Synthesis of Nitrogen-doped Hollow Carbon Nanospheres for CO2 Capture
Overview
Affiliations
Here, we report the synthesis of nitrogen-doped hollow carbon nanospheres (N-HCSs) via a two-step Stöber method. The resultant N-HCSs possess a uniform size of ∼220 nm, a high nitrogen loading content of 14.8 wt% and a high surface area of 767 m(2) g(-1), as well as exhibit a considerable performance for CO2 capture with a capacity of 2.67 mmol g(-1) and a high selectivity in a mixture gas (N2 or O2).
Mesoporous biophotonic carbon spheres with tunable curvature for intelligent drug delivery.
Fu J, Hui T, An D, Shan W, Chen G, Wageh S Nanophotonics. 2024; 11(22):5165-5175.
PMID: 39634306 PMC: 11501982. DOI: 10.1515/nanoph-2022-0523.
Confinement of an alkaline environment for electrocatalytic CO reduction in acidic electrolytes.
Li X, Zhang P, Zhang L, Zhang G, Gao H, Pang Z Chem Sci. 2023; 14(21):5602-5607.
PMID: 37265726 PMC: 10231308. DOI: 10.1039/d3sc01040f.
Highly active N, S Co-Doped Ultramicroporous Carbon for High-Performance Supercapacitor Electrodes.
Lu W, Hao L, Wang Y Micromachines (Basel). 2022; 13(6).
PMID: 35744519 PMC: 9228602. DOI: 10.3390/mi13060905.
Liu B, Li H, Ma X, Chen R, Wang S, Li L RSC Adv. 2022; 8(68):38965-38973.
PMID: 35558315 PMC: 9090663. DOI: 10.1039/c8ra05523h.
Zhang Z, Sun N, Wei W, Sun Y RSC Adv. 2022; 8(38):21460-21471.
PMID: 35539923 PMC: 9080950. DOI: 10.1039/c8ra03349h.