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Gas exfoliation induced N, S-doped porous 2D carbon nanosheets for effective removal of copper ions by capacitive deionization

Wu, Guoqing (author)
Guangzhou Univ, Peoples R China
Wang, Hongyu (author)
Guangzhou Univ, Peoples R China
Huang, Linzhe (author)
Guangzhou Univ, Peoples R China
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Huang, Lei (author)
Guangzhou Univ, Peoples R China
Yan, Jia (author)
Guangzhou Univ, Guangzhou Univ Linkoping Univ Res Ctr Urban Sustai, Guangzhou 510006, Peoples R China; Guangzhou Univ, Peoples R China
Chen, Xuanxuan (author)
Guangzhou Univ, Peoples R China
Xiao, Yao (author)
Guangzhou Univ, Peoples R China
Liu, Xianjie (author)
Linköpings universitet,Laboratoriet för organisk elektronik,Tekniska fakulteten
Zhang, Hongguo (author)
Guangzhou Univ, Guangzhou Univ Linkoping Univ Res Ctr Urban Sustai, Guangzhou 510006, Peoples R China; Guangzhou Univ, Peoples R China; Guangzhou Univ, Peoples R China
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 (creator_code:org_t)
ELSEVIER, 2023
2023
English.
In: Desalination. - : ELSEVIER. - 0011-9164 .- 1873-4464. ; 565
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • Using capacitive deionization to remove heavy metal ions from water has received much attention, but the inferior salt adsorption capacity (SAC) of electrode materials has always limited its practical application. Herein, N, S co-doped two-dimensional (2D) porous glucose derived carbon nanosheets (NSPGC) was successfully fabricated, utilizing the gas exfoliation by calcination of thiourea. The NSPGC demonstrates distinct 2D lamellas, high specific surface area (2529 m2 g-1), hierarchical pore structure and high wettability. In electrochemical tests, a high specific capacitance (127 F g-1) and electrons/ions transport performance can be achieved in the NSPGC, moreover it showed a prominent SAC of 206.57 mg g-1 and recoverability in 100 mg L-1 CuSO4 solution. Moreover, the density functional theory (DFT) calculation manifested the intrinsic affinity of Cu2+ improved by N, S co-doping, which played an essential role in enhancing the Cu2+ removal performance of CDI. Our work provided a new insight into the preparation of high-performance CDI electrode materials for Cu2+ removal and promoted the application of CDI in heavy metal wastewater.

Subject headings

NATURVETENSKAP  -- Kemi -- Analytisk kemi (hsv//swe)
NATURAL SCIENCES  -- Chemical Sciences -- Analytical Chemistry (hsv//eng)

Keyword

Capacitive deionization; Cu2+; N S co-doped; Two-dimensional porous carbon nanosheet; High adsorption capacity

Publication and Content Type

ref (subject category)
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