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- W2898832670 abstract "Monolayer transition metal dichalcogenides (1L-TMDs) have attracted tremendous attention as two-dimensional (2D) light-emitting semiconductors because the optical properties of 1L-TMDs are primarily determined by excitonic transitions, providing an ideal platform for the study or practical uses of 2D confined exciton systems. While pristine 1L-TMDs experience a low quantum yield (QY) due to the high density of lattice defects, significant advances have been made for increasing the QY based on various experimental approaches and theoretical understanding of modulating defect states of 1L-TMDs. Under the high exciton density condition, the strong interexciton interaction observed in 1L-TMDs was determined to be the primary limiting factor of QY. Here, we outline recent discoveries and efforts to overcome the lattice defects and exciton–exciton annihilation with the aim of improving the efficiency of light emission of 1L-TMDs. Along with perspectives on future research to realize the defect-free and highly luminescent TMDs, we propose a simple scheme of suppressing the EEA effect to maintain the QY of 1L-TMDs in high exciton densities." @default.
- W2898832670 created "2018-11-09" @default.
- W2898832670 creator A5028083682 @default.
- W2898832670 creator A5061856949 @default.
- W2898832670 date "2018-10-30" @default.
- W2898832670 modified "2023-09-29" @default.
- W2898832670 title "Controlling Lattice Defects and Inter-Exciton Interactions in Monolayer Transition Metal Dichalcogenides for Efficient Light Emission" @default.
- W2898832670 cites W1529807616 @default.
- W2898832670 cites W1561553867 @default.
- W2898832670 cites W1605152380 @default.
- W2898832670 cites W1614716146 @default.
- W2898832670 cites W1930734459 @default.
- W2898832670 cites W1943833960 @default.
- W2898832670 cites W1972626369 @default.
- W2898832670 cites W1978566690 @default.
- W2898832670 cites W1992358212 @default.
- W2898832670 cites W2000648605 @default.
- W2898832670 cites W2001415936 @default.
- W2898832670 cites W2011893870 @default.
- W2898832670 cites W2013144732 @default.
- W2898832670 cites W2017871657 @default.
- W2898832670 cites W2030596327 @default.
- W2898832670 cites W2031316066 @default.
- W2898832670 cites W2035717284 @default.
- W2898832670 cites W2035994662 @default.
- W2898832670 cites W2037969399 @default.
- W2898832670 cites W2043890607 @default.
- W2898832670 cites W2049258976 @default.
- W2898832670 cites W2050303222 @default.
- W2898832670 cites W2051698493 @default.
- W2898832670 cites W2056238566 @default.
- W2898832670 cites W2059116268 @default.
- W2898832670 cites W2069635547 @default.
- W2898832670 cites W2070289456 @default.
- W2898832670 cites W2071992033 @default.
- W2898832670 cites W2072312985 @default.
- W2898832670 cites W2075689277 @default.
- W2898832670 cites W2077232836 @default.
- W2898832670 cites W2101606767 @default.
- W2898832670 cites W2107432007 @default.
- W2898832670 cites W2113709688 @default.
- W2898832670 cites W2114311046 @default.
- W2898832670 cites W2118635359 @default.
- W2898832670 cites W2140677129 @default.
- W2898832670 cites W2141958586 @default.
- W2898832670 cites W2144533183 @default.
- W2898832670 cites W2167267527 @default.
- W2898832670 cites W2169515998 @default.
- W2898832670 cites W2206268030 @default.
- W2898832670 cites W2208872007 @default.
- W2898832670 cites W2239250643 @default.
- W2898832670 cites W2298614004 @default.
- W2898832670 cites W2302133554 @default.
- W2898832670 cites W2309234657 @default.
- W2898832670 cites W2322923573 @default.
- W2898832670 cites W2324777531 @default.
- W2898832670 cites W2329601047 @default.
- W2898832670 cites W2331561937 @default.
- W2898832670 cites W2335641012 @default.
- W2898832670 cites W2335838175 @default.
- W2898832670 cites W2338620906 @default.
- W2898832670 cites W2343151831 @default.
- W2898832670 cites W2403929279 @default.
- W2898832670 cites W2503146384 @default.
- W2898832670 cites W2513770285 @default.
- W2898832670 cites W2558322622 @default.
- W2898832670 cites W2594167659 @default.
- W2898832670 cites W2597286568 @default.
- W2898832670 cites W2622575641 @default.
- W2898832670 cites W2625929060 @default.
- W2898832670 cites W2648588734 @default.
- W2898832670 cites W2731138056 @default.
- W2898832670 cites W2741904872 @default.
- W2898832670 cites W2752483144 @default.
- W2898832670 cites W2767000867 @default.
- W2898832670 cites W2774333449 @default.
- W2898832670 cites W2793594696 @default.
- W2898832670 cites W2800692100 @default.
- W2898832670 cites W2804843328 @default.
- W2898832670 cites W2809606471 @default.
- W2898832670 cites W3101295929 @default.
- W2898832670 cites W3101696164 @default.
- W2898832670 cites W3105860580 @default.
- W2898832670 cites W3123709910 @default.
- W2898832670 cites W4236533514 @default.
- W2898832670 cites W4300707246 @default.
- W2898832670 cites W764825049 @default.
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- W2898832670 doi "https://doi.org/10.1021/acsphotonics.8b00645" @default.
- W2898832670 hasPublicationYear "2018" @default.
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