光谱学与新材料:量子点光谱学的关键科学问题

秦海燕 彭笑刚

引用本文: 秦海燕,  彭笑刚. 光谱学与新材料:量子点光谱学的关键科学问题[J]. 催化学报, 2019, 40(s1): 98-103. shu
Citation:  QIN Haiyan,  PENG Xiaogang. Optical Spectroscopy and New Materials: Key Scientific Issues in Quantum Dot Spectroscopy[J]. Chinese Journal of Catalysis, 2019, 40(s1): 98-103. shu

光谱学与新材料:量子点光谱学的关键科学问题

  • 基金项目:

    国家自然科学基金(21573194,21761142009);国家重点研发计划项目(2016YFB0401600).

摘要: 本文聚焦于胶体量子点光谱学的发展现状与关键问题.量子点作为一种潜在的光学和光电材料,光谱学研究不但是理解其性能的必要手段,而且直接决定了其领域的发展.胶体量子点的实例告诉我们,物理化学—特别是光谱学—在新材料的发展过程中能够扮演画龙点睛的角色.

English

    1. [1]

      1 Brus L E. J Chem Phys, 1984, 80:4403

    2. [2]

      2 Chen O, Zhao J, Chauhan V P, Cui J, Wong C, Harris D K, Wei H, Han H S, Fukumura D, Jain R K, Bawendi M G. Nat Mater, 2013, 12:445

    3. [3]

      3 Qin H Y, Niu Y, Meng R Y, Lin X, Lai R C, Fang W, Peng X G. J Am Chem Soc, 2014, 136:179

    4. [4]

      4 Zhou J H, Zhu M Y, Meng R Y, Qin H Y, Peng X G. J Am Chem Soc, 2017, 139:16556

    5. [5]

      5 Dai X L, Zhang Z X, Jin Y Z, Niu Y, Cao H J, Liang X Y, Chen L W, Wang J P, Peng X G. Nature, 2014, 515:96

    6. [6]

      6 Yang Y X, Zheng Y, Cao W R, Titov A, Hyvonen J, Manders J R, Xue J G, Holloway P H, Qian L. Nat Photonics, 2015, 9:259

    7. [7]

      7 Klimov V I, Mikhailovsky A A, Xu S, Malko A, Hollingsworth J A, Leatherdale C A, Eisler H J, Bawendi M G. Science, 2000, 290:314

    8. [8]

      8 Fan F J, Voznyy O, Sabatini R P, Bicanic K T, Adachi M M, McBride J R, Reid K R, Park Y S, Li X Y, Jain A, Quintero-Bermudez R, Saravanapavanantham M, Liu M, Korkusinski M, Hawrylak P, Klimov V I, Rosenthal S J, Hoogland S, Sargent E H. Nature, 2017, 544:75

    9. [9]

      9 Michler P, Kiraz A, Becher C, Schoenfeld W V, Petroff P M, Zhang L D, Imamoglu A. Science, 2000, 290:2282

    10. [10]

      10 Lounis B, Moerner W E. Nature, 2000, 407:491

    11. [11]

      11 Bruchez M, Moronne M, Gin P, Weiss S, Alivisatos A P. Science, 1998, 281:2013

    12. [12]

      12 Chan W C W, Nie S M. Science, 1998, 281:2016

    13. [13]

      13 Peterson J J, Krauss T D. Nano Lett, 2006, 6:510

    14. [14]

      14 Fisher B R, Eisler H J, Stott N E, Bawendi M G. J Phys Chem B, 2004, 108:143

    15. [15]

      15 Pu C D, Qin H Y, Gao Y, Zhou J H, Wang P, Peng X G. J Am Chem Soc, 2017, 139:3302

    16. [16]

      16 Pietryga J M, Park Y S, Lim J H, Fidler A F, Bae W K, Brovelli S, Klimov V I. Chem Rev, 2016, 116:10513

    17. [17]

      17 Kelley A M. J Phys Chem Lett, 2010, 1:1296

    18. [18]

      18 Nirmal M, Dabbousi B O, Bawendi M G, Macklin J J, Trautman J K, Harris T D, Brus L E. Nature, 1996, 383:802

    19. [19]

      19 Michler P, Imamoglu A, Mason M D, Carson P J, Strouse G F, Buratto S K. Nature, 2000, 406:968

    20. [20]

      20 Chen Y, Vela J, Htoon H, Casson J L, Werder D J, Bussian D A, Klimov V I, Hollingsworth J A. J Am Chem Soc, 2008, 130:5026

    21. [21]

      21 Mahler B, Spinicelli P, Buil S, Quelin X, Hermier J P, Dubertret B. Nat Mater, 2008, 7:659

    22. [22]

      22 Meng R Y, Qin H Y, Niu Y, Fang W, Yang S, Lin X, Cao H J, Ma J L, Ling W Z, Tong L M, Peng X G. J Phys Chem Lett, 2016, 7:5176

    23. [23]

      23 Qin H Y, Meng R Y, Wang N, Peng X G. Adv Mater, 2017, 29:1606923

    24. [24]

      24 Cao H J, Ma J L, Huang L, Qin H Y, Meng R Y, Li Y, Peng X G. J Am Chem Soc, 2016, 138:15727

    25. [25]

      25 Chandrasekaran V, Tessier M D, Dupont D, Geiregat P, Hens Z, Brainis E. Nano Lett, 2017, 17:6104

    26. [26]

      26 Hadar I O, Philbin J P, Panfil Y E, Neyshtadt S, Lieberman I, Eshet H, Lazar S, Rabani E, Banin U, Nano Lett, 2017, 17:2524

    27. [27]

      27 Mishra N, Orfield N J, Wang F, Hu Z, Krishnamurthy S, Malko A V, Casson J L, Htoon H, Sykora M, Hollingsworth J A. Nat Commun, 2017, 8:15083

    28. [28]

      28 Zang H D, Li H B, Makarov N S, Velizhanin K A, Wu K F, Park Y S, Klimov V I. Nano Lett, 2017, 17:1787

    29. [29]

      29 Lin Q L, Wang L, Li Z H, Shen H N, Guo L J, Kuang Y M, Wang H Z, Li L S. ACS Photonics, 2018, 5:939

    30. [30]

      30 Lim J, Park Y S, Wu K F, Yun H J, Klimov V I. Nano Lett, 2018, 18:6645

    31. [31]

      31 Wang L W, Califano M, Zunger A, Franceschetti A. Phys Rev Lett, 2003, 91:056404

    32. [32]

      32 Nan W N, Niu Y A, Qin H Y, Cui F, Yang Y, Lai R C, Lin W Z, Peng X G. J Am Chem Soc, 2012, 134:19685

    33. [33]

      33 Efros A L, Rosen M, Kuno M, Nirmal M, Norris D J, Bawendi M. Phys Rev B, 1996, 54:4843

    34. [34]

      34 Norris D J, Efros A L, Rosen M, Bawendi M G. Phys Rev B, 1996, 53:16347

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