252
8 Conclusion and Outlook
106. K.L. Seyler, P. Rivera, H. Yu, N.P. Wilson, E.L. Ray, D.G. Mandrus, J. Yan, W. Yao, X.
Xu, Signatures of moiré-trapped valley excitons in MoSe 2 /WSe 2 heterobilayers. Nature 567,
66–70 (2019)
107. K. Tran, G. Moody, F. Wu, X. Lu, J. Choi, K. Kim, A. Rai, D.A. Sanchez, J. Quan, A. Singh, J.
Embley, A. Zepeda, M. Campbell, T. Autry, T. Taniguchi, K. Watanabe, N. Lu, S.K. Banerjee,
K.L. Silverman, S. Kim, E. Tutuc, L. Yang, A.H. MacDonald, X. Li, Evidence for moiré
excitons in van der Waals heterostructures. Nature 567, 71–75 (2019)
108. E.M. Alexeev, D.A. Ruiz-Tijerina, M. Danovich, M.J. Hamer, D.J. Terry, P.K. Nayak, S.
Ahn, S. Pak, J. Lee, J.I. Sohn, M.R. Molas, M. Koperski, K. Watanabe, T. Taniguchi, K.S.
Novoselov, R.V. Gorbachev, H.S. Shin, V.I. Fal’ko, A.I. Tartakovskii, Resonantly hybridized
excitons in moiré superlattices in van der Waals heterostructures. Nature 567, 81–86 (2019)
109. X. Lu, P. Stepanov, W. Yang, M. Xie, M.A. Aamir, I. Das, C. Urgell, K. Watanabe, T. Taniguchi,
G. Zhang, A. Bachtold, A.H. MacDonald, D.K. Efetov, Superconductors, orbital magnets and
correlated states in magic-angle bilayer graphene. Nature 574, 653–657 (2019)
110. M. Shah, L.M. Schneider, A. Rahimi-Iman, Observation of intralayer and interlayer excitons in
monolayered WSe 2 /WS 2 heterostructure. Semiconductors 53(16), 2140–2146 (2019). https://
doi.org/10.1134/S1063782619120273
111. P. Schmidt, F. Vialla, S. Latini, M. Massicotte, K.-J. Tielrooij, S. Mastel, G. Navickaite, M.
Danovich, D.A. Ruiz-Tijerina, C. Yelgel, V. Fal’ko, K.S. Thygesen, R. Hillenbrand, F.H.L.
Koppens, Nano-imaging of intersubband transitions in van der Waals quantum wells. Nat.
Nanotechnol. 13, 1035–1041 (2018). https://doi.org/10.1038/s41565-018-0233-9
112. P. Qing, J. Gong, X. Lin, N. Yao, W. Shen, A. Rahimi-Iman, W. Fang, L. Tong, A simple
approach to fiber-based tunable microcavity with high coupling efficiency. Appl. Phys. Lett.
114, 021106 (2019). https://doi.org/10.1063/1.5083011
113. Sino-German Center for Research Promotion, First Sino-German Symposium on
Functional Nano-Materials Sciences, http://www.sinogermanscience.org.cn/de/aktuelles/de_
2018/201806/t20180626_489284.html. Online 2018, http://www.sinogermanscience.org.cn/
de/aktuelles/de_2018/201806/t20180626_489284.html. Online 2020
114. A. Rahimi-Iman, Advances in functional nano-materials science. Ann. Phys. 532(9), 2000015
(2020). https://doi.org/10.1002/andp.202000015
115. F.H.L. Koppens, T. Mueller, P. Avouris, A.C. Ferrari, M.S. Vitiello, M. Polini, Photodetectors
based on graphene, other two-dimensional materials and hybrid systems. Nat. Nanotechnol.
