氯化钽(V)

CAS: 7721-01-9 货号: T283511 分子式: TaCl5 分子量: 358.2 EC号: 231-755-6 PubChem CID: 24394
有货
级别和纯度: PrimorTrace™ ? PrimorTrace™ —— 阿拉丁的痕量金属分析系列,金属背景极低。适用于污染须极小的 ICP/AAS 痕量金属工作。 升华级 ? 升华级 —— 通过升华纯化,非挥发性杂质极低。适用于电子及需要高化学纯度的应用。 ≥99.99% metals basis
别名
五氯化钽
储存条件
室温,充氩,干燥
运输条件
DG运输
★
规格
库存
价格
数量
10g
T283511-10g
现货 Stock Image
¥736.90
50g
T283511-50g
现货 Stock Image
¥2,529.90
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为什么选择此级别

PrimorTrace™,升华级 提供 ≥99.99% metals basis 纯度,适用于对基线干扰要求严格的色谱和分析工作流程。

🌡

储存与运输

室温,充氩,干燥。DG运输 。请查阅批次 COA 获取详细规格。

📋

质量文档

SDS、COA、产品数据表及规格说明书均可下载。可通过批号查询获取批次 COA。

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文献证明

在色谱分析、有机合成和交叉偶联反应领域已被 80 篇同行评审文献引用。

概述

应用:
用于形成混合氯芳氧基化合物,如 [Ta (OC 6 H 3 -2,6- i -Pr 2 ) 2 Cl 3 2 ,其形成具有扭曲六配位几何结构的吡啶或膦加合物。也用作电子和稳定性研究的新边缘桥八面体 M 6 簇合物(如 CsErTa 6 Cl 1 8 )的起始物料。


规格

别名
五氯化钽
英文别名
Tantalum(V) Chloride Anhydrous
规格或纯度
PrimorTrace™, 升华级, ≥99.99% metals basis
英文名称
Tantalum(V) chloride, resublimed
储存条件
室温,充氩,干燥
运输条件
DG运输
纯度
≥99.99% metals basis
名称和识别符
PubChem SID
EC号
231-755-6
分子类型
小分子
Isomeric SMILES
Cl[Ta](Cl)(Cl)(Cl)Cl
PubChem CID
UN Number
Packing Group
II
分子量
358.2

技术文档

📋 安全数据表 (SDS)

全面的危险、操作、储存及法规合规文件。

下载 SDS →

✅ 分析证书 (COA)

批次质量数据。输入批号以获取对应 COA。

查询 COA →

📊 产品数据表

产品规格和应用的快速参考摘要。

查看数据表 →

🔬 规格说明书

该级别的完整质量属性和验收标准。

查看规格说明 →

高级数据

化学和物理性质
密度
3.68
敏感性
对湿度敏感
沸点
239°C
熔点
220°C
分子量
358.200 g/mol
XLogP3
氢键供体数Hydrogen Bond Donor Count
0
氢键受体数Hydrogen Bond Acceptor Count
0
可旋转键计数Rotatable Bond Count
0
精确质量Exact Mass
357.789 Da
单同位素质量Monoisotopic Mass
355.792 Da
拓扑极表面积Topological Polar Surface Area
0.000 Ų
重原子数Heavy Atom Count
6
形式电荷Formal Charge
0
复杂度Complexity
37.100
同位素原子数Isotope Atom Count
0
定义的原子立体中心计数Defined Atom Stereocenter Count
0
未定义的原子立体中心计数Undefined Atom Stereocenter Count
0
定义的键立体中心计数Defined Bond Stereocenter Count
0
未定义的键立体中心计数Undefined Bond Stereocenter Count
0
所有立体化学键的总数The total count of all stereochemical bonds
0
共价键合单元计数Covalently-Bonded Unit Count
1
安全和危险性(GHS)
一般危化品
一般危化品
象形图
GHS05,   GHS07
信号词
危险
危险声明

