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Updated: Jun 12, 2026

Solution-Processed, Surface-Engineered, Polycrystalline CdSe-SnSe Exhibiting Low Thermal Conductivity
Published on: May 17, 2024
Extracellular biosynthesis and transformation of selenium nanoparticles and application in H2O2 biosensor
Tingting Wang1, Liangbao Yang, Buchang Zhang
1The Key Laboratory of Biomimetic Sensing and Advanced Robot Technology, Anhui Province, Institute of Intelligent Machines, Chinese Academy of Science, Hefei, 230031 Anhui, PR China.
Abstract:
We reported a very simple, reliable, clean, nontoxic and eco-friendly biological method for the synthesis of semiconductor monoclinic Se nanoparticles by the Bacillus subtilis. The as-synthesized Se nanoparticles were spherical shaped with diameters ranging from 50 to 400nm. These spherical monoclinic Se nanoparticles can be transformed into highly anisotropic, one-dimensional (1D) trigonal structure after one day at the room temperature and grown from aqueous solutions. Furthermore, the obtained two kinds of Se nanomaterial crystals with high surface-to-volume ratio, good adhesive ability and biocompatibility have been employed as enhancing and settled materials for H(2)O(2) biosensor. The results show that the H(2)O(2) biosensor has high sensitivity and affinity for H(2)O(2). The detection limit for H(2)O(2) was found to be 8x10(-8)M. Different crystals of Se nanomaterials have no significant difference in electrochemical application.

