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- 01GJZAG2B63VKR08WAS4RR7DP1 classification A1.
- 01GJZAG2B63VKR08WAS4RR7DP1 date "2022".
- 01GJZAG2B63VKR08WAS4RR7DP1 language "eng".
- 01GJZAG2B63VKR08WAS4RR7DP1 type journalArticle.
- 01GJZAG2B63VKR08WAS4RR7DP1 hasPart 01GK00FXFC6H64NC5Z14SN4X97.pdf.
- 01GJZAG2B63VKR08WAS4RR7DP1 hasPart 01GQ4VMS4204RDK1A3R4B3B4JQ.pdf.
- 01GJZAG2B63VKR08WAS4RR7DP1 subject "Chemistry".
- 01GJZAG2B63VKR08WAS4RR7DP1 subject "History and Archaeology".
- 01GJZAG2B63VKR08WAS4RR7DP1 doi "10.1021/acsanm.2c01470".
- 01GJZAG2B63VKR08WAS4RR7DP1 issn "2574-0970".
- 01GJZAG2B63VKR08WAS4RR7DP1 issue "8".
- 01GJZAG2B63VKR08WAS4RR7DP1 volume "5".
- 01GJZAG2B63VKR08WAS4RR7DP1 abstract "Transition-metal dichalcogenide (TMD) nano-sheets have become an intensively investigated topic in the field of 2D nanomaterials, especially due to the direct semiconductor nature, and the broken inversion symmetry in the odd-layer number, of some of their family members. These properties make TMDs attractive for different technological applications such as photovoltaics, optoelectronics, valleytronics, and hydrogen evolu-tion reactions. Among them, MoX2 (X = S and Se) are turned to direct gap when their thickness is thinned down to monolayer, and thus, efforts toward obtaining large-scale monolayer TMDs are crucial for technological applications. Colloidal synthesis of TMDs has been developed in recent years, as it provides a cost-efficient and scalable way to produce few-layer TMDs having homogeneous size and thickness, yet obtaining a monolayer has proven challenging. Here, we present a method for the colloidal synthesis of mono-and few-layer MoX2 (X = S and Se) using elemental chalcogenide and metal chloride as precursors. Using a synthesis with slow injection of the MoCl5 precursor under a nitrogen atmosphere, and optimizing the synthesis parameters with a design of experiments approach, we obtained a MoX2 sample with the semiconducting (1H) phase and optical band gaps of 1.96 eV for H-1-MoS2 and 1.67 eV for 1H-MoSe2, respectively, consistent with a large monolayer yield in the ensemble. Both display photoluminescence at cryogenic and room temperature, paving the way for optical spectroscopy studies and photonic applications of colloidal TMD nanosheets.".
- 01GJZAG2B63VKR08WAS4RR7DP1 author 0F8AEA2C-F0EE-11E1-A9DE-61C894A0A6B4.
- 01GJZAG2B63VKR08WAS4RR7DP1 author 6CF404C4-BAC7-11E8-A22B-3DF65607D3EF.
- 01GJZAG2B63VKR08WAS4RR7DP1 author C527EAC4-7338-11E3-8967-394011BDE39D.
- 01GJZAG2B63VKR08WAS4RR7DP1 author F4614F2A-F0ED-11E1-A9DE-61C894A0A6B4.
- 01GJZAG2B63VKR08WAS4RR7DP1 author F5162F6C-F0ED-11E1-A9DE-61C894A0A6B4.
- 01GJZAG2B63VKR08WAS4RR7DP1 author F74183B8-F0ED-11E1-A9DE-61C894A0A6B4.
- 01GJZAG2B63VKR08WAS4RR7DP1 author urn:uuid:1087c13b-d3e2-4da7-9934-b46d08375af2.
- 01GJZAG2B63VKR08WAS4RR7DP1 author urn:uuid:1ba96ae9-4d3e-4f57-bb6b-d5f99d471ab9.
- 01GJZAG2B63VKR08WAS4RR7DP1 author urn:uuid:1cce6a2b-d053-4b66-8545-3cd9d2834fe5.
- 01GJZAG2B63VKR08WAS4RR7DP1 author urn:uuid:2305f74a-9019-4c6b-b479-f6bc0a33e209.
- 01GJZAG2B63VKR08WAS4RR7DP1 author urn:uuid:2c685614-85a0-462f-a8f1-441b37a66a7f.
- 01GJZAG2B63VKR08WAS4RR7DP1 author urn:uuid:3ae20ee1-f88f-424a-a0f9-b40ba7f99ad3.
- 01GJZAG2B63VKR08WAS4RR7DP1 author urn:uuid:5ddbf5fd-6801-4735-88a4-6d4313e96e11.
- 01GJZAG2B63VKR08WAS4RR7DP1 author urn:uuid:7e8e92d3-2d31-4790-8ae5-19920a2ba9bf.
- 01GJZAG2B63VKR08WAS4RR7DP1 author urn:uuid:ae63188f-0c51-4183-b094-a92ad8f1b137.
- 01GJZAG2B63VKR08WAS4RR7DP1 dateCreated "2022-11-28T14:33:14Z".
- 01GJZAG2B63VKR08WAS4RR7DP1 dateModified "2024-10-29T19:03:10Z".
- 01GJZAG2B63VKR08WAS4RR7DP1 name "Colloidal continuous injection synthesis of fluorescent MoX2 (X = S, Se) nanosheets as a first step toward photonic applications".
- 01GJZAG2B63VKR08WAS4RR7DP1 pagination urn:uuid:b6f2b07d-a06d-462d-97d6-a644bf7c0461.
- 01GJZAG2B63VKR08WAS4RR7DP1 sameAs LU-01GJZAG2B63VKR08WAS4RR7DP1.
- 01GJZAG2B63VKR08WAS4RR7DP1 sourceOrganization urn:uuid:2cfa1716-fb7a-402c-813a-4560a66d46eb.
- 01GJZAG2B63VKR08WAS4RR7DP1 sourceOrganization urn:uuid:9e4f0d64-30a4-49f0-88fa-f7e7cc319e1f.
- 01GJZAG2B63VKR08WAS4RR7DP1 type A1.