Synthetic Electronics Laboratory
Towards electronics, in a chemistry way
Synthetic Electronics (SynE) aims to design and synthesize hybrid and heterostructures of semiconductors at the nanometer and quantum scales, exploring the size limits of transistors and providing a possible chemical approach to building micro/nano devices for the post-Moore era.

Qingqing Ji
Assistant Professor / PI
Research More >
Design and synthesis of semiconductor hybrid/heterostructures at the nanometer and atomic scales, exploring the scaling limits of electronic devices via chemistry and materials engineering.
Lab News More >
- 2026-06-18 research Liberating birefringence in MOFs
- 2026-02-09 activities Welcome the Year of Horse!
- 2025-12-15 research 6-inch graphene and devices
- 2025-10-14 research Quantum dot memories
- 2025-04-14 research Phase engineering of GaTe atomic layers
- 2025-03-25 activities SynE Group Tour to Disneyland!
Publications More >
*Corresponding author; #Co-first author; Bold names: SynE members
- 41Bias-Dependent Noise Spectroscopy Reveals Contact-Noise Suppression and Hot-Carrier Dynamics in Conductive MOF Single Crystals
Submitted - 40An Encoded Asymmetric Ligand for Metal-Selective Topological Assembly of Two-Dimensional Metal–Organic Frameworks
Submitted - 39Sub-Attojoule Switching at Ultralow Voltage in Two-Dimensional Bismuth Oxyiodide Memristor with Reconfigurable Volatility and Non-Volatility
Submitted - 38Revealing the Boltzmann Sigmoidal Activation by Iodide for Tunable Vanadium Doping in Monolayer MoS2
In revision - 37Chirality-dependent Electrical Characteristics of MoS2 Nanoscroll Transistors
In revision
