The novel LLNL technique uses electric fields to drive and control assembly. In the literature such methods have heretofore only formed disordered ensembles. This innovative method increases local nanocrystal concentration, initiating nucleation and growth into ordered superlattices. Nanocrystals remain solvated and mobile throughout the process, allowing fast fabrication of ordered…
Keywords
- Show all (49)
- Synthesis and Processing (19)
- Additive Manufacturing (7)
- Materials for Energy Products (6)
- Material Design (4)
- 3D Printing (2)
- Membranes (2)
- Rare Earth Elements (REEs) (2)
- Additively Manufactured (AM) Optics (1)
- Direct Air Capture (1)
- Magnet Compositions (1)
- Material Characterization (1)
- Structural Materials (1)
- (-) Instrumentation (1)
- (-) Multilayers (1)
Technology Portfolios
Image

Dubbed the "LLNL Chemical Prism", the LLNL system has use wherever there is a need to separate components of a fluid. A few examples include:
- Chemical detection for known and previously unknown chemicals or substances
- Separation of biomolecules from a cellular extract
- Fractionation of a complex mixture of hydrocarbons
- Forensic analysis of…