بدائل البحث:
we decrease » _ decrease (توسيع البحث), a decrease (توسيع البحث), mean decrease (توسيع البحث)
nn decrease » _ decrease (توسيع البحث), a decrease (توسيع البحث), mean decrease (توسيع البحث)
c decrease » c decreased (توسيع البحث), _ decrease (توسيع البحث), a decrease (توسيع البحث)
5 we » _ we (توسيع البحث), 5 wt (توسيع البحث), 5 w (توسيع البحث)
50 c » 5 c (توسيع البحث), 50 μ (توسيع البحث), 50 _ (توسيع البحث)
we decrease » _ decrease (توسيع البحث), a decrease (توسيع البحث), mean decrease (توسيع البحث)
nn decrease » _ decrease (توسيع البحث), a decrease (توسيع البحث), mean decrease (توسيع البحث)
c decrease » c decreased (توسيع البحث), _ decrease (توسيع البحث), a decrease (توسيع البحث)
5 we » _ we (توسيع البحث), 5 wt (توسيع البحث), 5 w (توسيع البحث)
50 c » 5 c (توسيع البحث), 50 μ (توسيع البحث), 50 _ (توسيع البحث)
-
141
Recombination of Autodissociated Water Ions in a Nanoscale Pure Water Droplet
منشور في 2025"…Using a classical RexPoN force-field, we found that the ions in 1000 H<sub>2</sub>O’s spend almost 50% of the time on the surface and 0.5 nm beneath it with a slight preference for OH<sup>–</sup> ion to reside longer on the surface. …"
-
142
Recombination of Autodissociated Water Ions in a Nanoscale Pure Water Droplet
منشور في 2025"…Using a classical RexPoN force-field, we found that the ions in 1000 H<sub>2</sub>O’s spend almost 50% of the time on the surface and 0.5 nm beneath it with a slight preference for OH<sup>–</sup> ion to reside longer on the surface. …"
-
143
Recombination of Autodissociated Water Ions in a Nanoscale Pure Water Droplet
منشور في 2025"…Using a classical RexPoN force-field, we found that the ions in 1000 H<sub>2</sub>O’s spend almost 50% of the time on the surface and 0.5 nm beneath it with a slight preference for OH<sup>–</sup> ion to reside longer on the surface. …"
-
144
Recombination of Autodissociated Water Ions in a Nanoscale Pure Water Droplet
منشور في 2025"…Using a classical RexPoN force-field, we found that the ions in 1000 H<sub>2</sub>O’s spend almost 50% of the time on the surface and 0.5 nm beneath it with a slight preference for OH<sup>–</sup> ion to reside longer on the surface. …"
-
145
Recombination of Autodissociated Water Ions in a Nanoscale Pure Water Droplet
منشور في 2025"…Using a classical RexPoN force-field, we found that the ions in 1000 H<sub>2</sub>O’s spend almost 50% of the time on the surface and 0.5 nm beneath it with a slight preference for OH<sup>–</sup> ion to reside longer on the surface. …"
-
146
Recombination of Autodissociated Water Ions in a Nanoscale Pure Water Droplet
منشور في 2025"…Using a classical RexPoN force-field, we found that the ions in 1000 H<sub>2</sub>O’s spend almost 50% of the time on the surface and 0.5 nm beneath it with a slight preference for OH<sup>–</sup> ion to reside longer on the surface. …"
-
147
Recombination of Autodissociated Water Ions in a Nanoscale Pure Water Droplet
منشور في 2025"…Using a classical RexPoN force-field, we found that the ions in 1000 H<sub>2</sub>O’s spend almost 50% of the time on the surface and 0.5 nm beneath it with a slight preference for OH<sup>–</sup> ion to reside longer on the surface. …"
-
148
Recombination of Autodissociated Water Ions in a Nanoscale Pure Water Droplet
منشور في 2025"…Using a classical RexPoN force-field, we found that the ions in 1000 H<sub>2</sub>O’s spend almost 50% of the time on the surface and 0.5 nm beneath it with a slight preference for OH<sup>–</sup> ion to reside longer on the surface. …"
-
149
Recombination of Autodissociated Water Ions in a Nanoscale Pure Water Droplet
منشور في 2025"…Using a classical RexPoN force-field, we found that the ions in 1000 H<sub>2</sub>O’s spend almost 50% of the time on the surface and 0.5 nm beneath it with a slight preference for OH<sup>–</sup> ion to reside longer on the surface. …"
-
150
Recombination of Autodissociated Water Ions in a Nanoscale Pure Water Droplet
منشور في 2025"…Using a classical RexPoN force-field, we found that the ions in 1000 H<sub>2</sub>O’s spend almost 50% of the time on the surface and 0.5 nm beneath it with a slight preference for OH<sup>–</sup> ion to reside longer on the surface. …"
-
151
-
152
-
153
Atomically Precise Au<sub>42</sub> Nanorods with Longitudinal Excitons for an Intense Photothermal Effect
منشور في 2022"…Compared to other rod-shaped nanoclusters, Au<sub>42</sub> possesses a much more effective photothermal conversion with a large temperature increase of ∼27 °C within 5 min (λ<sub>ex</sub> = 808 nm, 1 W cm<sup>–2</sup>) at an ultralow concentration of 50 μg mL<sup>–1</sup> in toluene. …"
-
154
-
155
-
156
-
157
-
158
-
159
-
160