Search Results - "Wang, Zhiming"

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  1. 1

    Recent Advances in 2D MXenes for Photodetection by Xu, Hao, Ren, Aobo, Wu, Jiang, Wang, Zhiming

    Published in Advanced functional materials (01-06-2020)
    “…A new class of 2D transition metal carbides, carbonitrides and nitrides, termed MXenes, has emerged as a new candidate for many applications in electronics,…”
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    Journal Article
  2. 2

    Core/Shell Quantum Dots Solar Cells by Selopal, Gurpreet Singh, Zhao, Haiguang, Wang, Zhiming M., Rosei, Federico

    Published in Advanced functional materials (01-03-2020)
    “…Semiconductor nanocrystals, the so‐called quantum dots (QDs), exhibit versatile optical and electrical properties. However, QDs possess high density of surface…”
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  3. 3

    Wind energy potential assessment based on wind speed, its direction and power data by Wang, Zhiming, Liu, Weimin

    Published in Scientific reports (19-08-2021)
    “…Based on wind speed, direction and power data, an assessment method of wind energy potential using finite mixture statistical distributions is proposed…”
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  4. 4

    Toward Continuous-Wave Pumped Metal Halide Perovskite Lasers: Strategies and Challenges by Zhao, Feiyun, Ren, Aobo, Li, Peihang, Li, Yan, Wu, Jiang, Wang, Zhiming M.

    Published in ACS nano (24-05-2022)
    “…Reliable and efficient continuous-wave (CW) lasers have been intensively pursued in the field of optoelectronic integrated circuits. Metal perovskites have…”
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  5. 5

    Quantum Dots‐Based Photoelectrochemical Hydrogen Evolution from Water Splitting by Jin, Lei, Zhao, Haiguang, Wang, Zhiming M., Rosei, Federico

    Published in Advanced energy materials (01-03-2021)
    “…Solar‐driven photoelectrochemical (PEC) hydrogen evolution is a promising and sustainable approach to convert solar energy into a fuel that can be stored…”
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  6. 6

    Identification of Halogen-Associated Active Sites on Bismuth-Based Perovskite Quantum Dots for Efficient and Selective CO2‑to-CO Photoreduction by Sheng, Jianping, He, Ye, Li, Jieyuan, Yuan, Chaowei, Huang, Hongwei, Wang, Shengyao, Sun, Yanjuan, Wang, Zhiming, Dong, Fan

    Published in ACS nano (27-10-2020)
    “…All-inorganic Pb-free bismuth (Bi) halogen perovskite quantum dots (PQDs) with distinct structural and photoelectric properties provide plenty of room for…”
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  7. 7

    Droplet epitaxy of semiconductor nanostructures for quantum photonic devices by Gurioli, Massimo, Wang, Zhiming, Rastelli, Armando, Kuroda, Takashi, Sanguinetti, Stefano

    Published in Nature materials (01-08-2019)
    “…The long dreamed ‘quantum internet’ would consist of a network of quantum nodes (solid-state or atomic systems) linked by flying qubits, naturally based on…”
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  8. 8

    Brillouin zone folding driven bound states in the continuum by Wang, Wenhao, Srivastava, Yogesh Kumar, Tan, Thomas CaiWei, Wang, Zhiming, Singh, Ranjan

    Published in Nature communications (17-05-2023)
    “…Non-radiative bound states in the continuum (BICs) allow construction of resonant cavities with confined electromagnetic energy and high-quality ( Q ) factors…”
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  9. 9

    Flexible C6BN Monolayers As Promising Anode Materials for High-Performance K‑Ion Batteries by Xiang, Pan, Sharma, Sitansh, Wang, Zhiming M, Wu, Jiang, Schwingenschlögl, Udo

    Published in ACS applied materials & interfaces (08-07-2020)
    “…K-ion batteries attract extensive attention and research efforts because of the high energy density, low cost, and high abundance of K. Although they are…”
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  10. 10

    Highly Flexible Hydrogen Boride Monolayers as Potassium-Ion Battery Anodes for Wearable Electronics by Xiang, Pan, Chen, Xianfei, Xiao, Beibei, Wang, Zhiming M

    Published in ACS applied materials & interfaces (27-02-2019)
    “…The rapid development of wearable electronics has revealed an urgent need for low-cost, highly flexible, and high-capacity power sources. In this sense,…”
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  11. 11

    High‐Q Plasmonic Resonances: Fundamentals and Applications by Wang, Baoqing, Yu, Peng, Wang, Wenhao, Zhang, Xutao, Kuo, Hao‐Chung, Xu, Hongxing, Wang, Zhiming M.

