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GPC Science and IP — Patents and Research Papers
SCIENCE & IP
SCIENCE & IP
22 papers. One framework.

GPC is not a product claim — it is a published scientific framework with a formal international patent family. Each application domain has a dedicated paper and dedicated claim coverage.

Patent Family
PCT/TR2025/051176 — Patent Pending
USPTO 19/298,223 — Patent Pending
Priority Date: July 23, 2025
PCT
Patent Pending
USPTO
Patent Pending
22
Papers
Publication Series

All papers have been submitted to peer-reviewed journals. Paper XII published — Electrochimica Acta (April 2026) · DOI: 10.1016/j.electacta.2026.148858 Published links will be added upon acceptance. PDF preprints available via Zenodo.

PAPER 0 — FRAMEWORK
↓ PDFzView on Zenodo ↗
Generated Pattern Current: A Unified Framework for Electrochemical Process Control

Establishes the theoretical foundation of GPC. The pattern shape is the design variable. Surveys all application domains and establishes the mathematical framework used across all subsequent papers.

Foundation
PAPER I
↓ PDFzView on Zenodo ↗
GPC-Based Electrochemical Cell Formation Protocol: Interface Layer-Controlled Initial Activation via Dynamic Defined Pattern Charging (DDPC)

SEI forms once. GPC controls its nucleation — reducing formation time 40–60%, scrap rate 8%→2%, extending cycle life +67%. Primary commercial target for battery manufacturers.

Battery Formation
PAPER II
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GPC Pattern-Based Charging and Long-Term Lifetime Management: Electrochemical Stress Reduction Through Generated Pattern Current Control

Electrochemical stress reduction through temporal current shaping. Peak ΔT: 32°C → 10°C. SoH at 200k km: 78% → 92%. In-field optimization protocol for deployed packs.

Fast Charging
PAPER III
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GPC Energy Station: Grid-Independent EV Charging via Temporal Power Multiplexing and Multi-Source GPC Coordination

Breaks proportionality between charger count and peak grid demand. Phase-shifted charging patterns across vehicles. Peak demand −20–30%. No substation upgrade required.

Energy Station
PAPER IV
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GPC Pattern-Based First Charge Protocol: SOC Equalization and Stress Management at Module and Pack Level

The critical 30%→100% commissioning charge. GPC precision aligns module behavior pre-seal, reducing OEM rework and warranty exposure. Divergence equalization before BMS sealing.

Pack Commissioning
PAPER V
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Generated Pattern Current for Photovoltaic Cell and Module Activation: Defect Stabilization Kinetics via Controlled Carrier Injection

Structured current excitation for p-n junction conditioning. Activates carrier mobility and mitigates light-induced degradation and potential-induced degradation effects.

PV Systems
PAPER VI
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Generated Pattern Current for PEM Fuel Cell MEA Conditioning: Accelerated Break-In via Controlled Hydration and Catalyst Activation

Pattern-controlled break-in for membrane electrode assembly. Uniform hydration, progressive catalyst activation, controlled overpotential distribution. Reduces conditioning time and extends MEA lifetime.

Fuel Cells
PAPER VII
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Generated Pattern Current for Hybrid Capacitor Production Activation: Pore Access, Contact Stabilization, and Electrode Balancing

Dual-mechanism charge storage aligned through temporal pattern control. Addresses fundamentally different time constants of faradaic and EDLC storage in a single protocol.

HyCap
PAPER VIII
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Generated Pattern Current for Power Semiconductor Device Conditioning: Interface Stabilization, Defect Annealing, and Parametric Drift

Pattern-driven dopant activation and defect healing across device terminals. Electrical complement or replacement for thermal annealing in power semiconductor conditioning.

Semiconductor
PAPER IX
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Generated Pattern Current for Electroplating and Etching: Grain Control, Dendrite Suppression, and Surface Morphology Engineering

Temporal current structure for nucleation kinetics control. Improved grain size, deposit uniformity, and adhesion. Selectivity and removal rate control in etching applications.

