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维基百科

鋯鈦酸鉛

鋯鈦酸鉛,是一種無機化合物化學式Pb[Zr
x
Ti
1-x
]O
3
(0≤x≤1),通常縮寫為PZTLead Zirconium Titanate),是一種白色至灰白色固體。鋯鈦酸鉛是一種有明顯壓電效應的陶瓷鈣鈦礦材料,這意味著當施加電場時該化合物會改變形狀,被用於超聲波換能器、諧振器等。

鋯鈦酸鉛
IUPAC名
鋯鈦酸鉛
别名 鈦鋯酸鉛
识别
CAS号 12626-81-2  Y
PubChem 159452
SMILES
 
  • [O-2].[O-2].[O-2].[O-2].[O-2].[Ti+4].[Zr+4].[Pb+2]
性质
化学式 Pb[Zr
x
Ti
1-x
]O
3
(0≤x≤1)
摩尔质量 303.065 ~ 346.4222 g/mol g·mol⁻¹
危险性
GHS危险性符号
GHS提示词 危险
H-术语 H302, H332, H360, H373, H410
P-术语 P201, P202, P260, P261, P264, P270, P271, P273, P281, P301+312, P304+312, P304+340, P308+313, P312
若非注明,所有数据均出自标准状态(25 ℃,100 kPa)下。

鋯鈦酸鉛於1952年東京工業大學發現。與先前發現有明顯壓電效應鈦酸鋇相比,鋯鈦酸鉛表現出更高靈敏度並具更好(較高)的工作溫度。陶瓷鋯鈦酸鉛因其物理強度、化學惰性、相對較低的製造成本而廣泛應用。陶瓷鋯鈦酸鉛是最常用的壓電陶瓷。[1]最近幾年,許多國家立法限制商業產品使用鉛,因此不少人尋找鋯鈦酸鉛的替代品。[2]

電陶瓷特性 编辑

另見 编辑

  • 鈮酸鋰
  • 聚偏氟乙烯英语Polyvinylidene fluoride(PVDF)

參考 编辑

  1. ^ What is "Lead zirconium titanate"?. americanpiezo.com. APC International. [April 29, 2021]. (原始内容于2018-08-27). 
  2. ^ Bell, Andrew J.; Deubzer, Otmar. Lead-free piezoelectrics—The environmental and regulatory issues. MRS Bulletin. August 2018, 43 (8): 581–587 [2022-08-28]. ISSN 0883-7694. doi:10.1557/mrs.2018.154. (原始内容于2022-08-15) (英语). 
  3. ^ Rouquette, J.; Haines, J.; Bornand, V.; Pintard, M.; Papet, Ph; Bousquet, C.; Konczewicz, L.; Gorelli, F. A.; Hull, S. Pressure tuning of the morphotropic phase boundary in piezoelectric lead zirconate titanate. Physical Review B. 2004, 70 (1): 014108. doi:10.1103/PhysRevB.70.014108. 
  4. ^ Moazzami, Reza; Hu, Chenming; Shepherd, William H. Electrical Characteristics of Ferroelectric Lead zirconate titanate Thin Films for DRAM Applications (PDF). IEEE Transactions on Electron Devices. September 1992, 39 (9): 2044 [2022-08-28]. doi:10.1109/16.155876. (原始内容 (PDF)于2015-09-24). 
  5. ^ Andersen, B.; Ringgaard, E.; Bove, T.; Albareda, A.; Pérez, R. Performance of Piezoelectric Ceramic Multilayer Components Based on Hard and Soft Lead zirconate titanate. Proceedings of Actuator 2000. 2000: 419–422. 
  6. ^ Cutchen, J. Thomas; Harris, Jr., James O.; Laguna, George R. PLZT electrooptic shutters: applications. Applied Optics. 1975, 14 (8): 1866–1873 [2022-08-28]. PMID 20154933. doi:10.1364/AO.14.001866. (原始内容于2015-02-11). 
  7. ^ Liu, W.; Jiang, B.; Zhu, W. Self-biased dielectric bolometer from epitaxially grown Pb(Zr,Ti)O3 and lanthanum-doped Pb(Zr,Ti)O3 multilayered thin films. Applied Physics Letters. 2000, 77 (7): 1047–1049. doi:10.1063/1.1289064. 