9, 780–793 (2014)
116. Y. Yu, F. Miao, J. He, Z. Ni, Photodetecting and light-emitting devices based on twodimensional materials. Chin. Phys. B 26, 036801 (2017)
117. D. Unuchek, A. Ciarrocchi, A. Avsar, K. Watanabe, T. Taniguchi, A. Kis, Room-temperature
electrical control of exciton flux in a van der waals heterostructure. Nature 560, 340–344
(2018)
118. R. Ribeiro-Palau, C. Zhang, K. Watanabe, T. Taniguchi, J. Hone, C.R. Dean, Twistable electronics with dynamically rotatable heterostructures. Science 361, 690–693 (2018)
119. R. Li, L.M. Schneider, W. Heimbrodt, H. Wu, M. Koch, A. Rahimi-Iman, Gate tuning of
Förster resonance energy transfer in a graphene - quantum dot FET photo-detector. Sci. Rep.
6, 28224 (2016). https://doi.org/10.1038/srep28224
120. P. Lu, J. Lang, Z. Weng, A. Rahimi-Iman, H. Wu, Hybrid structure of 2D layered GaTe with Au
nanoparticles for ultrasensitive detection of aromatic molecules. ACS Appl. Mater. Interfaces
10, 1356–1362 (2018). https://doi.org/10.1021/acsami.7b14121
121. A. Zak, M.A. Andersson, M. Bauer, J. Matukas, A. Lisauskas, H.G. Roskos, J. Stake, Antennaintegrated 0.6 THz FET direct detectors based on CVD graphene. Nano Lett. 14, 5834–5838
(2014)
122. M. Bauer, M. Andersson, A. Zak, P. Sakalas, D. Cibiraite, A. Lisauskas, M. Schröter, J.
Stake, H.G. Roskos, The potential for sensitivity enhancement by the thermoelectric effect in
carbon-nanotube and graphene Tera-FETs. J. Phys. Conf. Ser. 647, 012004 (2015)
123. W. Kong, Z. Ye, Z. Qi, B. Zhang, M. Wang, A. Rahimi-Iman, H. Wu, Characterization
of an abnormal photoluminescence behavior upon crystal-phase transition of perovskite
CH 3 NH 3 PbI 3 . Phys. Chem. Chem. Phys. 17, 16405–16411 (2015)
8 Conclusion and Outlook
106. K.L. Seyler, P. Rivera, H. Yu, N.P. Wilson, E.L. Ray, D.G. Mandrus, J. Yan, W. Yao, X.
Xu, Signatures of moiré-trapped valley excitons in MoSe 2 /WSe 2 heterobilayers. Nature 567,
66–70 (2019)
107. K. Tran, G. Moody, F. Wu, X. Lu, J. Choi, K. Kim, A. Rai, D.A. Sanchez, J. Quan, A. Singh, J.
Embley, A. Zepeda, M. Campbell, T. Autry, T. Taniguchi, K. Watanabe, N. Lu, S.K. Banerjee,
K.L. Silverman, S. Kim, E. Tutuc, L. Yang, A.H. MacDonald, X. Li, Evidence for moiré
excitons in van der Waals heterostructures. Nature 567, 71–75 (2019)
108. E.M. Alexeev, D.A. Ruiz-Tijerina, M. Danovich, M.J. Hamer, D.J. Terry, P.K. Nayak, S.
Ahn, S. Pak, J. Lee, J.I. Sohn, M.R. Molas, M. Koperski, K. Watanabe, T. Taniguchi, K.S.
Novoselov, R.V. Gorbachev, H.S. Shin, V.I. Fal’ko, A.I. Tartakovskii, Resonantly hybridized
excitons in moiré superlattices in van der Waals heterostructures. Nature 567, 81–86 (2019)
109. X. Lu, P. Stepanov, W. Yang, M. Xie, M.A. Aamir, I. Das, C. Urgell, K. Watanabe, T. Taniguchi,
G. Zhang, A. Bachtold, A.H. MacDonald, D.K. Efetov, Superconductors, orbital magnets and
correlated states in magic-angle bilayer graphene. Nature 574, 653–657 (2019)
110. M. Shah, L.M. Schneider, A. Rahimi-Iman, Observation of intralayer and interlayer excitons in
monolayered WSe 2 /WS 2 heterostructure. Semiconductors 53(16), 2140–2146 (2019). https://
doi.org/10.1134/S1063782619120273
111. P. Schmidt, F. Vialla, S. Latini, M. Massicotte, K.-J. Tielrooij, S. Mastel, G. Navickaite, M.
Danovich, D.A. Ruiz-Tijerina, C. Yelgel, V. Fal’ko, K.S. Thygesen, R. Hillenbrand, F.H.L.
