Exploring the production and storage of hydrogen energy using graphitic carbon nitride (g-C3N4)

被引:1
|
作者
Elemike, Elias Emeka [1 ]
Onunkwo, Innocent Chukwujekwu [2 ]
Ididama, Oghenenyerhovwo Emegboro [1 ]
Okorodudu, Oghenetega Emmanuel [3 ]
Okogbenin, Ifeanyichukwu Paulina [1 ]
Egbele, Orhorhom Regina [4 ]
Hitler, Louis [1 ]
Anwani, Samuel Egwu [1 ]
Udowa, Omotekoro Emily [5 ]
Ushurhe, Zainab Ochanya [1 ]
Awikpe-Harrison, Harriet [6 ]
Muazu, Ibrahim [1 ]
Aziza, Andrew E. [7 ]
机构
[1] Fed Univ Petr Resources, Dept Chem, Effurun, Delta State, Nigeria
[2] Nigeria Maritime Univ, Dept Chem, Okerenkoko, Delta State, Nigeria
[3] Dennis Osadebay Univ, Dept Ind Chem, Anwai Asaba, Delta, Nigeria
[4] Delta State Coll Educ, Dept Chem, Mosogar, Delta State, Nigeria
[5] Delta State Coll Educ, Dept Chem, Warri, Delta State, Nigeria
[6] Delta State Polytech, Dept Sci Lab Technol, Otefe Oghara, Delta, Nigeria
[7] Petr Training Inst, Dept Sci Lab Technol, Effurun, Delta state, Nigeria
关键词
Energy storage; graphitic carbon nitride; Hydrogen; Semiconductor; Band gap; PHOTOCATALYTIC H-2 EVOLUTION; DOPED G-C3N4; (G-C3N4)-BASED PHOTOCATALYSTS; MESOPOROUS G-C3N4; FACILE SYNTHESIS; ENVIRONMENTAL REMEDIATION; CONTROLLABLE SYNTHESIS; ULTRATHIN NANOSHEETS; CYAMELURIC ACID; HIGH-PRESSURE;
D O I
10.1016/j.ijhydene.2024.05.174
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The generation of energy using fossil fuels is not environmentally friendly and therefore causes climate change issues. Hence, exploration of avenues for the production of clean and efficient energy is on the rise. A nonmetal- based semiconductor material called graphitic carbon nitride (g-C3N4 3 N 4 or g-CN) is currently gaining tractions because of exceptional and interesting characteristics such as increased stability (chemical and thermal), unique bandgap energy and valence band, effective conductivity, and cost-effectiveness. This review work has thrown more light on graphitic carbon nitride in relation to hydrogen energy production and storage while taking into consideration the background, synthetic routes and optimisation of this non-metallic semiconductor. Furthermore, the work explored a number of studies on applications, hydrogen energy storage mechanisms, modelling, drawbacks and objective perspectives as it relates to efficient hydrogen energy production and storage. The efficiency, sustainability and commercialization become the driving force for future improvement in this technology.
引用
收藏
页码:212 / 232
页数:21
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