外部鏈接 编辑

  • zirconate titanate-5A 鋯鈦酸鉛材料特性 (页面存档备份,存于互联网档案馆

鋯鈦酸鉛, 是一種無機化合物, 化學式pb, 通常縮寫為pzt, lead, zirconium, titanate, 是一種白色至灰白色固體, 是一種有明顯壓電效應的陶瓷鈣鈦礦材料, 這意味著當施加電場時該化合物會改變形狀, 被用於超聲波換能器, 諧振器等, iupac名, 别名, 鈦鋯酸鉛, 识别, cas号, 12626, pubchem, 159452, smiles, 性质, 化学式, 摩尔质量, 4222, 危险性, ghs危险性符号, ghs提示词, 危险, 术语, h302, h332, h360,. 鋯鈦酸鉛 是一種無機化合物 化學式Pb Zrx Ti1 x O3 0 x 1 通常縮寫為PZT Lead Zirconium Titanate 是一種白色至灰白色固體 鋯鈦酸鉛是一種有明顯壓電效應的陶瓷鈣鈦礦材料 這意味著當施加電場時該化合物會改變形狀 被用於超聲波換能器 諧振器等 鋯鈦酸鉛 IUPAC名鋯鈦酸鉛 别名 鈦鋯酸鉛 识别 CAS号 12626 81 2 Y PubChem 159452 SMILES O 2 O 2 O 2 O 2 O 2 Ti 4 Zr 4 Pb 2 性质 化学式 Pb Zrx Ti1 x O3 0 x 1 摩尔质量 303 065 346 4222 g mol g mol 危险性 GHS危险性符号 GHS提示词 危险 H 术语 H302 H332 H360 H373 H410 P 术语 P201 P202 P260 P261 P264 P270 P271 P273 P281 P301 312 P304 312 P304 340 P308 313 P312 若非注明 所有数据均出自标准状态 25 100 kPa 下 鋯鈦酸鉛於1952年東京工業大學發現 與先前發現有明顯壓電效應的鈦酸鋇相比 鋯鈦酸鉛表現出更高靈敏度並具更好 較高 的工作溫度 陶瓷鋯鈦酸鉛因其物理強度 化學惰性 相對較低的製造成本而廣泛應用 陶瓷鋯鈦酸鉛是最常用的壓電陶瓷 1 最近幾年 許多國家立法限制商業產品使用鉛 因此不少人尋找鋯鈦酸鉛的替代品 2 目录 1 電陶瓷特性 2 Uses 3 Varieties 4 另見 5 參考 6 外部鏈接電陶瓷特性 编辑已隱藏部分未翻譯内容 歡迎參與翻譯 Being piezoelectric lead zirconate titanate develops a voltage or potential difference across two of its faces when compressed useful for sensor applications and physically changes shape when an external electric field is applied useful for actuator applications The relative permittivity of lead zirconate titanate can range from 300 to 20000 depending upon orientation and doping 來源請求 Being pyroelectric this material develops a voltage difference across two of its faces under changing temperature conditions consequently lead zirconate titanate can be used as a heat sensor Lead zirconate titanate is also ferroelectric which means that it has a spontaneous electric polarization electric dipole that can be reversed in the presence of an electric field The material features an extremely large relative permittivity at the morphotropic phase boundary MPB near x 0 52 3 Some formulations are ohmic until at least 7007250000000000000 250 kV cm 7007250000000000000 25 MV 米 after which current grows exponentially with field strength before reaching avalanche breakdown but lead zirconate titanate exhibits time dependent dielectric breakdown breakdown may occur under constant voltage stress after minutes or hours depending on voltage and temperature so its dielectric strength depends on the time scale over which it is measured 4 Other formulations have dielectric strengths measured in the 7006800000000000000 8 16 MV 米 range 5 Uses 编辑 nbsp Lead zirconate titanate ultrasound transducer Lead zirconate titanate based materials are components of ceramic capacitors and STM AFM actuators tubes Lead zirconate titanate is used to make ultrasound transducers and other sensors and actuators as well as high value ceramic capacitors and FRAM chips Lead zirconate titanate is also used in the manufacture of ceramic resonators for reference timing in electronic circuitry In 1975 Sandia National Laboratories created anti flash goggles featuring PLZT to protect aircrew from burns and blindness in case of a nuclear explosion 6 The PLZT lenses could turn opaque in less than 150 microseconds Commercially it is usually not used in its pure form rather it is doped with either acceptors which create oxygen anion vacancies or donors which create metal cation vacancies and facilitate domain wall motion in the material In general acceptor doping creates hard lead zirconate titanate while donor doping creates soft