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Volumn 53, Issue 49, 2014, Pages 13583-13587

An aqueous rechargeable formate-based hydrogen battery driven by heterogeneous Pd catalysis

Author keywords

Batteries; Energy conversion; Hydrogen; Lattice strain; Pd catalysis

Indexed keywords

CATALYSIS; CHARGING (BATTERIES); ELECTRIC BATTERIES; ENERGY CONVERSION; FUEL CELLS; FUEL STORAGE; HYDROGEN; HYDROGEN STORAGE; SOLAR CELLS;

EID: 84918788192     PISSN: 14337851     EISSN: 15213773     Source Type: Journal    
DOI: 10.1002/anie.201409500     Document Type: Article
Times cited : (154)

References (44)
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    • Of particular note is the hydrogen content of 2.35 wt% for HCOONa/H2O and 2.02 wt% for HCOOK/H2O, but they are nontoxic, noncorrosive, nonflammable, and easy to handle. The volumetric hydrogen density of saturated HCOOK solution at 25 8C is 28gl1, which is by a factor of 3.8 superior to commercial Li-ion batteries as discussed in Ref. [8a
    • Of particular note is the hydrogen content of 2.35 wt% for HCOONa/H2O and 2.02 wt% for HCOOK/H2O, but they are nontoxic, noncorrosive, nonflammable, and easy to handle. The volumetric hydrogen density of saturated HCOOK solution at 25 8C is 28gl1, which is by a factor of 3.8 superior to commercial Li-ion batteries as discussed in Ref. [8a].
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    • It should be noted that along with the creation of highly straine d Pd NPs in the Pd/r-GO catalysts, substantial microstructural changes of the corresponding r-GO support also occurred as a result of the palladium deposition as shown in Figures S8 and S9
    • It should be noted that along with the creation of highly straine d Pd NPs in the Pd/r-GO catalysts, substantial microstructural changes of the corresponding r-GO support also occurred as a result of the palladium deposition as shown in Figures S8 and S9.
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* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.