H302: 吞食有害

H314: 造成严重的皮肤灼伤和眼睛损伤

H335: 可能引起呼吸道刺激

预防措施声明

P260: 不要吸入灰尘/烟雾/气体/雾/蒸汽/喷雾。

P264: 处理后要彻底洗手。

P270: 使用本产品时,请勿进食、饮水或吸烟。

P271: 仅在室外或通风良好的地方使用。

P280: 戴防护手套/穿防护服/戴防护眼罩/戴防护面具。

P310: 立即致电解毒中心或医生。

P330: 漱口

P363: 再次使用之前,请清洗受污染的衣物。

P303+P361+P353: 如皮肤(或头发)沾染:立即脱掉所有沾染的衣服。用水清洗皮肤/淋浴。

P304+P340: 如误吸入:将人转移到空气新鲜处,保持呼吸舒适体位。

P305+P351+P338: 如进入眼睛:用水小心冲洗几分钟。如戴隐形眼镜并可方便地取出,取出隐形眼镜。继续冲洗。

P501: 将内容物/容器处理到。。。

Merck Index
9054
质检证书(CoA,COO,BSE/TSE 和分析图谱)
C of A & Other Certificates(BSE/TSE, COO):
输入批号以搜索分析图谱:

通过匹配包装上的批号来查找并下载产品的 COA,每批产品都进行了严格的验证,您可放心使用!

找到15个结果

批号(Lot Number) 证书类型 货号
G2621374 分析证书 T283511
G2621375 分析证书 T283511
C2617487 分析证书 T283511
C2617513 分析证书 T283511
F2626052 分析证书 T283511
J2524576 分析证书 T283511
J2524577 分析证书 T283511
J2524578 分析证书 T283511
J2524579 分析证书 T283511
A2304732 分析证书 T283511
A2304733 分析证书 T283511
C2511606 分析证书 T283511
C2511611 分析证书 T283511
J2408226 分析证书 T283511
J2408227 分析证书 T283511