Koppens, Nano-imaging of intersubband transitions in van der Waals quantum wells. Nat.
Nanotechnol. 13, 1035–1041 (2018). https://doi.org/10.1038/s41565-018-0233-9
112. P. Qing, J. Gong, X. Lin, N. Yao, W. Shen, A. Rahimi-Iman, W. Fang, L. Tong, A simple
approach to fiber-based tunable microcavity with high coupling efficiency. Appl. Phys. Lett.
114, 021106 (2019). https://doi.org/10.1063/1.5083011
113. Sino-German Center for Research Promotion, First Sino-German Symposium on
Functional Nano-Materials Sciences, http://www.sinogermanscience.org.cn/de/aktuelles/de_
2018/201806/t20180626_489284.html. Online 2018, http://www.sinogermanscience.org.cn/
de/aktuelles/de_2018/201806/t20180626_489284.html. Online 2020
114. A. Rahimi-Iman, Advances in functional nano-materials science. Ann. Phys. 532(9), 2000015
(2020). https://doi.org/10.1002/andp.202000015
115. F.H.L. Koppens, T. Mueller, P. Avouris, A.C. Ferrari, M.S. Vitiello, M. Polini, Photodetectors
based on graphene, other two-dimensional materials and hybrid systems. Nat. Nanotechnol.
9, 780–793 (2014)
116. Y. Yu, F. Miao, J. He, Z. Ni, Photodetecting and light-emitting devices based on twodimensional materials. Chin. Phys. B 26, 036801 (2017)
117. D. Unuchek, A. Ciarrocchi, A. Avsar, K. Watanabe, T. Taniguchi, A. Kis, Room-temperature
electrical control of exciton flux in a van der waals heterostructure. Nature 560, 340–344
(2018)
118. R. Ribeiro-Palau, C. Zhang, K. Watanabe, T. Taniguchi, J. Hone, C.R. Dean, Twistable electronics with dynamically rotatable heterostructures. Science 361, 690–693 (2018)
119. R. Li, L.M. Schneider, W. Heimbrodt, H. Wu, M. Koch, A. Rahimi-Iman, Gate tuning of
Förster resonance energy transfer in a graphene - quantum dot FET photo-detector. Sci. Rep.
6, 28224 (2016). https://doi.org/10.1038/srep28224
120. P. Lu, J. Lang, Z. Weng, A. Rahimi-Iman, H. Wu, Hybrid structure of 2D layered GaTe with Au
nanoparticles for ultrasensitive detection of aromatic molecules. ACS Appl. Mater. Interfaces
10, 1356–1362 (2018). https://doi.org/10.1021/acsami.7b14121
121. A. Zak, M.A. Andersson, M. Bauer, J. Matukas, A. Lisauskas, H.G. Roskos, J. Stake, Antennaintegrated 0.6 THz FET direct detectors based on CVD graphene. Nano Lett. 14, 5834–5838
(2014)
122. M. Bauer, M. Andersson, A. Zak, P. Sakalas, D. Cibiraite, A. Lisauskas, M. Schröter, J.
Stake, H.G. Roskos, The potential for sensitivity enhancement by the thermoelectric effect in
carbon-nanotube and graphene Tera-FETs. J. Phys. Conf. Ser. 647, 012004 (2015)
123. W. Kong, Z. Ye, Z. Qi, B. Zhang, M. Wang, A. Rahimi-Iman, H. Wu, Characterization
of an abnormal photoluminescence behavior upon crystal-phase transition of perovskite
CH 3 NH 3 PbI 3 . Phys. Chem. Chem. Phys. 17, 16405–16411 (2015)