Svatek Simon A, Kerfoot James, Summerfield Alex, Nizovtsev Anton S, Korolkov Vladimir V, Taniguchi Takashi, Watanabe Kenji, Antolín Elisa, Besley Elena, Beton Peter H
Nikolaev Institute of Inorganic Chemistry , Siberian Branch of the Russian Academy of Sciences , Academician Lavrentiev Avenue 3 , Novosibirsk 630090 , Russian Federation.
National Institute for Materials Science , 1-1 Namiki , Tsukuba 305-0044 , Ibaraki , Japan.
Nano Lett. 2020 Jan 8;20(1):278-283. doi: 10.1021/acs.nanolett.9b03787. Epub 2019 Dec 13.
We show that ordered monolayers of organic molecules stabilized by hydrogen bonding on the surface of exfoliated few-layer hexagonal boron nitride (hBN) flakes may be incorporated into van der Waals heterostructures with integral few-layer graphene contacts forming a molecular/two-dimensional hybrid tunneling diode. Electrons can tunnel through the hBN/molecular barrier under an applied voltage , and we observe molecular electroluminescence from an excited singlet state with an emitted photon energy > , indicating upconversion by energies up to ∼1 eV. We show that tunneling electrons excite embedded molecules into singlet states in a two-step process via an intermediate triplet state through inelastic scattering and also observe direct emission from the triplet state. These heterostructures provide a solid-state device in which spin-triplet states, which cannot be generated by optical transitions, can be controllably excited and provide a new route to investigate the physics, chemistry, and quantum spin-based applications of triplet generation, emission, and molecular photon upconversion.
我们表明,通过氢键稳定在剥离的少层六方氮化硼(hBN)薄片表面的有机分子有序单层,可以与形成分子/二维混合隧道二极管的完整少层石墨烯接触结合到范德华异质结构中。在施加电压下,电子可以隧穿通过hBN/分子势垒,并且我们观察到来自激发单重态的分子电致发光,发射光子能量大于,表明能量高达约1 eV的上转换。我们表明,隧穿电子通过非弹性散射经由中间三重态以两步过程将嵌入分子激发到单重态,并且还观察到来自三重态的直接发射。这些异质结构提供了一种固态器件,其中不能通过光学跃迁产生的自旋三重态可以被可控地激发,并为研究三重态产生、发射和分子光子上转换的物理、化学和基于量子自旋的应用提供了一条新途径。