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Nitrates have long been ignored for practical uses as nonlinear optical (NLO) materials because they are usually very easy to dissolve in water; despite this, the π‐conjugated [NO3] is among the most desirable NLO‐active structural units. The cooperation of three structural chromophores, namely, Bi3O6OH short chains with 6s2 lone pair electrons, distorted TeO6 octahedra with d10 electrons, and π‐conjugated [NO3] triangles, generates a new nitrate NLO material, Bi3TeO6OH(NO3)2, which exhibits an enhanced phase‐matchable NLO response of three times that of KH2PO4 (3×KH2PO4), exceeding those of most nitrate NLO materials. Remarkably, the new material did not show obvious weight loss and degeneration of NLO response after being dipped in de‐ionized water for 24 h, indicating that it is highly resistant to water. Theoretical calculations reveal that foreign water molecules cannot stably stay in the crystal lattice of Bi3TeO6OH(NO3)2. These findings highlight the introduction of diverse chromophores into the nitrate systems as an effective approach for developing practical nitrate NLO materials that are of high water‐resistance and good optical performance.  相似文献   

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Die Übersetzung basiert auf der „Terminology for Compounds in the Si‐Al‐O‐N System“ der Commission on High Temperature Materials and Solid State Chemistry der Inorganic Chemistry Division der International Union of Pure and Applied Chemistry, veröffentlicht in Pure Appl. Chem. 1999 , 71, 1765–1769. Das Original wurde von R. Metselaar, Technische Universiteit Eindhoven (Niederlande) und D. S. Yan, Academia Sinica, Shanghai (China) für die Veröffentlichung vorbereitet.  相似文献   

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