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    <responseDate>2026-10-10T13:22:41Z</responseDate>
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    <identifier>10.57760/sciencedb.34077</identifier>
    <datestamp>2026-04-17T15:35:38Z</datestamp>
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  <dc:date>2026-04-17</dc:date>
  <dc:title>2D/2D Ni-MoS2/C3N5 II-type Heterojunction with Interfacial Synergy for Enhanced Photocatalytic H2 Evolution</dc:title>
  <dc:identifier>doi:10.57760/sciencedb.34077</dc:identifier>
  <dc:language>en</dc:language>
  <dc:description>	XPS: Surface elemental composition was determined by X-ray photoelectron spectroscopy (XPS, AXIS Ultra DLD);   FTIR: Fourier transform infrared (FTIR) spectroscopy was performed using a Nicolet iS50 spectrometer to analyze the structure and properties of the molecules.	AC-HAADF-STEM: The surface morphology was characterized using aberration-corrected high-angle annular dark-field scanning transmission electron microscopy (AC-HAADF-STEM, JEOL arm 200F);	XRD: The crystalline structure of the prepared samples was analyzed using X-ray diffraction (XRD, D8 Advance) with Cu K&amp;alpha; radiation;	UV: Ultraviolet-visible diffuse reflectance spectra (UV-vis DRS) were recorded with a UV-3600 Plus spectrophotometer, using barium sulfate as the reference;	I-t 、 EIS and LSV:,the catalytic activity was investigated through photoelectrochemical analysis, I-t and EIS were conducted using a CHI 650e potentiostat (Shanghai Chenhua).</dc:description>
  <dc:subject>C3N5; Single-atom; Photocatalytic hydrogen evolution</dc:subject>
  <dc:creator>Houde She</dc:creator>
  <dc:rights>PUBLIC</dc:rights>
  <dc:rights>https://creativecommons.org/licenses/by/4.0/</dc:rights>
  <dc:type>dataset</dc:type>
  <dc:publisher>Science Data Bank</dc:publisher>
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