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| 1 | VO2·0.2H2O nanocuboids anchored onto graphene sheets as the cathode material for ultrahigh capacity aqueous zinc ion batteries显示文摘Aqueous Zinc-ion batteries(ZIBs),using zinc negative electrode and aqueous electrolyte,have attracted great attention in energy storage field due to the reliable safety and low-cost.A composite material comprised of VO2·0.2H2O nanocuboids anchored on graphene sheets(VOG)is synthesized through a facile and efficient microwave-assisted solvothermal strategy and is used as aqueous ZIBs cathode material.Owing to the synergistic effects between the high conductivity of graphene sheets and the desirable structural features of VO2·0.2H2O nanocuboids,the VOG electrode has excellent electronic and ionic transport ability,resulting in superior Zn ions storage performance.The Zn/VOG system delivers ultrahigh specific capacity of 423 mAh·g^−1 at 0.25 A·g^−1 and exhibits good cycling stability of up to 1,000 cycles at 8 A·g^−1 with 87%capacity retention.Systematical structural and elemental characterizations confirm that the interlayer space of VO2·0.2H2O nanocuboids can adapt to the reversible Zn ions insertion/extraction.The as-prepared VOG composite is a promising cathode material with remarkable electrochemical performance for low-cost and safe aqueous rechargeable ZIBs. | Dedong Jia Kun Zheng Ming Song Hua Tan Aitang Zhang Lihua Wang Lijun Yue Da Li Chenwei Li Jingquan Liu | 2020 | Nano Research2020,13,1: | 6 |
| 2 | Environmental biogeochemical behaviors of rare earth elements in soil–plant systems显示文摘 | Tao Liang Shen Zhang Lijun Wang Hsiang-Te Kung Yuqi Wang Aitang Hu Shiming Ding | 2005 | Environmental Geochemistry and Health2005,,4: | 2 |
| 3 | 原子的交流塞曼效应(英文)显示文摘用一种简单的半经典方法推导出了交流塞曼效应中的能级移动公式。从这一公式得到的结果与实验中观察到的现象是一致的,而且从理论上预言了交流塞曼效应的2个重要性质:原子交流塞曼效应中的能级移动是与跃迁同时发生的瞬态过程;能级移动具有饱和性。 | XING Aitang (Department of Electronics,Peking University,Beijing,100871) | 1999 | 北京大学学报(自然科学版)1999,35,1: | 1 |
| 4 | Zinc Nutrition and Metabolism of Plants as Influenced by Supply of Phosphorus and Zinc显示文摘INTRODUCTIONZincdeficiency,asaworldwidenutritionalconstraintofplalltgrowth,occursinawiderangeofsoiltypesincludingacid,alkaline,calcareous,sodicandsandysoils(Luetal.,1998).AquitefewoffactorsaffecttheprocessofZndeficiencyinbothsoilsandplants.Oneofthemi... | YANG ZHIMIN ZHENG SHAOJIAN and HU AITANG(College of Natural Resources and Environmental Sciences, Nanjing Agricultural University, Nanjing 210095(China))(Dept. of Agro-Environmental Management, Kyushu National Agricultural Experiment Station, Nishigoshi, | 1999 | Pedosphere1999,9,3: | 0 |
| 5 | Natural high-porous diatomaceous-earth based self-floating aerogel for efficient solar steam power generation显示文摘The application of solar steam generation in seawater desalination is an effective way to solve the shortage of fresh water resources.At present,many kinds of photothermal conversion materials have been developed and used as evaporators in seawater desalination.However,some evaporators need additional thermal insulation or water supply devices to achieve efficient photothermal conversion.In addition,their complex,time consuming and no scalable preparation process,high cost of raw materials and poor salt resistance hinder the practical application of these evaporator.Owing to its distinctive nanoporous structure,diatomite as fossilized single-cells algae diatoms is a promising natural silica-based material for seawater desalination.They are taken from sea and that makes true sense to use them in the sea.Herein,we report the first example of synthesis robust three-dimensional(3D)natural-diatomite composite by assembling polyaniline nanoparticles covered diatomite into the polyvinyl alcohol pre-treated melamine foam frameworks and demonstrate its application as new evaporator for seawater desalination.The porous framework does not only improve the sunlight scattering efficiency,but also offer large network of channels for water transportation.The inherent mechanism behind salt desalination process involves the absorption of water molecules on the surface of the internal silica micro-nano pores,and evaporation under the heat induced by the polyaniline absorbed sunlight.Meanwhile,the metal ions are segregated by many available pores and channels to achieve the self-desalting effect.The developed evaporator possesses the superiority of multi-stage pore structure,strong hydrophilicity,low thermal conductivity,excellent light absorption,fast water transportation and salt-resistant crystallization as well as good durability.The evaporation rate without an additional device is found to be 1.689 kg m^(-2)h^(-1)under 1-Sun irradiation,and the energy conversion efficiency is as high as 95%.This work creates a platform and develops the prospect of employing green and sustainable natural-diatomite composite evaporator for practical applications of seawater desalination. | Aitang Zhang Kai Wang Md Julker Nine Mengyu Cao Hanwen Zong Zhiqiang Liu Hanwen Guo Jingquan Liu Dusan Losic | 2024 | Green Energy & Environment2024,9,2: | 0 |