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170 results for “nickel”
The role of iron in the electronic configuration of mixed nickel iron oxides for the OER
<p>The dataset includes the raw data files, python based analysis scripts and the plots and vector graphic files obtained from the analysis scripts. Since multiple plots were obtained from the same set of data files, the scripts are documented to give information which part of the data are used to yield specific plots. The processed data of the plots was additionally saved in a json format.</p> <p>DOI: 10.5281/zenodo.11915507</p> <p> </p>
Impact of four inorganic impurities – iron, copper, nickel and zinc - on the quality attributes of a Fc-fusion protein upon incubation at different temperatures.
<p>Data regarding the impact of four inorganic impurities – iron, copper, nickel and zinc - on the quality attributes of a Fc-fusion protein upon incubation at different temperatures. </p>
Analytical data for Combining nickel and squaramide catalysis for the stereodivergent α-propargylation of oxindoles
<p>NMR data in a mnova file format and HPLC traces for Combining nickel and squaramide catalysis for the stereodivergent α-propargylation of oxindoles. NMR data are available as .mnova files</p>
Estimation if Nickel Laterite Resources Using Model Block Size in Lasolo Island District, North Konawe Regency
<p>This material has presented on 2nd International Conference on Advanced Research in Engineering and Technology in October 25, 2023.</p>
Dataset of a manuscript entitiled "Unraveling the enhancement of oxygen evolution reaction activity by incorporating chromium into nickel hydroxide nanosheets"
<p>Dataset of a manuscript entitiled "Unraveling the enhancement of oxygen evolution reaction activity by incorporating chromium into nickel hydroxide nanosheets"</p> <p>Not yet submitted.</p>
FIGURE 12. O. sibirica. A in The genus Odontarrhena (Brassicaceae) in Albania: Taxonomy and Nickel accumulation in a critical group of metallophytes from a major serpentine hot-spot
FIGURE 12. O. sibirica. A) habit (fruiting specimens); B) leaves of sterile shoot from above (left) and below (right); C) lateral fruiting raceme; D) silicle in lateral, inner and outer view. Original drawing by L. Cecchi (based on the isotype of Alyssum suffrutescens var. epirotum BM000750156).
FIGURE 11. O. rigida. A in The genus Odontarrhena (Brassicaceae) in Albania: Taxonomy and Nickel accumulation in a critical group of metallophytes from a major serpentine hot-spot
FIGURE 11. O. rigida. A) habit (fruiting specimen); B) leaf of sterile shoot, showing its upper (left) and lower surface (right); C) lateral fruiting raceme; D) silicle in lateral, inner and outer view. Original drawing by L. Cecchi (based on the neotype specimen, FI050434).
FIGURE 13. O. smolikana subsp. glabra. A in The genus Odontarrhena (Brassicaceae) in Albania: Taxonomy and Nickel accumulation in a critical group of metallophytes from a major serpentine hot-spot
FIGURE 13. O. smolikana subsp. glabra. A) habit (fruiting specimen); B) leaf of sterile shoot, showing its upper (on the left) and lower surface (right); C) lateral fruiting raceme; D) flower in lateral view, with isolated sepal and petal; E) silicle in lateral, inner and outer view. Original drawing by L. Cecchi (based on FI050431 and FI050835).
FIGURE 9. O. decipiens. A in The genus Odontarrhena (Brassicaceae) in Albania: Taxonomy and Nickel accumulation in a critical group of metallophytes from a major serpentine hot-spot
FIGURE 9. O. decipiens. A) habit (flowering specimen and fruiting shoot); B) leaf of sterile shoot, showing its upper (on the left) and lower surface (right); C) lateral fruiting racemes; D) closed and open silicles of different size and shape. Original drawing by L. Cecchi (based on FI050442 and FI052160).
FIGURE 10. O. moravensis. A in The genus Odontarrhena (Brassicaceae) in Albania: Taxonomy and Nickel accumulation in a critical group of metallophytes from a major serpentine hot-spot
FIGURE 10. O. moravensis. A) habit (fruiting specimens); B) leaf of sterile shoot, showing its upper (left) and lower surface (right); C) lateral fruiting raceme; D) silicle in lateral, inner and outer view. Original drawing by L. Cecchi (based on the FI050441 and FI050828).
FIGURE 8. O in The genus Odontarrhena (Brassicaceae) in Albania: Taxonomy and Nickel accumulation in a critical group of metallophytes from a major serpentine hot-spot
FIGURE 8. O. chalcidica: A, F) habit (flowering and fruiting specimens of different stature); B) cauline leaves of flowering (left) and sterile (right) shoots, showing their upper and lower surface on the left and on the right, respectively; C) lateral fruiting raceme; D) silicle in lateral, inner and outer view. Original drawing by L. Cecchi (based on FI050844 and FI050882).
FIGURE 6 in The genus Odontarrhena (Brassicaceae) in Albania: Taxonomy and Nickel accumulation in a critical group of metallophytes from a major serpentine hot-spot
FIGURE 6. SEM micrographs of silicles of: A) O. albiflora (FI050840); B) O. chalcidica (neotype of A. markgrafii, FI050424); C) O. chalcidica (Greece, near Thessaloniki, isolectotype, FI010117); D) O. decipiens (FI050445); E) O. smolikana subsp. glabra (FI050433); F) O. moravensis (FI050441); G) O. muralis (Romania, Deva, type locality, FI050439); H) O. rigida (neotype, FI050434). Scale bar = 2mm.