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技术文档和文章
CVD和ALD前驱体
化学试剂中的“升华级 sublimed grade”:完整指南
Sublimed Grade in Chemical Reagents: A Complete Guide
读懂 ALD 前驱体化学:元素地图、配体分类、典型组合与排错(附共反应物/前驱体清单)
Understanding ALD Precursor Chemistry: Element Map, Ligand-Based Taxonomy, Typical Pairings, and Troubleshooting (with a Co-Reactant/Precursor List)
过渡金属盐/前驱体选型导览:同金属不同盐的起点差异与复现要点(含选型导航及产品表1–表5)
Transition-Metal Salts/Precursor Selection Guide: How “Different Salts of the Same Metal” Start from Different Chemical Realities—and How to Reproduce Results (including a Selection Navigator and Product Tables 1–5)
CVD and ALD Precursors
此产品的引用文献
引用文献
1. Feng Li, Xiaobin Cheng, Gongxun Lu, Yi-Chen Yin, Ye-Chao Wu, Ruijun Pan, Jin-Da Luo, Fanyang Huang, Li-Zhe Feng, Lei-Lei Lu, Tao Ma, Lirong Zheng, Shuhong Jiao, Ruiguo Cao, Zhi-Pan Liu, Hongmin Zhou, Xinyong Tao, Cheng Shang, Hong-Bin Yao.  (2023)  Amorphous Chloride Solid Electrolytes with High Li-Ion Conductivity for Stable Cycling of All-Solid-State High-Nickel Cathodes.  Journal of the American Chemical Society,  [PMID:38079498] [10.1021/jacs.3c10602]
2. Ning Zhang, Jiayi Du, Na Zhou, Depeng Wang, Di Bao, Haixia Zhong, Xinbo Zhang.  (2023)  High-valence metal-doped amorphous IrOx as active and stable electrocatalyst for acidic oxygen evolution reaction.  CHINESE JOURNAL OF CATALYSIS,  [10.1016/S1872-2067(23)64517-6]
3. Hailing Yang, Ji Zou, Zhimin Xiong, Jingjing Liu, Weimin Wang, Zhengyi Fu.  (2023)  Thermodynamics aided design of hBN-capsulated diboride powders from novel nitrate precursors for high entropy ceramics.  JOURNAL OF MATERIALS SCIENCE & TECHNOLOGY,  [10.1016/j.jmst.2023.08.034]
4. Yuehui Liu, Yueyi Li, Xuguang Liu, Jiaxin Li, Yanjie Feng, Xia Li.  (2023)  In situ construction of rich oxygen vacancy Bi/Bi3TaO7 heterojunction photocatalysts.  INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,  [10.1016/j.ijhydene.2023.04.259]
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7. Guo Xiaoxin, Liu Jun, Li Dan, Cheng Hongjun, Liu Kankan, Liu Xiaoqing, Liu Tiansheng.  (2023)  Facile construction of Z-scheme AgCl/Bi3TaO7 photocatalysts for effective removal of tetracycline under visible-light irradiation.  ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH,  30  (22): (62312-62324).  [PMID:36940021] [10.1007/s11356-023-26323-8]
8. Yao Yang, Jianqiang Bi, Xicheng Gao, Kangning Sun, Linjing Qiao, Guandong Liang, Hongyi Wang.  (2023)  Facile synthesis of nanocrystalline high-entropy diboride powders by a simple sol-gel method and their performance in supercapacitor.  CERAMICS INTERNATIONAL,  [10.1016/j.ceramint.2023.02.170]
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11. Xiaoqiang Zhan, Deliu Ou, Yapeng Zheng, Bing Li, Leyao Xu, Hongli Yang, Wenxiang Yang, Haitao Zhang, Huilin Hou, Weiyou Yang.  (2022)  Boosted photocatalytic hydrogen production over two-dimensional/two-dimensional Ta3N5/ReS2 van der Waals heterojunctions.  JOURNAL OF COLLOID AND INTERFACE SCIENCE,  [PMID:36088691] [10.1016/j.jcis.2022.08.177]
12. Li Liu, Ping Ouyang, Yuhan Li, Youyu Duan, Fan Dong, Kangle Lv.  (2022)  Insight into the mechanism of deep NO photo-oxidation by bismuth tantalate with oxygen vacancies.  JOURNAL OF HAZARDOUS MATERIALS,  [PMID:35901631] [10.1016/j.jhazmat.2022.129637]
13. Yang Lin, Yu Jinxing, Chang Shufang, Xu Xiaoxiang.  (2022)  Boosting visible-light-driven water splitting over LaTaON2via Al doping.  Science China-Materials,  65  (12): (3452-3461).  [10.1007/s40843-022-2085-4]
14. Xufei Li, Yanling Qiu, Zhiliang Zhu, Ting Chen, Hua Zhang, Daqiang Yin.  (2022)  Construction of magnetically separable dual Z-scheme g-C3N4/α-Fe2O3/Bi3TaO7 photocatalyst for effective degradation of ciprofloxacin under visible light.  CHEMICAL ENGINEERING JOURNAL,  [10.1016/j.cej.2022.135840]