    Published in Advanced optical materials (01-04-2021)
    “…Subwavelength confinement of light with plasmonics is promising for nanophotonics and optoelectronics. However, it is nontrivial to obtain narrow plasmonic…”
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  12. 12

    Making g-C3N4 ultra-thin nanosheets active for photocatalytic overall water splitting by Wu, Chunzheng, Xue, Shengyang, Qin, Zhaojun, Nazari, Masoumeh, Yang, Guang, Yue, Shuai, Tong, Tian, Ghasemi, Hadi, Hernandez, Francisco C. Robles, Xue, Sichuang, Zhang, Di, Wang, Haiyan, Wang, Zhiming M., Pu, Shengyan, Bao, Jiming

    Published in Applied catalysis. B, Environmental (01-03-2021)
    “…Femtosecond laser pulses are used to exfoliate g-C3N4 bulks. The obtained ultra-thin nanosheets with -C≡N defects, atomic Pt cocatalysts, and downshifted band…”
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  13. 13

    Tailoring Eco‐Friendly Colloidal Quantum Dots for Photoelectrochemical Hydrogen Generation by Li, Zhuojian, Channa, Ali Imran, Wang, Zhiming M., Tong, Xin

    “…A photoelectrochemical (PEC) cell is able to realize effective solar‐to‐hydrogen energy conversion from water by using the semiconductor photoelectrode…”
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  14. 14

    Rare-Earth Single-Atom La–N Charge-Transfer Bridge on Carbon Nitride for Highly Efficient and Selective Photocatalytic CO2 Reduction by Chen, Peng, Lei, Ben, Dong, Xing’an, Wang, Hong, Sheng, Jianping, Cui, Wen, Li, Jieyuan, Sun, Yanjuan, Wang, Zhiming, Dong, Fan

    Published in ACS nano (24-11-2020)
    “…Photocatalytic CO2 conversion into valuable solar fuels is highly appealing, but lack of directional charge-transfer channel and insufficient active sites…”
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  15. 15

    Recent Progress in the Fabrication, Properties, and Devices of Heterostructures Based on 2D Materials by Liu, Yanping, Zhang, Siyu, He, Jun, Wang, Zhiming M., Liu, Zongwen

    Published in Nano-micro letters (18-02-2019)
    “…Highlights The controllable fabrication methods, the unique properties, and relative applications of 2D heterostructures were summarized. The generation and…”
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  16. 16

    Dust pollution in cold region Surface Mines and its prevention and control by Wang, Zhiming, Zhou, Wei, Jiskani, Izhar Mithal, Ding, Xiaohua, Luo, Huaiting

    Published in Environmental pollution (1987) (01-01-2022)
    “…The application of traditional dust reduction methods in surface mines is limited, particularly during winter due to long-term drought and a rainless…”
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  17. 17

    Revealing the Origin of Luminescence Center in 0D Cs4PbBr6 Perovskite by Qin, Zhaojun, Dai, Shenyu, Hadjiev, Viktor G, Wang, Chong, Xie, Lixin, Ni, Yizhou, Wu, Chunzheng, Yang, Guang, Chen, Shuo, Deng, Liangzi, Yu, Qingkai, Feng, Guoying, Wang, Zhiming M, Bao, Jiming

    Published in Chemistry of materials (12-11-2019)
    “…0D perovskite Cs4PbBr6 has attracted considerable attention recently because of its highly efficient green photoluminescence (PL) and highly debated opposing…”
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  18. 18

    An Emerging Energy Storage System: Advanced Na–Se Batteries by Huang, Xiang Long, Zhou, Chaofu, He, Weidong, Sun, Shuhui, Chueh, Yu-Lun, Wang, Zhiming M, Liu, Hua Kun, Dou, Shi Xue

    Published in ACS nano (27-04-2021)
    “…Sodium–selenium (Na–Se) batteries have aroused enormous attention due to the large abundance of the element sodium as well as the high electronic conductivity…”
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  19. 19

    Nanostructure Engineering Strategies of Cathode Materials for Room-Temperature Na–S Batteries by Wang, Ye, Huang, Xiang Long, Liu, Hanwen, Qiu, Weiling, Feng, Chi, Li, Ce, Zhang, Shaohui, Liu, Hua Kun, Dou, Shi Xue, Wang, Zhiming M

    Published in ACS nano (26-04-2022)
    “…Room-temperature sodium–sulfur (RT Na–S) batteries are considered to be a competitive electrochemical energy storage system, due to their advantages in…”
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  20. 20

    Structure/Property Relations in “Giant” Semiconductor Nanocrystals: Opportunities in Photonics and Electronics by Navarro-Pardo, Fabiola, Zhao, Haiguang, Wang, Zhiming M, Rosei, Federico

    Published in Accounts of chemical research (20-03-2018)
    “…Conspectus Semiconductor nanocrystals exhibit size-tunable absorption and emission ranging from the ultraviolet (UV) to the near-infrared (NIR) spectral range,…”
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