recorded Dec 27, 2010
From: THE OHIO STATE UNIVERSITY RESEARCH FOUNDATION
To: NATIONAL SCIENCE FOUNDATION
Reel/Frame 025568/0812 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 27, 2006
From: THE OHIO STATE UNIVERSITY
To: THE OHIO STATE UNIVERSITY RESEARCH FOUNDATION
Reel/Frame 018552/0043 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 5, 2001
From: MCCREERY, RICHARD L.
To: OHIO STATE UNIVERSITY, THE
Reel/Frame 011433/0288 →
Continuity (1)
Related Publication 20020105897A1 · Aug 8, 2002