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Dec 20, 2023 -
FTIR data for article "Black Silicon as Anti-Reflective Structure for Infrared Imaging Applications"
Comma Separated Values - 127.4 KB -
MD5: 23ef36b451c7598a250cd17b344d348f
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Dec 20, 2023 -
FTIR data for article "Black Silicon as Anti-Reflective Structure for Infrared Imaging Applications"
Comma Separated Values - 127.4 KB -
MD5: fcae7722016c610953a46912f4d25dad
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Dec 20, 2023 -
FTIR data for article "Black Silicon as Anti-Reflective Structure for Infrared Imaging Applications"
Comma Separated Values - 127.4 KB -
MD5: 0d9a8b2e5dbfa88239b4b19a7e360de5
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Dec 20, 2023 -
FTIR data for article "Black Silicon as Anti-Reflective Structure for Infrared Imaging Applications"
Comma Separated Values - 127.4 KB -
MD5: 2fc2db9b686cd4f3ddaebd11f9c2470d
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Dec 20, 2023 -
FTIR data for article "Black Silicon as Anti-Reflective Structure for Infrared Imaging Applications"
Comma Separated Values - 127.4 KB -
MD5: 0ab602a882f93cadcd9929cb85dd21ec
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Dec 20, 2023 -
FTIR data for article "Black Silicon as Anti-Reflective Structure for Infrared Imaging Applications"
Comma Separated Values - 127.4 KB -
MD5: aae7a4114d04afe36a615288804f1fef
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Dec 20, 2023 -
FTIR data for article "Black Silicon as Anti-Reflective Structure for Infrared Imaging Applications"
Comma Separated Values - 127.4 KB -
MD5: f7de511c6d4533b5053349ed34ca53d0
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Dec 20, 2023 -
FTIR data for article "Black Silicon as Anti-Reflective Structure for Infrared Imaging Applications"
Comma Separated Values - 127.4 KB -
MD5: 3493a01e5dd4cc2bf7d8dd856ba018d4
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Dec 20, 2023 -
FTIR data for article "Black Silicon as Anti-Reflective Structure for Infrared Imaging Applications"
Comma Separated Values - 127.4 KB -
MD5: 448ded321e4971c68c634a6f1f724abd
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Nov 24, 2023
Huang Hao, 2023, "Conductive Metal-covalent Organic Frameworks as Novel Catalytic Platform for Reduction of Nitrate to Ammonia", https://doi.org/10.23642/USN.24235267, DataverseNO, V1
DATASET MIGRATED FROM FIGSHARE: With their abundant metal sites, ordered porous structure and great conductivity, conductive metal-organic frameworks display many excellent single-atom electrocatalytic activities, superior to conventional inorganic nanostructure. However, their electrochemical application is greatly limited by the fragile coordinat... |
