IP Library Granted Patent US 9,142,787
Granted Patent B2
US 9,142,787 · App. 13/651,379 · Granted Sep 22, 2015

Silk transistor devices

Inventors: Fiorenzo Omenetto (Wakefield, MA); David L. Kaplan (Concord, MA); Jason Amsden (Durham, NC); Raffaella Capelli (Bologna, IT); Stefano Toffanin (Padova, IT); Valentina Benfenati (Bologna, IT); Michele Muccini (Bologna, IT); Roberto Zamboni (Bologna, IT)
Assignee: TUFTS UNIVERSITY
H01L51/0093B82Y5/00B82Y10/00C07K14/43586G01N33/502H01L51/052H01L51/0566H01L51/5296H01L51/0036H01L51/0053H01L51/0545H01L51/0562
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Quick Facts
Patent No.
US 9,142,787
App. No.
13/651,379
Granted
Sep 22, 2015
Kind
B2
Abstract

The invention relates to ecosustainable and biocompatible, low cost, ambient friendly electronic and optoelectronic devices, such as transistors and light-emitting transistors, made with silk fibroin or blended with other biopolymers, methods for fabrication and methods of using the silk-based electronics and optoelectronics. The silk-based electronics and optoelectronics can be implanted in vivo and in vitro for biomedical applications, such as for drug discovery or drug screening assays and devices. The silk-based devices may be used in the food industry and embedded in packaging for tracking and sensing, for security purposes or exploited as disposable not harmful for the environment efficient general electronic and optoelectronic devices.

Claims (19)

1. A silk-based transistor comprising:

a substrate including a gate contact;

a silk dielectric layer positioned over the substrate;

at least one active layer positioned over the silk dielectric layer comprising:

an organic semiconducting material; and

a silk matrix embedded with an electronically active biological material

comprising excitable living cells, tissues, and/or organisms; and

source and drain contacts positioned over the active layer,

wherein the silk-based transistor is characterized in that activity and/or functionality of the excitable living cells, tissues, and/or organisms is modulated when exposed to an agent and/or an electric field.

2. The silk-based transistor of claim 1 , wherein the source, drain and gate contacts, substrate, active layer and silk dielectric layer are biocompatible.

3. The silk-based transistor of claim 1 , wherein the source, drain, or gate contact is a metal or metal oxide selected from the group consisting of gold, copper, iron, aluminum, indium-tin-oxide, and combination thereof.

4. The silk-based transistor of claim 1 , wherein the organic semiconducting material is p-type, n-type or p-n junction type.

5. The silk-based transistor of claim 1 , wherein the active layer is a combination of multiple layers which present charge transport and/or light emitting properties.

6. The silk-based transistor of claim 1 , wherein the organic semiconducting material is selected from a group consisting of: thiophene derivatives, perylene derivatives, fluorine derivatives, phenyl derivatives, organometallic complexes, organic dyes, semiconducting quantum dots, metal nanoparticles and any combinations thereof.

7. The silk-based transistor of any one of claims 1 - 6 , wherein the organic semiconducting material is light-emitting.

8. The silk-based transistor of claim 1 , wherein the active layer further comprises one or more light-emitting elements.

9. The silk-based transistor of claim 8 , wherein the light emitting element is selected from the group consisting of organometallic complexes, organic dyes, semiconducting quantum dots, metal nanoparticles and combinations thereof.

10. The silk-based transistor of any of claims 1 - 6 , wherein the silk dielectric layer further comprises one or more non-conducting biocompatible polymers.

11. The silk-based transistor of any of claims 1 - 6 , wherein the excitable living cells, tissues, and/or organisms comprises ion channels.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 8, 2015
From: OMENETTO, FIORENZO; KAPLAN, DAVID L.; AMSDEN, JASON
To: TUFTS UNIVERSITY
Reel/Frame 036029/0047 →
Continuity (3)
Continuation 13393505
Provisional Application 61238319 · Aug 31, 2009
Related Publication 20140093902A1 · Apr 3, 2014