[1]
|
gupta, p., toksha, b. and rahaman, m. (2023) a critical review on hydrogen based fuel cell technology and applications. the chemical record, 24, e202300295.
|
[2]
|
li, h., zhang, h., liu, w., huang, j., lu, k., shi, j., et al. (2023) experimental demonstration of photocatalytic hydrogen production in series with a hydrogen fuel cell. journal of chemical education, 100, 1404-1409.
|
[3]
|
andrade, t.s. and thiringer, t. (2024) low platinum fuel cell as enabler for the hydrogen fuel cell vehicle. journal of power sources, 598, article id: 234140.
|
[4]
|
zhang, x., li, h., yang, j., lei, y., wang, c., wang, j., et al. (2021) recent advances in pt-based electrocatalysts for pemfcs. rsc advances, 11, 13316-13328.
|
[5]
|
liu, j. and zio, e. (2018) prognostics of a multistack pemfc system with multiagent modeling. energy science & engineering, 7, 76-87.
|
[6]
|
asri, n.f., husaini, t., sulong, a.b., majlan, e.h. and daud, w.r.w. (2017) coating of stainless steel and titanium bipolar plates for anticorrosion in pemfc: a review. international journal of hydrogen energy, 42, 9135-9148.
|
[7]
|
mardle, p., fernihough, o. and du, s. (2018) evaluation of the scaffolding effect of pt nanowires supported on reduced graphene oxide in pemfc electrodes. coatings, 8, article no. 48.
|
[8]
|
witpathomwong, s., okhawilai, m., jubsilp, c., karagiannidis, p. and rimdusit, s. (2020) highly filled graphite/graphene/carbon nanotube in polybenzoxazine composites for bipolar plate in pemfc. international journal of hydrogen energy, 45, 30898-30910.
|
[9]
|
choi, j., eun kang, h., kim, d. and soo yoon, y. (2024) a comprehensive review of stainless-steel bipolar plate coatings and their role in mitigating corrosion in aggressive proton-exchange membrane fuel cells environments. chemical engineering journal, 493, article id: 152662.
|
[10]
|
liu, x., zhang, y., shi, c., dou, b. and liu, m. (2024) effect of dbsa‐doped pani on the corrosion protection performance of go/epoxy coatings. materials and corrosion.
|
[11]
|
meng, x., hou, l., jin, h., li, w., wang, s., wang, z., et al. (2023) study on corrosion protection properties of pani/zno/zn/graphene coating on aluminum alloy. diamond and related materials, 136, article id: 110067.
|
[12]
|
diraki, a. and omanovic, s. (2022) smart pani/epoxy anti-corrosive coating for protection of carbon steel in sea water. progress in organic coatings, 168, article id: 106835.
|
[13]
|
dong, y., yin, y., du, x., liu, c. and zhou, q. (2022) effect of mxene@pani on the self-healing property of shape memory-assisted coating. synthetic metals, 291, article id: 117162.
|
[14]
|
diraki, a. and omanovic, s. (2022) anticorrosive properties of the double-layer pani-(graphene oxide)/epoxy coating in protecting carbon steel in saltwater. journal of coatings technology and research, 20, 995-1006.
|
[15]
|
da silva ferreira, n., bandeira, r.m., nunes, m.s., de sousa marques, v., vega, m.l., hidalgo, a.a., et al. (2024) anticorrosive effect of green sulfonated pani-zn with epoxy for the corrosion protection of aluminum alloy 6061-t651. progress in organic coatings, 191, article id: 108470.
|
[16]
|
zor, s. and ilmieva, n. (2018) corrosion behavior of pani/epoxy/nano sno2 polymeric nanocomposite coated stainless steel in 3.5 wt% nacl. polymer composites, 39, e2415-e2425.
|
[17]
|
zhang, x., li, b., chen, t., ke, x. and xiao, r. (2023) study on cepo4 modified pani/rgo composites to enhance the anti-corrosion property of epoxy resin. progress in organic coatings, 178, article id: 107472.
|
[18]
|
kong, w., yi, s., sun, w., xu, l., jia, l., yan, d., et al. (2022) polyaniline-decorated carbon fibers for enhanced mechanical and electromagnetic interference shielding performances of epoxy composites. materials & design, 217, article id: 110658.
|
[19]
|
liu, r., liu, y., yong, q., xie, z., wu, l. and zhong, c. (2023) highly corrosion-resistant zif-8-integrated micro-arc oxidation coating on mg alloy. surface and coatings technology, 463, article id: 129505.
|
[20]
|
yin, x., mu, p., wang, q. and li, j. (2020) superhydrophobic zif-8-based dual-layer coating for enhanced corrosion protection of mg alloy. acs applied materials & interfaces, 12, 35453-35463.
|
[21]
|
deberry, d.w. (1985) modification of the electrochemical and corrosion behavior of stainless steels with an electroactive coating. journal of the electrochemical society, 132, 1022-1026.
|
[22]
|
karpakam, v., kamaraj, k., sathiyanarayanan, s., venkatachari, g. and ramu, s. (2011) electrosynthesis of polyaniline-molybdate coating on steel and its corrosion protection performance. electrochimica acta, 56, 2165-2173.
|
[23]
|
lu, w., elsenbaumer, r.l. and wessling, b. (1995) corrosion protection of mild steel by coatings containing polyaniline. synthetic metals, 71, 2163-2166.
|
[24]
|
kamaraj, k., siva, t., sathiyanarayanan, s., muthukrishnan, s. and venkatachari, g. (2011) synthesis of oxalate doped polyaniline and its corrosion protection performance. journal of solid state electrochemistry, 16, 465-471.
|
[25]
|
beh, j.j., lim, j.k., ng, e.p. and ooi, b.s. (2018) synthesis and size control of zeolitic imidazolate framework-8 (zif-8): from the perspective of reaction kinetics and thermodynamics of nucleation. materials chemistry and physics, 216, 393-401.
|
[26]
|
wang, s. and zhang, s. (2017) study on the structure activity relationship of zif-8 synthesis and thermal stability. journal of inorganic and organometallic polymers and materials, 27, 1317-1322.
|
[27]
|
wang, z., huang, j., guo, z., dong, x., liu, y., wang, y., et al. (2019) a metal-organic framework host for highly reversible dendrite-free zinc metal anodes. joule, 3, 1289-1300.
|
[28]
|
saliba, d., ammar, m., rammal, m., al-ghoul, m. and hmadeh, m. (2018) crystal growth of zif-8, zif-67, and their mixed-metal derivatives. journal of the american chemical society, 140, 1812-1823.
|
[29]
|
li, d., lin, c., batchelor-mcauley, c., chen, l. and compton, r.g. (2018) tafel analysis in practice. journal of electroanalytical chemistry, 826, 117-124.
|
[30]
|
agbo, p. and danilovic, n. (2019) an algorithm for the extraction of tafel slopes. the journal of physical chemistry c, 123, 30252-30264.
|
[31]
|
fletcher, s. (2008) tafel slopes from first principles. journal of solid state electrochemistry, 13, 537-549.
|
[32]
|
wang, x., zhang, m., hu, q., su, s., fan, h., wang, h., et al. (2022) optimizing the interfacial potential distribution to mitigate high transient potential induced dissolution on c/ti coated metal bipolar plates used in pemfcs. corrosion science, 208, article id: 110686.
|