Magic-Angle Graphene Alignment Consulting
Budget: $250 – $750 USD
Title: R&D Physics Consultant for Scalable Magic-Angle Graphene Alignment (0.1° / 1.1°)
Project Description:
We are NeoHub Line, a deeptech startup engineering an advanced circular energy and material ecosystem. We are entering Phase 1 R&D for our autonomous floating factory network. Our proprietary core technology utilizes an atmospheric-pressure Microwave Plasma Torch (TIA) to synthesize high-purity graphene from upcycled hydrocarbon gases in a continuous industrial flow.
We are seeking a highly specialized Condensed Matter Physicist, Material Scientist, or Nanotechnology Engineer to conduct a 2-hour theoretical feasibility consulting session.
The core focus of this consultation is to evaluate methods for achieving and controlling precise sub-degree moiré crystal alignments (specifically targeting the "magic angle" orientations down to 0.1° - 1.1° boundaries) at a scalable, industrial continuous-flow production level, shifting away from micro-scale laboratory substrate mechanical rotation.
Required Expertise:
- Strong background in Condensed Matter Physics, Nanotechnology, or Advanced Materials Engineering.
- Deep understanding of Moiré Superlattices, Twisted Bilayer Graphene (TBG), and turbostratique alignment mechanics.
- Familiarity with gas-phase synthesis, plasma enhanced chemical vapor deposition (PECVD), or microwave plasma nucleation dynamics.
- Ability to provide high-level insights on automated structural alignment or magnetic/aerodynamic orientation techniques during continuous flake deposition.
Project Deliverables (Fixed-Price Milestone - $200):
1. A strict Non-Disclosure Agreement (NDA) must be signed via Freelancer chat prior to sharing proprietary layout concepts.
2. A 2-hour live technical consulting and brainstorming session via Freelancer call/chat.
3. A brief technical summary report outlining the suggested physics pathways, aerodynamic/magnetic boundary conditions, and recommendation of simulation software (e.g., COMSOL, LAMMPS) for the next phase.
Note: This is a purely theoretical assessment and feasibility study. No physical prototype fabrication or handling is required for this milestone.
Project Description:
We are NeoHub Line, a deeptech startup engineering an advanced circular energy and material ecosystem. We are entering Phase 1 R&D for our autonomous floating factory network. Our proprietary core technology utilizes an atmospheric-pressure Microwave Plasma Torch (TIA) to synthesize high-purity graphene from upcycled hydrocarbon gases in a continuous industrial flow.
We are seeking a highly specialized Condensed Matter Physicist, Material Scientist, or Nanotechnology Engineer to conduct a 2-hour theoretical feasibility consulting session.
The core focus of this consultation is to evaluate methods for achieving and controlling precise sub-degree moiré crystal alignments (specifically targeting the "magic angle" orientations down to 0.1° - 1.1° boundaries) at a scalable, industrial continuous-flow production level, shifting away from micro-scale laboratory substrate mechanical rotation.
Required Expertise:
- Strong background in Condensed Matter Physics, Nanotechnology, or Advanced Materials Engineering.
- Deep understanding of Moiré Superlattices, Twisted Bilayer Graphene (TBG), and turbostratique alignment mechanics.
- Familiarity with gas-phase synthesis, plasma enhanced chemical vapor deposition (PECVD), or microwave plasma nucleation dynamics.
- Ability to provide high-level insights on automated structural alignment or magnetic/aerodynamic orientation techniques during continuous flake deposition.
Project Deliverables (Fixed-Price Milestone - $200):
1. A strict Non-Disclosure Agreement (NDA) must be signed via Freelancer chat prior to sharing proprietary layout concepts.
2. A 2-hour live technical consulting and brainstorming session via Freelancer call/chat.
3. A brief technical summary report outlining the suggested physics pathways, aerodynamic/magnetic boundary conditions, and recommendation of simulation software (e.g., COMSOL, LAMMPS) for the next phase.
Note: This is a purely theoretical assessment and feasibility study. No physical prototype fabrication or handling is required for this milestone.