TOP期刊科研绘图赏析2(长文......建议大家看完!!!)

文摘   2024-10-12 11:30   北京  


大家好!今天大家一起来进行TOP期刊科研绘图赏析高颜值的科研配图可以增加论文的吸引力,提升内容传达的效果。


以下是nature大子刊的一些论文配色供大家赏析,文章末尾总结了高颜值科研配图技巧,大家一定要读到最后哟。


1. 绘图赏析


来源:Xi, D., Alfaraidi, A.M., Gao, J. et al. Mild pH-decoupling aqueous flow battery with practical pH recovery. Nat Energy 9, 479–490 (2024). https://doi.org/10.1038/s41560-024-01474-1

来源:Xie, C., Wang, C., Xu, Y. et al. Reversible multielectron transfer I−/IO3− cathode enabled by a hetero-halogen electrolyte for high-energy-density aqueous batteries. Nat Energy 9, 714–724 (2024). https://doi.org/10.1038/s41560-024-01515-9

来源:Wu, H., Huang, L., Timoshenko, J. et al. Selective and energy-efficient electrosynthesis of ethylene from CO2 by tuning the valence of Cu catalysts through aryl diazonium functionalization. Nat Energy 9, 422–433 (2024). https://doi.org/10.1038/s41560-024-01461-6

来源:Song, R., Zhao, G., Restrepo-Flórez, J.M. et al. Ethylene production via photocatalytic dehydrogenation of ethane using LaMn1−xCuxO3. Nat Energy 9, 750–760 (2024). https://doi.org/10.1038/s41560-024-01541-7

来源: Hobold, G.M., Wang, C., Steinberg, K. et al. High lithium oxide prevalence in the lithium solid–electrolyte interphase for high Coulombic efficiency. Nat Energy 9, 580–591 (2024). https://doi.org/10.1038/s41560-024-01494-x

来  源:Arnold, W., Giuliani, M. & Castelletti, A. Floating photovoltaics may reduce the risk of hydro-dominated energy development in Africa. Nat Energy 9, 602–611 (2024). https://doi.org/10.1038/s41560-024-01510-0

来  源:Hailegnaw, B., Demchyshyn, S., Putz, C. et al. Flexible quasi-2D perovskite solar cells with high specific power and improved stability for energy-autonomous drones. Nat Energy 9, 677–690 (2024). https://doi.org/10.1038/s41560-024-01500-2

来源:Li, S., Tsakmakidis, K.L., Jiang, T. et al. Unidirectional guided-wave-driven metasurfaces for arbitrary wavefront control. Nat Commun 15, 5992 (2024). https://doi.org/10.1038/s41467-024-50287-z

来源:Shao, Y., Yan, J., Zhi, Y. et al. A universal packaging substrate for mechanically stable assembly of stretchable electronics. Nat Commun 15, 6106 (2024). https://doi.org/10.1038/s41467-024-50494-8

来源:Ahmadi, N., Lee, J., Godiya, C.B. et al. A single-particle mechanofluorescent sensor. Nat Commun 15, 6094 (2024). https://doi.org/10.1038/s41467-024-50361-6

来源: Guo, C., Tang, H., Wang, P. et al. Radiative cooling assisted self-sustaining and highly efficient moisture energy harvesting. Nat Commun 15, 6100 (2024). https://doi.org/10.1038/s41467-024-50396-9

来  源:Huang, B., Gu, Q., Tang, X. et al. Experimentally validating sabatier plot by molecular level microenvironment customization for oxygen electroreduction. Nat Commun 15, 6077 (2024). https://doi.org/10.1038/s41467-024-50377-y

来  源:Malouli, D., Tiwary, M., Gilbride, R.M. et al. Cytomegalovirus vaccine vector-induced effector memory CD4 + T cells protect cynomolgus macaques from lethal aerosolized heterologous avian influenza challenge. Nat Commun 15, 6007 (2024).https://doi.org/10.1038/s41467-024-50345-6

参考文献:Huang, J., Chen, T., Mei, L. et al. On the role of asymmetric molecular geometry in high-performance organic solar cells. Nat Commun


参考文献:Wu, J., Zhou, E., Huang, A. et al. Deep-potential enabled multiscale simulation of gallium nitride devices on boron arsenide cooling substrates. Nat

Liu, M., Wang, J., Hu, J. et al. Layer-by-layer phase transformation in Ti3O5 revealed by machine-learning molecular dynamics simulations. Nat

Pal, A., Chai, Z., Jiang, J. et al. An ultra energy-efficient hardware platform for neuromorphic computing enabled by 2D-TMD tunnel-FETs. Nat Commun

Utsumi, S., Ujjain, S.K., Takahashi, S. et al. Giant nanomechanical energy storage capacity in twisted single-walled carbon nanotube ropes. Nat.

Wang, Z., Kalathingal, V., Trushin, M. et al. Upconversion electroluminescence in 2D semiconductors integrated with plasmonic tunnel junctions. Nat.

Steinberg, E., Stone, N.C. Stream–disk shocks as the origins of peak light in tidal disruption events. Nature

Joshi, M.K., Kokail, C., van Bijnen, R. et al. Exploring large-scale entanglement in quantum simulation. Nature

Chen, Y., Nazhamaiti, M., Xu, H. et al. All-analog photoelectronic chip for high-speed vision tasks. Nature

Schiattarella, C., Romano, S., Sirleto, L. et al. Directive giant upconversion by supercritical bound states in the continuum. Nature

科研配图颜值的技巧:

(1)清晰简洁的图表

(2)配色搭配:使用搭配合理的配色方案。避免使用过于鲜艳或刺眼的颜色,选择深浅搭配,确保文字和图形在图表上清晰可辨

(3)专业图标设计工具:使用专业的图标设计工具(如Adobe Illustrator、origin等)创建图表,以确保图表的精确度和专业感。

(4)高质量图片:使用高分辨率、清晰度的图片。确保图像不失真,以提高整体视觉效果。

(5)图像处理软件:使用图像处理软件(如Photoshop、GIMP等)片进行调整和优化,调整对比度、亮度和色彩平衡,以提高图像质量。

(6)引入现代元素:考虑引入一些现代的图形元素,如扁平设计、渐变色等,以使配图看起来更美观。

(7)避免过度装饰:尽量避免在图表中使用过多装饰性元素。

(8)图文结合:图片和文字应该相互补充,图表能够更好地支持论文的主题。

欢迎大家批评补充指正补看完文章后记得点个“赞+在看”

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