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No.         ·Ö×Óʽ         Ó¢ÎÄÆ·Ãû         ÖÐÎÄÆ·Ãû         CASN         Íâ¹Û¡¢ÐÔÖÊ         ÓÃ;
1         La2O3         Lanthanum Oxide         Ñõ»¯ïç         1312-81-8         °×É«·ÛÄ©£¬²»ÈÜÓÚË®£¬¿ÉÈÜÓÚÎÞ»úËá¡£¼«Ò×Îü³±£¬ÄÜѸËÙÎüÊÕ¿ÕÆøÖеÄË®·ÝºÍ¶þÑõ»¯Ì¼£¬Ó¦ÖÃÓÚÃÜ·âÈÝÆ÷ÄÚ         Ö÷ÒªÓÃÓÚÖÆÔìÉãÓ°»ú£¬ÏÔ΢¾µ£¬ËùÐè¸÷ÖÖ¹âѧ²£Á§²¿¼þÒÔ¼°¹âµ¼ÏËά¡£ÔÚµç×ÓÌմɹ¤ÒµÒÔ¼°´ß»¯¼ÁÖÆ±¸µÈ·½ÃæÒ²ÓÐÒ»¶¨µÄÓÃ;
2         CeO2         Cerium Oxide         Ñõ»¯îæ         1306-38-3         dz»ÆÉ«·ÛÄ©£¬²»ÈÜÓÚË®£¬¿ÉÈÜÓÚÎÞ»úËá         Ö÷ÒªÓÃÓÚÖÆÔìÉãÓ°»ú£¬ÏÔ΢¾µ£¬ËùÐè¸÷ÖÖ¹âѧ²£Á§²¿¼þÒÔ¼°¹âµ¼ÏËά¡£ÔÚµç×ÓÌմɹ¤ÒµÒÔ¼°´ß»¯¼ÁÖÆ±¸µÈ·½ÃæÒ²ÓÐÒ»¶¨µÄÓÃ;
3         Pr6O11         Praseodymium
Oxide         Ñõ»¯ïè         12037-29-5         ºÚºÖÉ«·ÛÄ©£¬²»ÈÜÓÚË®£¬¿ÉÈÜÓÚÎÞ»úËá         Ö÷ÒªÓÃÓÚÖÆÔìÉãÓ°»ú£¬ÏÔ΢¾µ£¬ËùÐè¸÷ÖÖ¹âѧ²£Á§²¿¼þÒÔ¼°¹âµ¼ÏËά¡£ÔÚµç×ÓÌմɹ¤ÒµÒÔ¼°´ß»¯¼ÁÖÆ±¸µÈ·½ÃæÒ²ÓÐÒ»¶¨µÄÓÃ;
4         Nd2O3         Neodymium Oxide         Ñõ»¯îÏ         1313-97-9         µ­×ÏÉ«¹ÌÌå·ÛÄ©£¬Ò×Êܳ±£¬²»ÈÜÓÚË®£¬ÄÜÈÜÓÚÎÞ»úËá         ÓÃÓÚÖÆÔìÓÀ´Å²ÄÁÏ¡¢²£Á§¡¢ÌմɵÄ×ÅÉ«¼ÁºÍ¼¤¹â²ÄÁÏ
5         ¡¡         PR£«ND Oxide         Ñõ»¯ïèîÏ         ¡¡         »ÒÉ«·ÛÄ©£¬²»ÈÜÓÚË®£¬¿ÉÈÜÓÚÎÞ»úËá         ÓÃÓÚÖÆÔìÓÀ´Å²ÄÁÏ
6         Sm2O3         Samarium Oxide         Ñõ»¯îÌ         12060-58-1         µ­»ÆÉ«¹ÌÌå·ÛÄ©£¬²»ÈÜÓÚË®£¬Ò×ÈÜÓÚËá¡£Ò×ÎüÊÕ¿ÕÆøÖеÄË®·ÖºÍ¶þÑõ»¯Ì¼         ÓÃÓÚÖÆÔì¸ß½ÃÍçÁ¦ºÍ¸ß´ÅÄÜ»ýµÄîÌîܺϽð
7         Eu2O3         Europium Oxide         Ñõ»¯îð          1308-96-9         ÂÔ´øÎ¢ºìÉ«µÄ·ÛÄ©£¬²»ÈÜÓÚË®£¬¿ÉÈÜÓÚÎÞ»úËᣬÄÜѸËÙÎüÊÕ¿ÕÆøÖеÄË®ºÍ¶þÑõ»¯Ì¼         ÓÃ×÷¶àÖÖÓ«¹â·ÛµÄ¼¤»î¼Á£¬ÊǺìɫӫ¹â·ÛµÄ±ØÒª²ÄÁÏ£¬Ò²¿ÉÒÔ×÷Ϊԭ×Ó·´Ó¦¶ÑµÄ¿ØÖƲÄÁÏ¡£
8         Gd2O3         Gadolinium Oxide         Ñõ»¯îÅ         12064-62-9         °×É«·ÛÄ©£¬²»ÈÜÓÚË®£¬ÄÜÈÜÓÚÎÞ»úËá¡£ÔÚ¿ÕÆøÖнÏÒ×ÎüÊÕË®·ÖºÍ¶þÑõ»¯Ì¼         ÓÃÓÚ¸÷ÖÖÓ«¹â·Û£¬Ô­×Ó·´Ó¦¶ÑÖеÄÖÐ×ÓÎüÊÕ²ÄÁÏ£¬´ÅÅݲÄÁÏ£¬Ôö¸ÐÆÁ²ÄÁÏ¡£ÔÚ¹âѧ²£Á§¡¢µç×Ó¹¤ÒµµÈ·½ÃæÒ²ÓÐÒ»¶¨µÄÓÃ;£¬Ò²ÓÃ×÷îÅïØÊ¯Áñʯ²ÄÁÏ
9         Tb4O7         Terbium Oxide         Ñõ»¯ï«         12037-01-3         רºÖÉ«·ÛÄ©£¬²»ÈÜÓÚË®£¬ÈÜÓÚËá         ÓÃ×÷Ó«¹â²ÄÁϼ¤»ð¼ÁºÍʯÁñʯµÄ²ôÈë¼Á
