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Structure–Photoluminescence Relationship in Ce3+-Doped K5Y(P2O7)2 and Its Sensitization to Dy3+ with Enhanced White Light Emission | Inorganic Chemistry

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管理番号 新品 :272706819
中古 :272706819-1
メーカー a7a148112 発売日 2025-05-16 14:40 定価 20000円
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Structure–Photoluminescence Relationship in Ce3+-Doped K5Y(P2O7)2 and Its Sensitization to Dy3+ with Enhanced White Light Emission | Inorganic Chemistry

Structure–Photoluminescence Relationship in Ce3+-Doped K5Y(P2O7)2 and Its  Sensitization to Dy3+ with Enhanced White Light Emission | Inorganic  ChemistryStructure–Photoluminescence Relationship in Ce3+-Doped K5Y(P2O7)2 and Its Sensitization to Dy3+ with Enhanced White Light Emission | Inorganic Chemistry,Synergistic Effect of P Doping and Mo-Ni-Based Heterostructure  Electrocatalyst for Overall Water SplittingSynergistic Effect of P Doping and Mo-Ni-Based Heterostructure Electrocatalyst for Overall Water Splitting,Broadband emission originating from the stereochemical expression of 6s 2  lone pairs in two-dimensional lead bromide perovskites - Dalton  Transactions (RSC Publishing) DOI:10.1039/D3DT01627GBroadband emission originating from the stereochemical expression of 6s 2 lone pairs in two-dimensional lead bromide perovskites - Dalton Transactions (RSC Publishing) DOI:10.1039/D3DT01627G,Zebrafish fin regeneration involves generic and regeneration-specific  osteoblast injury responses | eLifeZebrafish fin regeneration involves generic and regeneration-specific osteoblast injury responses | eLife,Improving the Antioxidant Properties of Tin-Based Perovskite for the  Enhanced Performance of Near-Infrared Light-Emitting Diodes Through the  Synergy of Sn and SnF2Improving the Antioxidant Properties of Tin-Based Perovskite for the Enhanced Performance of Near-Infrared Light-Emitting Diodes Through the Synergy of Sn and SnF2

 

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