Claims
- 1-71. (canceled)
- 72. A circuit comprising:
at least one circuit element, the circuit element comprising at least one of a resistor, a diode, a capacitor, a transistor, and an inductor; wherein the at least one circuit element comprises a nucleic acid template with two or more sequential regions which are coated with different materials that are at least partially conductive.
- 73. The circuit according to claim 72 wherein each of the different materials has a different resistivity from the other.
- 74. The circuit according to claim 72 wherein each of the different materials is a doped semiconductor material.
- 75. The circuit according to claim 74 wherein the doped semiconductor material is either an n-type or a p-type semiconductor material.
- 76. The circuit according to claim 72 wherein the nucleic acid template is DNA.
- 77. The circuit according to claim 72 wherein the nucleic acid template is RNA.
- 78. The circuit according to claim 72 wherein the circuit element is a resistor and the different materials comprise a first material separated by a second material having a different resistivity than the first material.
- 79. The circuit according to claim 78 wherein the first material comprises a metal and the second material comprises an at least partially conductive material.
- 80. The circuit according to claim 72 wherein the circuit element is a diode and the different materials comprise a first type of semiconductor material adjacent to a second type of semiconductor material.
- 81. The circuit according to claim 80 wherein the first and second types of semiconductor materials are N-type and P-type semiconductor materials.
- 82. The circuit according to claim 80 further comprising a pair of at least partially conductive leads, each of the leads is coupled to one of the first and second types of semiconductor materials.
- 83. The circuit according to claim 72 wherein the circuit element is a capacitor and the different materials comprise a pair of conductive leads and a pair of at least partially conductive plates, each of the conductive leads is coupled to one of the plates and the plates are separated by a dielectric.
- 84. The circuit according to claim 72 wherein the circuit element is a transistor and the different materials comprise a first type of semiconductor material separated by a second type of semiconductor material.
- 85. The circuit according to claim 84 wherein the first and second types of semiconductor materials are N-type and P-type semiconductor materials.
- 86. The circuit according to claim 84 wherein the nucleic acid template core comprises three branches having a common intersection, the second type of semiconductor material coating at least a portion of the common intersection and the first type of semiconductor material coating at least a portion of two of the three branches adjacent the intersection.
- 87. The circuit according to claim 86 further comprising a plurality of at least partially conductive leads, each of the leads coupled to one of the first and second types of semiconductor materials along one of the three branches.
- 88. The circuit according to claim 72 wherein the circuit element is an inductor and wherein the different materials comprise a coil of at least partially conductive material and a pair of conductive leads coupled to opposing ends of the coil.
- 89. The circuit according to claim 88 further comprising a core structure, the coil wrapped at least partially around the core.
- 90. The circuit according to claim 89 wherein the core structure comprises a histone-like protein.
- 91. A method for making a circuit, the method comprising:
providing at least one circuit element, the circuit element comprising at least one of a resistor, a diode, a capacitor, a transistor, and an inductor; wherein the provided circuit element is a resistor, the process for making the resistor comprising: protecting at least one region of a nucleic acid molecule template using a nucleic acid binding molecule; coating unprotected regions of the nucleic acid molecule template with a first conductive material; removing the nucleic acid binding molecule from the protected region; and coating the protected region with a second conductive material, where the second conductive material has a different resistivity from the first conductive material.
- 92. The method according to claim 91 wherein the nucleic acid template is DNA.
- 93. The method according to claim 91 wherein the nucleic acid template is RNA.
- 94. A method for making a circuit, the method comprising:
providing at least one circuit element, the circuit element comprising at least one of a resistor, a diode, a capacitor, a transistor, and an inductor; wherein the provided circuit element is a diode, the process for making the diode comprising: protecting at least one region of a nucleic acid molecule template using two or more nucleic acid binding molecules; coating unprotected regions of the nucleic acid molecule template with a conductive material, removing at least one of the nucleic acid binding molecules from one portion of the protected region; coating the one portion of the protected region with a first-type of semiconductor material; removing any remaining ones of the nucleic acid binding molecules from any remaining portion of the protected region; and coating the remaining portion of the protected region with a second type of semiconductor material.
- 95. The method according to claim 94 wherein the first and second types of semiconductor materials are N-type and P-type semiconductor materials.
- 96. The method according to claim 94 wherein the nucleic acid template is DNA.
- 97. The method according to claim 94 wherein the nucleic acid template is RNA.
- 98. A method for making a circuit, the method comprising:
providing at least one circuit element, the circuit element comprising at least one of a resistor, a diode, a capacitor, a transistor, and an inductor; wherein the provided circuit element is a capacitor, the process for making the capacitor comprising coating parallel regions of a nucleic acid molecule template with a conductive material, each of the coated parallel regions coupled to a lead.
- 99. The method according to claim 98 wherein the process for making the capacitor further comprises:
protecting at least one spacer region of the nucleic acid molecule template using at least one nucleic acid binding molecule; removing the nucleic acid binding molecule from the protected spacer region after the coating of the parallel regions; and removing the spacer region of the nucleic acid molecule template.
- 100. The method according to claim 98 wherein at least one of the parallel regions of the nucleic acid template is DNA.
- 100. The method according to claim 98 wherein at least one of the parallel regions of the nucleic acid template is RNA.
- 101. A method for making a circuit, the method comprising:
providing at least one circuit element, the circuit element comprising at least one of a resistor, a diode, a capacitor, a transistor, and an inductor; wherein the provided circuit element is a transistor, the process for making the transistor comprising: protecting a central region and two of three adjacent branch regions of a nucleic acid molecule template with nucleic acid binding molecules; coating unprotected regions of the nucleic acid molecule template with a conductive material; removing the one or more nucleic acid binding molecules protecting the central region of the nucleic acid molecule template; coating the central region with a first-type of semiconductor material; removing the nucleic acid binding molecules from the protected branch regions; and coating the branch regions with a second type of semiconductor material.
- 102. The method according to claim 101 wherein the first and second types of semiconductor materials are N-type and P-type semiconductor materials.
- 103. The method according to claim 101 wherein the nucleic acid template is DNA.
- 104. The method according to claim 101 wherein the nucleic acid template is RNA.
- 105. A method for making a circuit, the method comprising:
providing at least one circuit element, the circuit element comprising at least one of a resistor, a diode, a capacitor, a transistor, and an inductor; wherein the provided circuit element is an inductor, the process for making the inductor comprising: wrapping a nucleic acid molecule template around at least one protein; and coating the nucleic acid molecule template with a first conductive material.
- 106. The method according to claim 105 wherein the protein comprises a histone-like protein.
- 107. The method according to claim 105 wherein the nucleic acid template is DNA.
- 108. The method according to claim 105 wherein the nucleic acid template is RNA.
Parent Case Info
[0001] The present application claims the benefit of U.S. patent application Ser. No. 09/315,750 filed on May 20, 1999, which claims the benefit of U.S. Provisional Patent Applications Serial Nos. 60/086,163, filed May 20, 1998, and 60/095,096, filed Aug. 3, 1998.
Continuations (1)
|
Number |
Date |
Country |
Parent |
09860046 |
May 2001 |
US |
Child |
10737013 |
Dec 2003 |
US |