Probing effective photocorrosion inhibition and highly improved photocatalytic hydrogen production on monodisperse PANI@CdS core-shell nanospheres
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文摘

PANI@CdS core-shell nanospheres via a proton doped in-situ polymerization technique.

PANI@CdS core-shell nanospheres demonstrate highly enhanced photocorrosion inhibition and photocatalytic hydrogen production.

C<font color=single bond" data-inlimg="/entities/sbnd" src="/sd/grey_pxl.gif" class="glyphImg imgLazyJSB">S and/or N<font color=single bond" data-inlimg="/entities/sbnd" src="/sd/grey_pxl.gif" class="glyphImg imgLazyJSB">Cd bonds are newly formed between PANI shell and CdS core, leading to enhanced photocorrosion inhibition.

The photogenerated holes migrate from VB of CdS to HOMO of PANI, leading to enhanced photocatalytic hydrogen production.

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