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The nano-LiMn0.9Fe0.1PO4 with spindle-like morphology by P + M + L sequence and starting material of FeSO4 exhibits a good reversible discharge capacity of 129.7 mAh g−1 at 0.1C.
P + M + L sequence (that is, LiOH solution is dropwise introduced into the mixture of H3PO4 and transition metal salts) and P + L + M sequence (that is, Mn2+ and Fe2+ mixture was slowly added into the mixture of H3PO4 and LiOH) are investigated to tune the particle morphology.
The introduction of SO42− leads to a more uniform morphology of the as-prepared particles compared with those by Cl−1, and P + M + L sequence leads to the particles in smaller size and less agglomeration compared with those by P + L + M sequence.
In total, 27 nucleotides of rbc L sequence (approx. 2%; uncorrected P- distance) were found to be different between these two populations.
Such a sequence divergence exceeds the species-level boundary (< 0.5%), which was delineated based on previous rbc L sequence analyses (e.g., Kurihara et al., 2005).
L: sequence length.
Similar(42)
Pairs of specific primers were designed to detect N, P, M, F, H, or L sequences.
Results revealed that they share 100% identical rbc L sequences, indicative of conspecificity.
The second column to the lateral (L) sequences with the corresponding lateral classifier.
Rbc L sequences between these two specimens differed by about 2.6%.
The rbc L sequences analyzed in this study were obtained primarily from GenBank, NCBI (Table 1).
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