lead zirconate titanate Hard and soft lead zirconate titanate generally differ in their piezoelectric constants Piezoelectric constants are proportional to the polarization or to the electrical field generated per unit of mechanical stress or alternatively is the mechanical strain produced by per unit of electric field applied In general soft lead zirconate titanate has a higher piezoelectric constant but larger losses in the material due to internal friction In hard lead zirconate titanate domain wall motion is pinned by the impurities thereby lowering the losses in the material but at the expense of a reduced piezoelectric constant Varieties 编辑 One of the commonly studied chemical composition is PbZr0 52 Ti0 48 O3 The increased piezoelectric response and poling efficiency near to x 0 52 is due to the increased number of allowable domain states at the MPB At this boundary the 6 possible domain states from the tetragonal phase 100 and the 8 possible domain states from the rhombohedral phase 111 are equally favorable energetically thereby allowing a maximum 14 possible domain states Like structurally similar lead scandium tantalate and barium strontium titanate lead zirconate titanate can be used for manufacture of uncooled staring array infrared imaging sensors for thermographic cameras Both thin film usually obtained by chemical vapor deposition and bulk structures are used The formula of the material used usually approaches Pb1 1 Zr0 3 Ti0 7 O3 called lead zirconate titanate 30 70 Its properties may be modified by doping it with lanthanum resulting in lanthanum doped lead zirconium titanate lead zirconate titanate also called lead lanthanum zirconium titanate with formula Pb0 83 La0 17 Zr0 3 Ti0 7 0 9575 O3 Lead zirconate titanate 17 30 70 7 另見 编辑鈮酸鋰 聚偏氟乙烯 英语 Polyvinylidene fluoride PVDF 參考 编辑 What is Lead zirconium titanate americanpiezo com APC International April 29 2021 原始内容存档于2018 08 27 Bell Andrew J Deubzer Otmar Lead free piezoelectrics The environmental and regulatory issues MRS Bulletin August 2018 43 8 581 587 2022 08 28 ISSN 0883 7694 doi 10 1557 mrs 2018 154 原始内容存档于2022 08 15 英语 Rouquette J Haines J Bornand V Pintard M Papet Ph Bousquet C Konczewicz L Gorelli F A Hull S Pressure tuning of the morphotropic phase boundary in piezoelectric lead zirconate titanate Physical Review B 2004 70 1 014108 doi 10 1103 PhysRevB 70 014108 Moazzami Reza Hu Chenming Shepherd William H Electrical Characteristics of Ferroelectric Lead zirconate titanate Thin Films for DRAM Applications PDF IEEE Transactions on Electron Devices September 1992 39 9 2044 2022 08 28 doi 10 1109 16 155876 原始内容存档 PDF 于2015 09 24 Andersen B Ringgaard E Bove T Albareda A Perez R Performance of Piezoelectric Ceramic Multilayer Components Based on Hard and Soft Lead zirconate titanate Proceedings of Actuator 2000 2000 419 422 Cutchen J Thomas Harris Jr James O Laguna George R PLZT electrooptic shutters applications Applied Optics 1975 14 8 1866 1873 2022 08 28 PMID 20154933 doi 10 1364 AO 14 001866 原始内容存档于2015 02 11 Liu W Jiang B Zhu W Self biased dielectric bolometer from epitaxially grown Pb Zr Ti O3 and lanthanum doped Pb Zr Ti O3 multilayered thin films Applied Physics Letters 2000 77 7 1047 1049 doi 10 1063 1 1289064 外部鏈接 编辑zirconate titanate 5A 鋯鈦酸鉛材料特性 页面存档备份 存于互联网档案馆 取自 https zh wikipedia org w index php title 鋯鈦酸鉛 amp oldid 75232982, 维基百科,wiki,书籍,书籍,图书馆,

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