Rigid-Flexible Layered Immobilization Enables Precise Confinement
A rigid-flexible layered immobilization strategy addresses small enzymes'' (10–50 kDa) unstable binding and low activity in immobilization. It balances stability and accessibility via
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A rigid-flexible layered immobilization strategy addresses small enzymes'' (10–50 kDa) unstable binding and low activity in immobilization. It balances stability and accessibility via
A leavening-inspired strategy synthesizes diverse mesoporous high-entropy oxide nanozymes with large pores and high surface areas, overcoming high-temperature collapse. These materials exhibit
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Small continues to be among the top multidisciplinary journals covering a broad spectrum of topics at the nano- and microscale at the interface of materials science, chemistry, physics, engineering,
Mg-based hydrides, though promising for hydrogen storage, face thermodynamic and kinetic challenges. This review highlights three improvement strategies: alloying to weaken Mg─H
Small Methods is a nanoscience & nanotechnology journal focusing on significant advances in any and all methods applicable to nano- and microscale research. The journal covers all areas of chemistry,
Small is a nanoscience & nanotechnology journal providing the very best forum for fundamental and interdisciplinary applied research at the nano- and microscale, covering chemistry, energy, physical
Volume 22, Issue 12 Special Issue: Advanced Energy and Functional Materials