FIGURE 4 in The genus Odontarrhena (Brassicaceae) in Albania: Taxonomy and Nickel accumulation in a critical group of metallophytes from a major serpentine hot-spot
FIGURE 4. Phenological differences between taxa of Odontarrhena in Albania. Bars in light grey indicate the time interval between the decade in which at least 50% of the population is in flower and the decade when full flowering (100%) of the population occurs; bars in dark grey indicate the same interval for the fruiting process (50%-100% of the population with ripe fruits).
FIGURE 1 in The genus Odontarrhena (Brassicaceae) in Albania: Taxonomy and Nickel accumulation in a critical group of metallophytes from a major serpentine hot-spot
FIGURE 1. Distribution of Odontarrhena in Albania; the range of O. chalcidica is given as light grey area, the other taxa as symbols (in legend); major serpentine outcrops are represented as dark grey spots and numbered from the north to the south. 1: Tropoja, 2: Krrabi, 3: Gomsiqe, 4: Puke, 5: Kukesi, 6: Lure, 7: Skenderbeu, 8: Bulqize, 9: Shebenik, 10: Shpati, 11: Vallamara, 12: Devolli, 13: Voskopoja, 14: Morava (after Bani et. al. 2017, modified).
FIGURE 5 in The genus Odontarrhena (Brassicaceae) in Albania: Taxonomy and Nickel accumulation in a critical group of metallophytes from a major serpentine hot-spot
FIGURE 5. Micrographs of chromosome metaphase plates of: A) O. muralis (Romania, Deva, type locality, FI052171), 2n = 16; B) O. rigida, 2n =16; C) O. moravensis, 2n = 16; D) O. chalcidica ("A. markgrafii", FI050423), 2n = 32 + 4B; E) O. chalcidica (type locality of A. elatius, FI052165), 2n = 32; F) O. decipiens (FI050443), 2n = 32+2B; G) O. smolikana subsp. glabra, 2n = 32; H) O. albiflora, 2n = 32. Scale bar = 5 μm. The B-chromosomes are indicated by arrow heads.
FIGURE 2. O. albiflora. A in The genus Odontarrhena (Brassicaceae) in Albania: Taxonomy and Nickel accumulation in a critical group of metallophytes from a major serpentine hot-spot
FIGURE 2. O. albiflora. A) habit (left: flowering and early fruiting plant with sterile shoots; right: fruiting stem); B) cauline leaves showing their upper (left) and lower surface (right); C) flower from above and in lateral view, and single petal; D) lateral fruiting raceme; E) silicles of different size in lateral, inner and outer view. Original drawing by L. Cecchi (based on FI050841 and FI052166).
FIGURE 3 in The genus Odontarrhena (Brassicaceae) in Albania: Taxonomy and Nickel accumulation in a critical group of metallophytes from a major serpentine hot-spot
FIGURE 3. The Albanian taxa of Odontarrhena in their natural environment: A) O. albiflora (Mt. Tathë); B) O. chalcidica (Pishkash); C) O. decipiens (Bulqizë); D) O. moravensis (Voskopojë); E) O. rigida (Mt. Shpat); F) O. smolikana subsp. glabra (Mt. Shebenik).
FIGURE 7 in The genus Odontarrhena (Brassicaceae) in Albania: Taxonomy and Nickel accumulation in a critical group of metallophytes from a major serpentine hot-spot
FIGURE 7. SEM micrographs of trichomes on the median part of flowering stems of: A) O. albiflora (FI050840); B) O. chalcidica (neotype of A. markgrafii, FI050424); C) O. chalcidica (FI050422); D) O. decipiens (FI050445); E) O. smolikana subsp. glabra (FI050433); F) O. moravensis (FI050441); G) O. muralis (FI050439 type locality, Romania); H) O. rigida (neotype, FI050434). Scale bar = 500 μm.
A bench-stable fluorophosphine nickel(0) complex and its catalytic application
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Nickel and chromium stable isotopic composition of ureilites: implications for the Earth's core formation and differentiation of the ureilite parent body
<p>We report the first Ni and Cr stable isotope data for ureilite meteorites that are the mantle residue of a carbon-rich differentiated planet. Ureilites have similar Ni stable isotope compositions as chondrites, suggesting the core-mantle differentiation of ureilite parent body did not fractionate Ni isotopes. Since the size of Earth is potentially larger than that of ureilite parent body (UPB; with diameter > 690 km), resulting in higher temperatures at the core-mantle boundary of Earth, it can be predicted that the terrestrial core formation may not directly cause Ni stable isotope fractionation. On the other hand, we also report high-precision Cr stable isotope composition of ureilites, including one ureilitic trachyandesite (ALM-A) that is enriched in lighter Cr stable isotopes relative to the main-group ureilites, which suggests the partial melting occurred on UPB. The globally heavy Cr in the UPB compared to chondrites can be caused by sulfur-rich core formation processes.</p>
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