15. Yanan Sun, Li Ye, Yongqing Zhang, Fenghua Chen, Weijian Han, Wenfeng Qiu, Tong Zhao.  (2022)  Synthesis of high entropy carbide ceramics via polymer precursor route.  CERAMICS INTERNATIONAL,  [10.1016/j.ceramint.2022.02.135]
16. Aimin LIU, Mengxia GUO, Yubao LIU, Fengguo LIU, Xianwei HU, Zhongning SHI.  (2022)  Electrodeposition of Zn–Ta Coating from DMI–ZnCl2–TaCl5 Solvate Ionic Liquids.  ELECTROCHEMISTRY,  90  (2): (027006-027006).  [PMID:15640103] [10.5796/electrochemistry.21-00120]
17. Wei Li, Yanan Sun, Li Ye, Weijian Han, Fenghua Chen, Jianling Zhang, Tong Zhao.  (2022)  Preparation of high entropy nitride ceramic nanofibers from liquid precursor for CO2 photocatalytic reduction.  JOURNAL OF THE AMERICAN CERAMIC SOCIETY,  105  (6): (3729-3734).  [10.1111/jace.18384]
18. Bohan Wang, Guofu Xu, Jiwu Huang, Håkan Engqvist, Wei Xia, Le Fu.  (2021)  Effects of dopants with various valences on densification behavior and phase composition of a ZrO2–SiO2 nanocrystalline glass-ceramic.  CERAMICS INTERNATIONAL,  [10.1016/j.ceramint.2021.12.147]
19. Le Fu, Fuqing Jiang, Bo Li, Yongxin Cheng, Guofu Xu, Jiwu Huang, Håkan Engqvist, Wei Xia.  (2021)  Doping of tantalum, niobium, and hafnium in a translucent ZrO2-SiO2 nanocrystalline glass-ceramic.  JOURNAL OF THE EUROPEAN CERAMIC SOCIETY,  [10.1016/j.jeurceramsoc.2021.12.019]
20. Zhao Ruiyu, Wang Yi Mou, Li Jie, Meng Wenhua, Yang Chunli, Sun Chongxiang, Lan Xuefang.  (2021)  Metal modified (Ni, Ce, Ta) Ti/SnO2–Sb2O5–RuO2 electrodes for enhanced electrochemical degradation of Orange G.  JOURNAL OF APPLIED ELECTROCHEMISTRY,  52  (3): (573-581).  [10.1007/s10800-021-01645-y]
21. Jiang Haoxi, Jiang Angjiong, Gao Qiang, Yang Guochao, wang Lingtao.  (2021)  Understanding Ta as an Efficient Promoter of MgO–SiO2 Catalyst for Conversion of the Ethanol–Acetaldehyde Mixture into 1,3-Butadiene.  CATALYSIS LETTERS,  152  (8): (2524-2532).  [10.1007/s10562-021-03835-x]
22. Tianxing Wu, Hanqi Meng, Rui Dang.  (2021)  Amorphous Ta2O5-supported Ru as an efficient electrocatalyst for selective hydrogenation of cinnamaldehyde with water as the hydrogen source.  Inorganic Chemistry Frontiers,  8  (21): (4712-4719).  [10.1039/D1QI00712B]
23. Wenhe Xie, Yuan Ren, Bingjie Yu, Xuanyu Yang, Meiqi Gao, Junhao Ma, Yidong Zou, Pengcheng Xu, Xinxin Li, Yonghui Deng.  (2021)  Self-Hybrid Transition Metal Oxide Nanosheets Synthesized by a Facile Programmable and Scalable Carbonate-Template Method.  Small,  17  (39): (2103176).  [PMID:34405523] [10.1002/smll.202103176]
24. Yanfang Zhai, Guanming Yang, Zhong Zeng, Shufeng Song, Shuai Li, Ning Hu, Weiping Tang, Zhaoyin Wen, Li Lu, Janina Molenda.  (2021)  Composite Hybrid Quasi-Solid Electrolyte for High-Energy Lithium Metal Batteries.  ACS Applied Energy Materials,  [10.1021/acsaem.1c01281]
25. Yong Liu, Weixuan Zeng, Yongjin Ma, Rui Dong, Pengfei Tan, Jun Pan.  (2020)  Oxygen-defects modified amorphous Ta2O5 nanoparticles for solar driven hydrogen evolution.  CERAMICS INTERNATIONAL,  [10.1016/j.ceramint.2020.10.038]
26. Shiqi Mei, Fan Wang, Xinglong Hu, Kong Yang, Dong Xie, Lili Yang, Zhaoying Wu, Jie Wei.  (2020)  Construction of a hierarchical micro & nanoporous surface for loading genistein on the composite of polyetheretherketone/tantalum pentoxide possessing antibacterial activity and accelerated osteointegration.  Biomaterials Science,  9  (1): (167-185).  [PMID:33165465] [10.1039/D0BM01306D]
27. Ai-min LIU, Meng-xia GUO, Zi-yang LÜ, Bao-guo ZHANG, Feng-guo LIU, Wen-ju TAO, You-jian YANG, Xian-wei HU, Zhao-wen WANG, Yu-bao LIU, Zhong-ning SHI.  (2020)  Electrochemical behavior of tantalum in ethylene carbonate and aluminum chloride solvate ionic liquid.  TRANSACTIONS OF NONFERROUS METALS SOCIETY OF CHINA,  [10.1016/S1003-6326(20)65379-1]