Industrial
PAPER X
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Generated Pattern Current for Electrolysis: Bubble Management, Mass Transport Enhancement, and Energy Efficiency in Hydrogen Production

Pattern-driven overpotential reduction and HER/OER selectivity improvement for PEM and alkaline electrolyzers. Increased hydrogen output per kWh. Extended membrane lifetime.

Green H₂
PAPER XI
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Generated Pattern Current for Anodizing: Pore Ordering, Oxide Morphology, and Thermal Stability Control

GPC controls pore geometry and barrier thickness during anodic oxide growth on aluminium, titanium, and niobium — enabling application-specific coatings for aerospace, medical, and semiconductor end-use.

Anodizing
✓ PUBLISHED — PEER REVIEWED
Electrochimica Acta · EA_148858 · Published April 2026
PAPER XII
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Generated Pattern Current for Electro-Dissolution: Surface Leveling, Precision Material Removal, and Dissolution Stability

Pattern control of local dissolution rate and surface uniformity in ECM and electropolishing applications — tighter dimensional tolerance and smoother finishes than DC or conventional pulsed processes.

Electro-Dissolution
PAPER XIII
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Generated Pattern Current for Electrochemical Exfoliation: Layer Separation Control, Flake Size Optimization, and Structural Quality

Intercalation and exfoliation as distinct GPC-controlled phases. Single-layer yield maximization, defect density reduction in scalable 2D material production.

Advanced Materials
PAPER XIV
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Temporal Energy Structuring in Fusion Systems: From Electrochemistry to Plasma Physics — Conceptual Extension of the GPC Paradigm

Temporal energy delivery shaping at megajoule scale. Reduces stress loading on capacitor banks. Stabilizes plasma heating and magnetic confinement discharge envelopes.

Fusion
PAPER XV
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Generated Pattern Current for Electrochemical Synthesis: Pattern–Interface Interaction, Reaction Selectivity, and Multi-Scale Control

Pattern-driven HER suppression, product selectivity enhancement, and catalyst surface stabilization. Improved Faradaic efficiency in green chemistry applications.

Green Chemistry
PAPER XVI
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Generated Pattern Current for Space and Defense Power Systems

Pattern-based current control for satellite battery conditioning, defense-grade power delivery and radiation-hardened electrochemical systems.

Space · Defense
PAPER XVII
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Generated Pattern Current for Electrochemical Textile Processing: Dyeing Uniformity, Surface Activation, Functional Finishing

Applying GPC to electrochemical dyeing, conductive fiber activation, and smart textile surface treatment for uniform coating and reduced process waste.

Textile · Smart Fiber
PAPER XVIII
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Generated Pattern Current in Electrochemical Water Treatment: Overcoming DC Limitations in Electrocoagulation, Electrooxidation, and Electrodialysis

Temporal current structuring for electrocoagulation, electrooxidation, and disinfection — improving efficiency and selectivity in industrial wastewater treatment.

Water · Environment
PAPER XIX
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Generated Pattern Current for Neurostimulation: Overcoming Constant-Current Limitations in Neural Interface Excitation and Charge Injection

GPC applied to neural stimulation waveform design — enabling charge-balanced, tissue-safe patterns that adapt to electrode impedance in real time.

Biomedical · Neural
PAPER XX
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Generated Pattern Current in Impressed Current Cathodic Protection: Overcoming Direct Current Limitations in Pipeline and Marine Structure Corrosion Mitigation

Pattern-controlled cathodic protection for pipelines, marine structures and rebar — improving protection efficiency and reducing current consumption over DC methods.

Infrastructure · Marine
PAPER XXI
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Generated Pattern Current for Piezoelectric Domain Poling: Overcoming Static Electric Field Limitations in Ferroelectric Ceramic and Polymer Film Activation

Controlled temporal current patterns for piezoelectric ceramic and polymer poling — achieving higher remnant polarization and more uniform domain alignment than DC poling.

Piezo · Sensors