Shanshan Jiang

University of Nottingham, Ningbo - University of Nottingham Ningbo China

199 Taikang East Road

Ningbo, 315100

China

SCHOLARLY PAPERS

3

DOWNLOADS

49

TOTAL CITATIONS

1

Scholarly Papers (3)

1.

Facile Synthesis of Camellia Oleifera Shell–Reduced Graphene Oxide and Mechanistic Insights into its Adsorption of Copper (Ii)

Number of pages: 34 Posted: 25 Sep 2023
University of Nottingham, Ningbo - University of Nottingham Ningbo China, University of Nottingham, Ningbo - University of Nottingham Ningbo China, University of Nottingham, Ningbo - University of Nottingham Ningbo China, University of Nottingham, Ningbo - University of Nottingham Ningbo China, South-Central Minzu University, Ningbo (Beilun) Zhongke Haixi Industrial Technology Innovation Center, University of Nottingham, Ningbo - University of Nottingham Ningbo China, University of Nottingham, Ningbo - University of Nottingham Ningbo China and University of Nottingham, Ningbo - Department of Chemical and Environmental Engineering
Downloads 18 (1,189,674)

Abstract:

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Cu(II), reduced graphene oxide, Camellia oleifera shell, green synthesis, ADSORPTION

2.

Mechanistic Insights into Cu(Ii) Removal from Aqueous Solution by Camellia Oleifera Shell–Reduced Graphene Oxide

Number of pages: 27 Posted: 23 May 2023
University of Nottingham, Ningbo - University of Nottingham Ningbo China, University of Nottingham, Ningbo - University of Nottingham Ningbo China, University of Nottingham, Ningbo - University of Nottingham Ningbo China, University of Nottingham, Ningbo - University of Nottingham Ningbo China, South-Central Minzu University, Ningbo (Beilun) Zhongke Haixi Industrial Technology Innovation Center, University of Nottingham, Ningbo - University of Nottingham Ningbo China, University of Nottingham, Ningbo - University of Nottingham Ningbo China and University of Nottingham, Ningbo - Department of Chemical and Environmental Engineering
Downloads 18 (1,189,674)

Abstract:

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Cu (II), Reduced Graphene oxide, Camellia oleifera shell, Green synthesis, Adsorption, Water pollution

3.

Facile Synthesis of Multi-Layer Co(Oh)2/Ceo2-G-C3n4 Ternary Synergistic Heterostructure for Efficient Photocatalytic Oxidation of No Under Visible Light

Number of pages: 37 Posted: 23 Jun 2023
University of Nottingham, Ningbo - University of Nottingham Ningbo China, University of Nottingham, Ningbo - University of Nottingham Ningbo China, University of Nottingham, Ningbo - University of Nottingham Ningbo China, Chinese Academy of Sciences (CAS) - Xiamen Key Laboratory of Materials for Gaseous Pollutant Control, University of Nottingham, Ningbo - University of Nottingham Ningbo China, University of Nottingham, Ningbo - University of Nottingham Ningbo China, Ningbo (Beilun) Zhongke Haixi Industrial Technology Innovation Center, University of Nottingham, Ningbo - University of Nottingham Ningbo China, South-Central Minzu University, University of Nottingham, Ningbo - University of Nottingham Ningbo China, University of Nottingham and University of Nottingham, Ningbo - Department of Chemical and Environmental Engineering
Downloads 13 (1,249,364)
Citation 1

Abstract:

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Ternary heterostructure, Co(OH)2/CeO2-g-C3N4, NO photocatalytic oxidation, Z-scheme heterostructure