28. Ran Wang, Yawei Wang, Shufang Chang, Shu Jin, Yinlin Shao, Xiaoxiang Xu.  (2020)  LaTaON2-SrZrO3 solid solutions with tunable band gap for photocatalytic water oxidation under visible light illumination.  JOURNAL OF CATALYSIS,  [10.1016/j.jcat.2020.07.011]
29. Shunhang Wei, Xiaoxiang Xu.  (2020)  Nitrogen-doped LaZrTa3O11 as a visible light-active photocatalyst for water-reduction and -oxidation reactions.  Inorganic Chemistry Frontiers,  7  (14): (2669-2675).  [10.1039/D0QI00548G]
30. Yu Zhaoju, Yang Yujing, Mao Kangwei, Feng Yao, Wen Qingbo, Riedel Ralf.  (2020)  Single-source-precursor synthesis and phase evolution of SiC-TaC-C ceramic nanocomposites containing core-shell structured TaC@C nanoparticles.  Journal of Advanced Ceramics,  9  (3): (320-328).  [10.1007/s40145-020-0371-z]
31. Ran Wang, Guoan Lin, Xiaoxiang Xu.  (2020)  SrTaO2N co-doped with La/Zr as promising photocatalysts for water reduction under visible light illumination.  Inorganic Chemistry Frontiers,  7  (12): (2343-2351).  [10.1039/D0QI00361A]
32. Zhiguo Zhu, Haikuo Ma, Hao Xu, Bo Wang, Peng Wu, Hongying Lü.  (2020)  Oxidative desulfurization of model oil over Ta-Beta zeolite synthesized via structural reconstruction.  JOURNAL OF HAZARDOUS MATERIALS,  [PMID:32155526] [10.1016/j.jhazmat.2020.122458]
33. Hong Zhang, Shunhang Wei, Xiaoxiang Xu.  (2020)  Mg modified BaTaO2N as an efficient visible-light-active photocatalyst for water oxidation.  JOURNAL OF CATALYSIS,  [10.1016/j.jcat.2020.01.005]
34. Honghua Liu, Bin Du, Yanhui Chu.  (2019)  Synthesis of the ternary metal carbide solid-solution ceramics by polymer-derived-ceramic route.  JOURNAL OF THE AMERICAN CERAMIC SOCIETY,  103  (5): (2970-2974).  [10.1111/jace.16993]
35. Yawei Wang, Shunhang Wei, Xiaoxiang Xu.  (2019)  SrTaO2N-CaTaO2N solid solutions as efficient visible light active photocatalysts for water oxidation and reduction.  APPLIED CATALYSIS B-ENVIRONMENTAL,  [10.1016/j.apcatb.2019.118315]
36. Pang Wang, Hui Wang, Fanghao Ye, Huijun Zhang, Mengting Chen, Jinlong Cai, Donghui Li, Dan Liu, Tao Wang.  (2019)  Contrasting Effects of Organic Chloride Additives on Performance of Direct and Inverted Perovskite Solar Cells.  ACS Applied Materials & Interfaces,  [PMID:31538760] [10.1021/acsami.9b14302]
37. Hong Zhang, Xiaoqin Sun, Yawei Wang, Xiaoxiang Xu.  (2019)  Switching on wide visible light photocatalytic activity over Mg4Ta2O9 by nitrogen doping for water oxidation and reduction.  JOURNAL OF CATALYSIS,  [10.1016/j.jcat.2019.07.052]
38. Jian Zhang, Lingnan Qu, Yuhang Wu, Yuxuan Ma, Zhanli Chai, Xiaojing Wang.  (2019)  Fabrication of visible-light-driven Bi2O3-Bi3TaO7 nanocomposite for tetracycline degradation with enhanced photocatalytic efficiency.  JOURNAL OF SOLID STATE CHEMISTRY,  [10.1016/j.jssc.2019.120894]
39. Shunhang Wei, Xiaoxiang Xu.  (2018)  Boosting photocatalytic water oxidation reactions over strontium tantalum oxynitride by structural laminations.  APPLIED CATALYSIS B-ENVIRONMENTAL,  [10.1016/j.apcatb.2018.01.071]
40. Zhang Gong, Li Binggong, Shi Yanfeng, Zhou Qi, Fu Wen-Jie, Zhou Gang, Ma Jun, Yin Shuo, Yuan Weihao, Miao Shiyu, Ji Qinghua, Qu Jiuhui, Liu Huijuan.  (2024)  Ammonia recovery from nitrate-rich wastewater using a membrane-free electrochemical system.  Nature Sustainability,  [10.1038/s41893-024-01406-7]
41. Thi Viet Ha Luu, Hong Yen Xuan Nguyen, Quoc Thang Nguyen, Quang Bac Nguyen, Thi Ha Chi Nguyen, Ngoc Chuc Pham, Xuan Dung Nguyen, Trung Kien Nguyen, Ngoc Nhiem Dao.  (2024)  Enhanced photocatalytic performance of ZnO under visible light by co-doping of Ta and C using hydrothermal method.  RSC Advances,  14  (18): (12954-12965).  [PMID:38650687] [10.1039/D4RA00579A]
42. Zhongliang Li, Lili Cao, Ting Yang, