Matches in SemOpenAlex for { <https://semopenalex.org/work/W3134694908> ?p ?o ?g. }
- W3134694908 endingPage "110849" @default.
- W3134694908 startingPage "110849" @default.
- W3134694908 abstract "The demand for sustainable energy storage and production is vital and continues to grow with increasing human population. Energy utilization and environmental protection demand urgent attention in the development of energy devices, including the expansion and assessment of earth abundant and inexpensive materails. Recently, two-dimensional (2D) structured graphene has emerged as an outstanding energy material due to its excellent physicochemical properties, for example, high thermal and electrical conductivity, high surface area, strong mechanical strength, and an excellent chemical stability. However, pure graphene has a band gap of zero significantly limiting its application as a material. Among the various approaches used to alter the properties of graphene is doping with a heteroatom, which has been shown to be an efficient process in tailoring the properties of 2D-graphene. Heteroatom-doped graphene has several improved physicochemical properties, making graphene a favorable material for application in various fields. In this review, we report the usage and advancement of heteroatom-doped graphene materials in various energy conversion and storage technologies, including supercapacitors, batteries, dye-sensitized solar cells, and hydrogen production from electrocatalytic water splitting. Furthermore, we have also highlighted the recent developments made to date and systematically discuss physicochemical mechanisms, and the precise advantages obtained by the doping of heteroatoms. Finally, the challenges and future perspectives for heteroatom-doped graphene materials are outlined. The information provided in this review should be useful to any researchers involved in the field of graphene research for wide-ranging applications, and structural-oriented (morphology, structure, size and composition) research. • Progression of heteroatom-doped graphene materials in energy fields is overviewed. • Synergistic effects of heteroatoms with graphene are highlighted in energy application. • Developments on synthetic strategies for the fabrication of materials are described. • Challenges for heteroatom-doped graphene in energy fields are mentioned. • Effective electrochemical properties and future perspectives are discussed." @default.
- W3134694908 created "2021-03-15" @default.
- W3134694908 creator A5009171969 @default.
- W3134694908 creator A5036318597 @default.
- W3134694908 creator A5050339561 @default.
- W3134694908 creator A5067975222 @default.
- W3134694908 creator A5073589554 @default.
- W3134694908 creator A5075691160 @default.
- W3134694908 creator A5077426385 @default.
- W3134694908 creator A5082353856 @default.
- W3134694908 creator A5088167606 @default.
- W3134694908 date "2021-06-01" @default.
- W3134694908 modified "2023-10-16" @default.
- W3134694908 title "Heteroatom-doped graphene-based materials for sustainable energy applications: A review" @default.
- W3134694908 cites W1015432511 @default.
- W3134694908 cites W1528570072 @default.
- W3134694908 cites W1617773038 @default.
- W3134694908 cites W1908645310 @default.
- W3134694908 cites W1912218243 @default.
- W3134694908 cites W1919804376 @default.
- W3134694908 cites W1965148167 @default.
- W3134694908 cites W1977410312 @default.
- W3134694908 cites W1986829915 @default.
- W3134694908 cites W1993351876 @default.
- W3134694908 cites W1995153685 @default.
- W3134694908 cites W1996182440 @default.
- W3134694908 cites W1996286508 @default.
- W3134694908 cites W1996613396 @default.
- W3134694908 cites W2005476131 @default.
- W3134694908 cites W2006940765 @default.
- W3134694908 cites W2007441692 @default.
- W3134694908 cites W2009734832 @default.
- W3134694908 cites W2013626338 @default.
- W3134694908 cites W2014935324 @default.
- W3134694908 cites W2015673981 @default.
- W3134694908 cites W2016365520 @default.
- W3134694908 cites W2018843373 @default.
- W3134694908 cites W2024542623 @default.
- W3134694908 cites W2026154386 @default.
- W3134694908 cites W2026994294 @default.
- W3134694908 cites W2035526364 @default.
- W3134694908 cites W2036039577 @default.
- W3134694908 cites W2037344743 @default.
- W3134694908 cites W2038726293 @default.
- W3134694908 cites W2041858177 @default.
- W3134694908 cites W2041958062 @default.
- W3134694908 cites W2043775186 @default.
- W3134694908 cites W2045946443 @default.
- W3134694908 cites W2050944260 @default.
- W3134694908 cites W2051576260 @default.
- W3134694908 cites W2056006336 @default.
- W3134694908 cites W2058122340 @default.
- W3134694908 cites W2060841828 @default.
- W3134694908 cites W2064115521 @default.
- W3134694908 cites W2064753851 @default.
- W3134694908 cites W2077107495 @default.
- W3134694908 cites W2081248537 @default.
- W3134694908 cites W2082427420 @default.
- W3134694908 cites W2082658405 @default.
- W3134694908 cites W2093844373 @default.
- W3134694908 cites W2095118650 @default.
- W3134694908 cites W2096207113 @default.
- W3134694908 cites W2101317526 @default.
- W3134694908 cites W2107507495 @default.
- W3134694908 cites W2125612486 @default.
- W3134694908 cites W2126671291 @default.
- W3134694908 cites W2134748225 @default.
- W3134694908 cites W2140856317 @default.
- W3134694908 cites W2148624312 @default.
- W3134694908 cites W2149070465 @default.
- W3134694908 cites W2150061334 @default.
- W3134694908 cites W2152595585 @default.
- W3134694908 cites W2154133049 @default.
- W3134694908 cites W2155829451 @default.
- W3134694908 cites W2157202716 @default.
- W3134694908 cites W2163693206 @default.
- W3134694908 cites W2165153063 @default.
- W3134694908 cites W2166691312 @default.
- W3134694908 cites W2171545802 @default.
- W3134694908 cites W2185966870 @default.
- W3134694908 cites W2191392056 @default.
- W3134694908 cites W2204380259 @default.
- W3134694908 cites W2246483704 @default.
- W3134694908 cites W2251645231 @default.
- W3134694908 cites W2289979162 @default.
- W3134694908 cites W2293831890 @default.
- W3134694908 cites W2299339023 @default.
- W3134694908 cites W2315348285 @default.
- W3134694908 cites W2319141719 @default.
- W3134694908 cites W2324573763 @default.
- W3134694908 cites W2325874674 @default.
- W3134694908 cites W2329571866 @default.
- W3134694908 cites W2333127879 @default.
- W3134694908 cites W2335453246 @default.
- W3134694908 cites W2340516593 @default.
- W3134694908 cites W2342840349 @default.
- W3134694908 cites W2343437447 @default.
- W3134694908 cites W2396331984 @default.