Teng Zhang
17 articles listing Teng Zhang in Nature Communications, Science Advances, Nature, Science, indexed by Paperzzz from Crossref and OSF.
- Author Correction: Photothermal effects control ultrafast charge transport in titanium carbide MXenes Nature Communications
- A sub–10-millisecond neural dynamical system based on phase-change memristors Science
- Homeostatic dendritic neuron based on co-integrated volatile and non-volatile memristors for neuromorphic processing Nature Communications
- Magnetic coupling transforms random snapping into ordered sequences in soft metamaterials Science Advances
- A bionic robotic trunk with tensegrity-enabled elephant-comparable stiffness variability for assisted daily living Nature Communications
- Homogeneous integration of two-dimensional material-based optoelectronic neurons and ferroelectric synapses for neuromorphic vision Nature Communications
- Photothermal effects control ultrafast charge transport in titanium carbide MXenes Nature Communications
- Exciplex-enabled high-efficiency, fully stretchable OLEDs Nature
- High-concurrency tri-mode memristor-based ordinary differential equation solver Nature Communications
- Decatungstate-photocatalyzed transfer hydrogenation of unsaturated compounds using alcohol as the hydrogen source Nature Communications
- Dynamic control of molecular transport MXene transistor membranes Science Advances
- High-capacity directional information processor using all-optical multilayered neural networks Science Advances
- Deep learning-enabled ultra-broadband terahertz high-dimensional photodetector Nature Communications
- Spatially patterned stiffness variation in a light-triggered jumper for symmetry breaking and high snap-through efficiency Science Advances
- Conductivity hysteresis in MXene driven by structural dynamics of nanoconfined water Nature Communications
- Unusual charge density wave introduced by the Janus structure in monolayer vanadium dichalcogenides Science Advances
- Polarization-selective unidirectional and bidirectional diffractive neural networks for information security and sharing Nature Communications