10         Dy2O3         Dysprosium Oxide         Ñõ»¯ïá         1308-87-8         °×É«·ÛÄ©£¬²»ÈÜÓÚË®£¬ÈÜÓÚËá         ×÷ʯÁñʯÌí¼Ó¼Á£¬ÖÆÔì½ðÊôÂ±ËØµÆºÍ·´Ó¦¶Ñ¿ØÖƲÄÁÏ¡£×÷ÓÀ´Å²ÄÁÏÌí¼Ó¼Á
11         Ho2O3         Holmium Oxide         Ñõ»¯îØ         12055-62-8         µ­»ÆÉ«·ÛÄ©£¬²»ÈÜÓÚË®£¬ÈÜÓÚËá         ÓÃ×÷¶àÖÖʯÁñʯ²ôÈë¼ÁºÍÖÆÔì½ðÊôÂ±ËØµÆ
12         Er2O3         Erbium Oxide          Ñõ»¯îï         12061-16-4         ÌÒºìÉ«·ÛÄ©£¬²»ÈÜÓÚË®£¬ÈÜÓÚËá         ÓÃ×÷·´Ó¦¶Ñ¿ØÖƲÄÁÏ£¬ÌØÖÖ²£Á§Æ÷Ãó×ÅÉ«
13         Tm2O3         Thulium Oxide         Ñõ»¯îû         12036-44-1         °×É«ÂÔ´øÎ¢ÂÌÉ«·ÛÄ©£¬²»ÈÜÓÚË®£¬ÈÜÓÚËá         ÓÃÓÚÓ«¹â²ÄÁϼ¤¹â¼Á£¬µç×Ó¹¤Òµ¼°¿ÆÑ§Ñо¿
14         Yb2O3         Ytterbium Oxide         Ñõ»¯ïî         1314-37-0         °×É«·ÛÄ©£¬²»ÈÜÓÚË®£¬ÈÜÓÚËá         ÓÃÓÚµç×Ó¹¤Òµ¼°¿ÆÑ§Ñо¿
15         Lu2O3         Lutetium Oxide         Ñõ»¯ïå         12032-20-1         °×É«·ÛÄ©£¬²»ÈÜÓÚË®£¬ÈÜÓÚËá         ÓÃÓÚµç×Ó¹¤Òµ¼°¿ÆÑ§Ñо¿
16         Sc2O3         Scandium oxide         Ñõ»¯îÖ         12060-08-1         Appearance: White
Solubility: Insoluble in
water, moderately
soluble in strong
mineral acids
Stability: Slightly hygroscopic         Scandium oxide, also called
Scandia, is suitable for the high index component of UV,
AR and bandpass coatings due
to its high index value,
transparency, and layer
hardness make high damage
thresholds have been reported
for combinations with silicon
dioxide or magnesium fluoride
for use in AR
17         Y2O3         Yttrium Oxide         Ñõ»¯îÆ         1314-36-9         °×É«·ÛÄ©£¬²»ÈÜÓÚË®£¬Ò×ÈÜÓÚËá         ¹ã·ºµØÓÃÓÚ¸÷ÖÖÓ«¹â²ÄÁÏ£¬¸ßÖÊÁ¿µÄÄÍ»ð²ÄÁÏ£¬ÈËÔ챦ʯ¼¤¹â¾§Ìå¡¢³¬µ¼²ÄÁÏÒÔ¼°µç×Ó¹¤Òµ·½ÃæµÄÐí¶à¼â¶ËÓ¦ÓÃ
Ï¡ÍÁ·ú»¯Îï
¡¡         PrF3         Praseodymium
Fluoride         ·ú»¯ïè         13709-46-1         Appearance£ºGreen
Solubility: Insoluble in water, moderately soluble in strong mineral acids
Stability: Slightly hygroscopic         Praseodymium Fluoride, is the main raw materials for making Praseodymium Metal, and also applied in colour glasses and enamels; when mixed with certain other materials, praseodymium produces an intense clean yellow colour in glass.
