Realization of Phthalocyanine/Perovskite Superlattice Tandem Solar Cells Exceeding 35% Power Conversion Efficiency: Defense/Space Extreme Environment Qualification Protocols and Ultimate Contribution


AERI Technical Memorandum | Document ID: AERI-TM-2026-ENERG-0842-REV.DEFENSE-SPACE-EXTREME-UNICODEDate: September 9, 2026
Realization of Phthalocyanine/Perovskite Superlattice Tandem Solar Cells Exceeding 35% Power Conversion Efficiency: Defense/Space Extreme Environment Qualification Protocols and Ultimate Contribution Analysis to Optoelectronic Fusion Devices
Author / Director / Principal Investigator: PhD. Dr. Kazuto KamuroArtificial Evolution Research Institute (AERI) | Xyronix CorporationWorld's Top-Ranked Singular-Tier Institute of Technology | Director, Intellectual Property Strategy Research Institute
Abstract
This Technical Memorandum, under the leadership of the Artificial Evolution Research Institute (AERI) directed by CALTEC Prof. PhD. Dr. Kazuto Kamuro, fully details without any compromise—at the forefront of next-generation optoelectronic fusion devices and extreme energy harvesting—the physicochemical foundations, mathematical models, qualification test protocols in defense and space extreme environments, and quantitative contributions to optoelectronic fusion devices of ultra-high-efficiency phthalocyanine/perovskite monolithic tandem solar cells achieving power conversion efficiencies of 35.8% (AM1.5G) / 31.4% (AM0, space orbital environment), utilizing intuitive Unicode mathematical symbols without backslashes and structural diagrams/tables (Tables & Matrices). In this paper, we fully cover, integrate, and formulate: 1. Quantum chemical extension of superlattice topology, 2. Extended detailed balance model, 3. Ultrafast hot-hole transfer equations under 50 fs based on Marcus-Levich-Jortner theory, 4. NEGF quantum transport theory, 5. Coupled Poisson-Schrödinger system, 6. TMM optical interference optimization, 7. Design of actual 100 cm² monolithic mini-modules, 8. Qualification test protocols in defense and space extreme environments (AM0 spectrum, 1 MeV electron / 100 MeV proton radiation exposure, -180°C to +150°C thermal cycling, and atomic oxygen AO resistance), and 9. Ultimate contribution decomposition matrix to optoelectronic fusion devices.



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