nitrogen functionalization
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Energies ◽  
2020 ◽  
Vol 13 (19) ◽  
pp. 4998
Author(s):  
G. Calcagno ◽  
M. Agostini ◽  
S. Xiong ◽  
A. Matic ◽  
A. E. C. Palmqvist ◽  
...  

Designing carbonaceous materials with heightened attention to the structural properties such as porosity, and to the functionalization of the surface, is a growing topic in the lithium-ion batteries (LIBs) field. Using a mesoporous silica KIT-6 hard template, mesoporous carbons belonging to the OMCs (ordered mesoporous carbons) family, namely 3D cubic CMK-8 and N-CMK-8 were synthesized and thoroughly structurally characterized. XPS analysis confirmed the successful introduction of nitrogen, highlighting the nature of the different nitrogen atoms incorporated in the structure. The work aims at evaluating the electrochemical performance of N-doped ordered mesoporous carbons as an anode in LIBs, underlining the effect of the nitrogen functionalization. The N-CMK-8 electrode reveals higher reversible capacity, better cycling stability, and rate capability, as compared to the CMK-8 electrode. Coupling the 3D channel network with the functional N-doping increased the reversible capacity to ~1000 mAh·g−1 for the N-CMK-8 from ~450 mAh·g−1 for the undoped CMK-8 electrode. A full Li-ion cell was built using N-CMK-8 as an anode, commercial LiFePO4, a cathode, and LP30 commercial electrolyte, showing stable performance for 100 cycles. The combination of nitrogen functionalization and ordered porosity is promising for the development of high performing functional anodes.


2020 ◽  
Vol 6 (3) ◽  
pp. 56
Author(s):  
María José Mostazo-López ◽  
Ramiro Ruiz-Rosas ◽  
Tomomi Tagaya ◽  
Yoshikiyo Hatakeyama ◽  
Soshi Shiraishi ◽  
...  

Nitrogen functionalization of a highly microporous activated carbon (SBET > 3000 m2/g), to be used as electrode of electric double layer capacitor (EDLC), was carried out by different methods based on organic chemistry protocols at low temperature and selective thermal post-treatments under inert atmosphere. The combination of both methods allowed the production of carbon materials with very similar surface area (2400–3000 m2/g) and different surface chemistry. The nitrogen functionalization by chemical methods produce the attachment of 4 at. % N (XPS) by consumption of oxygen functional groups. The thermal treatments rearrange the surface chemistry by decreasing and converting both nitrogen and oxygen moieties. The effect of surface chemistry on the performance of these materials as electrodes for symmetric supercapacitors was analyzed in organic electrolyte (1M TEMABF4/propylene carbonate). The devices showed high gravimetric capacitance (37–40 F/g) and gravimetric energy density (31–37 Wh/kg). The electrochemical stability of the EDLC was evaluated by a floating test under severe conditions of voltage and temperature. The results evidence an improvement of the durability of nitrogen-doped activated carbons modified by chemical treatments due to the decrease of detrimental oxygen functionalities and the generation of nitrogen groups with higher electrochemical stability.


2020 ◽  
Vol 241 ◽  
pp. 116702 ◽  
Author(s):  
Julia Raudlatul Jannah Zaeni ◽  
Jun-Wei Lim ◽  
Zhaohui Wang ◽  
Dahu Ding ◽  
Yong-Shen Chua ◽  
...  

2020 ◽  
Vol MA2020-01 (8) ◽  
pp. 735-735
Author(s):  
Michel Côté ◽  
Olivier Malenfant-Thuot

2020 ◽  
Vol 8 (2) ◽  
pp. 700-705 ◽  
Author(s):  
Siyong Gu ◽  
Chien-Te Hsieh ◽  
Bikash Chandra Mallick ◽  
Yasser Ashraf Gandomi ◽  
Jeng-Kuei Chang ◽  
...  

Nitrogen functionalization on graphene sheets has solely been demonstrated with a stepwise amidation implementation within the literature.


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