¡¡         NdF3         Neodymium
Fluoride         ·ú»¯îÏ         13709-42-7         Appearance: Purple
Solubility: Insoluble in water, moderately soluble in strong mineral acids
Stability: Slightly hygroscopic         Neodymium Fluoride mainly used for glass, crystal and capacitors, and is the main raw material for making Neodymium Metal and alloys.
¡¡         SmF3         Samarium
Fluoride         ·ú»¯îÌ         13765-24-7         Appearance: White
Solubility: Insoluble in water, moderately soluble in strong mineral acids
Stability: Slightly hygroscopic         Samarium Fluoride has specialized uses in glass, phosphors, lasers, and thermoelectric devices.
¡¡         EuF3         Europium
Fluoride         ·ú»¯îð          13765-25-8         Appearance: White
Solubility: Insoluble in water, moderately soluble in strong mineral acids
Stability: Slightly hygroscopic         Europium Fluoride is used as a phosphor activator for color cathode-ray tubes and liquid-crystal displays used in computer monitors and televisions employ europium oxide as the red phosphor
¡¡         GdF3         Gadolinium Fluoride         ·ú»¯îÅ         13765-26-9         Appearance: White
Solubility: Insoluble in water, moderately soluble in strong mineral acids
Stability: Slightly hygroscopic         Gadolinium Fluoride is used for making optical glass and dopant for gadolinium yttrium garnets which have microwave applications.
¡¡         TbF3         Terbium Fluoride          ·ú»¯ï«         13708-63-9         Appearance: White
Solubility: Insoluble in
water, moderately
soluble in strong
mineral acids
Stability: Slightly hygroscopic         Terbium Fluoride is used in special lasers and as a dopant in solid-state devices, and has important role as an activator for green phosphors used in colour TV tubes.
¡¡         DyF3         Dysprosium
Fluoride         ·ú»¯ïá         13569-80-7         Appearance: White
Solubility: Insoluble in water, soluble in strong mineral acids
Stability: Slightly
hygroscopic         Dysprosium Fluoride has specialized uses in laser glass, phosphors, Dysprosium halide lamp and also as the main raw materials for making Dysprosium Metal.
¡¡         HoF3         Holmium Fluoride         ·ú»¯îØ         13760-78-6         Appearance: Light yellow
Solubility: Soluble in water, moderately soluble in strong mineral acids
Stability: Slightly hygroscopic         Holmium Fluoride has specialized uses in ceramics, glass, phosphors and metal halide lamp, and dopant to garnet laser.
¡¡         ErF3         Erbium Fluoride         ·ú»¯îï         13760-83-3         Appearance: Pink color
Solubility: Insoluble in water, strongly soluble in strong mineral acids
Stability: Slightly hygroscopic         Erbium Fluoride, an important colourant in glass manufacturing and porcelain enamel glazes, and also as main raw material for producing Erbium Metal. High purity Erbium Fluoride is applied as dopant in making optical fibre and amplifier.
¡¡         TmF3         Thulium Fluoride         ·ú»¯îû         13760-79-7         Appearance: White
Solubility: Insoluble in water, moderately soluble in strong mineral acids
Stability: Slightly hygroscopic         Thulium Fluoride has specialized uses in ceramics, glass, phosphors, lasers. also is the important dopant for fibre amplifiers and as raw materials for making Thulium Metal and alloys
¡¡         YbF3         Ytterbium Fluoride         ·ú»¯ïî         13860-80-0         Appearance: White
Solubility: Insoluble in water, moderately soluble in strong mineral acids
Stability: Slightly hygroscopic         Ytterbium Fluoride is applied to numerous fiber amplifier and fiber optic technologies, High purity grades are widely applied as a doping agent for garnet crystals in lasers a important colourant in glasses and porcelain enamel glazes.
¡¡         LuF3         Lutetium Fluoride          ·ú»¯ïå         13760-81-1         Appearance: White
Solubility: Insoluble in water, moderately soluble in strong mineral acids
Stability: Slightly hygroscopic         Lutetium Fluoride is applied in making laser crystal, and also have specialized uses in ceramics, glass, phosphors, lasers, also be used as catalysts in cracking, alkylation, hydrogenation, and polymerization.
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