Xiaodong Li
16 articles listing Xiaodong Li in Nature Communications, Global Environmental Change: Human and Policy Dimensions, Science Advances, Scientific Data, indexed by Paperzzz from Crossref and OSF.
- Cryogenic photomotion enabled by phonon-engineered sp–sp2 carbon frameworks via reversible photothermal buoyancy switching Nature Communications
- Modulating nonequilibrium electron–phonon interactions and energy relaxation in MXenes by surface-anchored Mo3S7 nanoclusters Nature Communications
- Retraction Note: Targeted production of reactive oxygen species in mitochondria to overcome cancer drug resistance Nature Communications
- On-demand linkage cleavage in two-dimensional conjugated metal-organic frameworks for closed-loop recyclable electronics Science Advances
- Pulsed electrosynthesis orthogonally optimizes C‒N coupling and hydrogenation for amine production with a molecular catalyst Nature Communications
- Sustainable recycling of polyester wastes using a coordinatively unsaturated Zn catalyst Nature Communications
- Unveiling small-scale tropical forest loss and post-loss recovery in the Congo Basin Global Environmental Change: Human and Policy Dimensions
- Reversible crosslinking strategy for dynamic strain regulation in inverted perovskite solar cells Nature Communications
- Chromosome-level genome assembly of mud snail Bullacta exarata Scientific Data
- Diketopyrrolopyrrole-based two-dimensional poly(arylene vinylene)s with high charge carrier mobility Nature Communications
- Glass formation in hybrid metal halides via breaking molecular rotational order Nature Communications
- A tin fluoride-free, efficient and durable tin-lead perovskite solar cell Nature Communications
- Two-dimensional magnetic tunnel p-n junctions for low-power electronics Nature Communications
- Facet-dependent adsorbate-mediated strong metal-support interaction in Ni/TiO2 Nature Communications
- Designing multi-metal-site nanosheet catalysts for CO2 photoreduction to ethylene Nature Communications
- Hydrate-melt electrolyte design for aqueous aluminium-bromine batteries with enhanced energy-power merits Nature Communications