Slow cooling and efficient extraction of C-exciton hot carriers in MoS2 monolayer

10.1038/ncomms13906

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Main Authors: Wang L., Wang Z., Wang H.-Y., Grinblat G., Huang Y.-L., Wang D., Ye X.-H., Li X.-B., Bao Q., Wee A.-S., Maier S.A., Chen Q.-D., Zhong M.-L., Qiu C.-W., Sun H.-B.
Other Authors: DEPT OF ELECTRICAL & COMPUTER ENGG
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Published: Nature Publishing Group 2020
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Online Access:https://scholarbank.nus.edu.sg/handle/10635/174499
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Institution: National University of Singapore
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spelling sg-nus-scholar.10635-1744992023-11-01T07:48:17Z Slow cooling and efficient extraction of C-exciton hot carriers in MoS2 monolayer Wang L. Wang Z. Wang H.-Y. Grinblat G. Huang Y.-L. Wang D. Ye X.-H. Li X.-B. Bao Q. Wee A.-S. Maier S.A. Chen Q.-D. Zhong M.-L. Qiu C.-W. Sun H.-B. DEPT OF ELECTRICAL & COMPUTER ENGG DEPT OF PHYSICS disulfide graphene molybdenum molybdenum disulfide transition element unclassified drug chemical binding cooling electron extraction method photovoltaic system quantum mechanics sulfide transition element Article cooling energy extraction screening 10.1038/ncomms13906 Nature Communications 8 13906 2020-09-06T16:06:50Z 2020-09-06T16:06:50Z 2017 Article Wang L., Wang Z., Wang H.-Y., Grinblat G., Huang Y.-L., Wang D., Ye X.-H., Li X.-B., Bao Q., Wee A.-S., Maier S.A., Chen Q.-D., Zhong M.-L., Qiu C.-W., Sun H.-B. (2017). Slow cooling and efficient extraction of C-exciton hot carriers in MoS2 monolayer. Nature Communications 8 : 13906. ScholarBank@NUS Repository. https://doi.org/10.1038/ncomms13906 2041-1723 https://scholarbank.nus.edu.sg/handle/10635/174499 Nature Publishing Group Unpaywall 20200831
institution National University of Singapore
building NUS Library
continent Asia
country Singapore
Singapore
content_provider NUS Library
collection ScholarBank@NUS
topic disulfide
graphene
molybdenum
molybdenum disulfide
transition element
unclassified drug
chemical binding
cooling
electron
extraction method
photovoltaic system
quantum mechanics
sulfide
transition element
Article
cooling
energy
extraction
screening
spellingShingle disulfide
graphene
molybdenum
molybdenum disulfide
transition element
unclassified drug
chemical binding
cooling
electron
extraction method
photovoltaic system
quantum mechanics
sulfide
transition element
Article
cooling
energy
extraction
screening
Wang L.
Wang Z.
Wang H.-Y.
Grinblat G.
Huang Y.-L.
Wang D.
Ye X.-H.
Li X.-B.
Bao Q.
Wee A.-S.
Maier S.A.
Chen Q.-D.
Zhong M.-L.
Qiu C.-W.
Sun H.-B.
Slow cooling and efficient extraction of C-exciton hot carriers in MoS2 monolayer
description 10.1038/ncomms13906
author2 DEPT OF ELECTRICAL & COMPUTER ENGG
author_facet DEPT OF ELECTRICAL & COMPUTER ENGG
Wang L.
Wang Z.
Wang H.-Y.
Grinblat G.
Huang Y.-L.
Wang D.
Ye X.-H.
Li X.-B.
Bao Q.
Wee A.-S.
Maier S.A.
Chen Q.-D.
Zhong M.-L.
Qiu C.-W.
Sun H.-B.
format Article
author Wang L.
Wang Z.
Wang H.-Y.
Grinblat G.
Huang Y.-L.
Wang D.
Ye X.-H.
Li X.-B.
Bao Q.
Wee A.-S.
Maier S.A.
Chen Q.-D.
Zhong M.-L.
Qiu C.-W.
Sun H.-B.
author_sort Wang L.
title Slow cooling and efficient extraction of C-exciton hot carriers in MoS2 monolayer
title_short Slow cooling and efficient extraction of C-exciton hot carriers in MoS2 monolayer
title_full Slow cooling and efficient extraction of C-exciton hot carriers in MoS2 monolayer
title_fullStr Slow cooling and efficient extraction of C-exciton hot carriers in MoS2 monolayer
title_full_unstemmed Slow cooling and efficient extraction of C-exciton hot carriers in MoS2 monolayer
title_sort slow cooling and efficient extraction of c-exciton hot carriers in mos2 monolayer
publisher Nature Publishing Group
publishDate 2020
url https://scholarbank.nus.edu.sg/handle/10635/174499
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