Patent classifications
H01L31/07
Super CMOS devices on a microelectronics system
A low cost IC solution is disclosed to provide Super CMOS microelectronics macros. Hereinafter, the Super CMOS or Schottky CMOS all refer to SCMOS. The SCMOS device solutions with a niche circuit element, the complementary low threshold Schottky barrier diode pairs (SBD) made by selected metal barrier contacts (Co/Ti) to P— and N—Si beds of the CMOS transistors. A DTL like new circuit topology and designed wide contents of broad product libraries, which used the integrated SBD and transistors (BJT, CMOS, and Flash versions) as basic components. The macros include diodes that are selectively attached to the diffusion bed of the transistors, configuring them to form generic logic gates, memory cores, and analog functional blocks from simple to the complicated, from discrete components to all grades of VLSI chips. Solar photon voltaic electricity conversion and bio-lab-on-a-chip are two newly extended fields of the SCMOS IC applications.
Super CMOS devices on a microelectronics system
A low cost IC solution is disclosed to provide Super CMOS microelectronics macros. Hereinafter, the Super CMOS or Schottky CMOS all refer to SCMOS. The SCMOS device solutions with a niche circuit element, the complementary low threshold Schottky barrier diode pairs (SBD) made by selected metal barrier contacts (Co/Ti) to P— and N—Si beds of the CMOS transistors. A DTL like new circuit topology and designed wide contents of broad product libraries, which used the integrated SBD and transistors (BJT, CMOS, and Flash versions) as basic components. The macros include diodes that are selectively attached to the diffusion bed of the transistors, configuring them to form generic logic gates, memory cores, and analog functional blocks from simple to the complicated, from discrete components to all grades of VLSI chips. Solar photon voltaic electricity conversion and bio-lab-on-a-chip are two newly extended fields of the SCMOS IC applications.
Structure, method for manufacturing same, semiconductor element, and electronic circuit
A structure including a metal oxide semiconductor layer and a noble metal oxide layer, wherein the metal oxide semiconductor layer and the noble metal oxide layer are adjacent to each other, and a film thickness of the noble metal oxide layer is more than 10 nm.
Structure, method for manufacturing same, semiconductor element, and electronic circuit
A structure including a metal oxide semiconductor layer and a noble metal oxide layer, wherein the metal oxide semiconductor layer and the noble metal oxide layer are adjacent to each other, and a film thickness of the noble metal oxide layer is more than 10 nm.
Solar cells, structures including organometallic halide perovskite monocrystalline films, and methods of preparation thereof
Embodiments of the present disclosure provide for solar cells including an organometallic halide perovskite monocrystalline film (see FIG. 1.1B), other devices including the organometallic halide perovskite monocrystalline film, methods of making organometallic halide perovskite monocrystalline film, and the like.
Solar cells, structures including organometallic halide perovskite monocrystalline films, and methods of preparation thereof
Embodiments of the present disclosure provide for solar cells including an organometallic halide perovskite monocrystalline film (see FIG. 1.1B), other devices including the organometallic halide perovskite monocrystalline film, methods of making organometallic halide perovskite monocrystalline film, and the like.
Magnetic-Floating Field-Assisted Thermionic Solar Cell With Semiconductor Nonvolatile Memories and Rechargeable Batteries
The present invention is about a magnetic solar cell with a semiconductor memory and battery, capable of achieving higher solar efficiency and energy storage capability. The semiconductor magnetic solar system features the following components: a section of very low work function metal, which is physically floating in vacuum, as sustained by magnetic fields, and a section of semiconductor to form an Avalanche Breakdown Schottky Diode, and a memory/battery storage unit with a high work function metal.
Magnetic-Floating Field-Assisted Thermionic Solar Cell With Semiconductor Nonvolatile Memories and Rechargeable Batteries
The present invention is about a magnetic solar cell with a semiconductor memory and battery, capable of achieving higher solar efficiency and energy storage capability. The semiconductor magnetic solar system features the following components: a section of very low work function metal, which is physically floating in vacuum, as sustained by magnetic fields, and a section of semiconductor to form an Avalanche Breakdown Schottky Diode, and a memory/battery storage unit with a high work function metal.
PHOTOELECTRIC CONVERSION ELEMENT
The present disclosure is a photoelectric conversion element including: a photoelectric conversion layer 5 including a first quantum dot 4a and a second quantum dot 4b, a ratio X of the number of heavy metal atoms to the number of oxygen group atoms is less than 2 on a surface of the nanoparticle of the first quantum dot 4a, the ratio X is greater than or equal to 2 on a surface of the nanoparticle of the second quantum dot 4b, and Equation (1) is satisfied:
0.3<N(1),
where N denotes a ratio of the number of second quantum dots to the number of first quantum dots.
PHOTOELECTRIC CONVERSION ELEMENT
The present disclosure is a photoelectric conversion element including: a photoelectric conversion layer 5 including a first quantum dot 4a and a second quantum dot 4b, a ratio X of the number of heavy metal atoms to the number of oxygen group atoms is less than 2 on a surface of the nanoparticle of the first quantum dot 4a, the ratio X is greater than or equal to 2 on a surface of the nanoparticle of the second quantum dot 4b, and Equation (1) is satisfied:
0.3<N(1),
where N denotes a ratio of the number of second quantum dots to the number of first quantum dots.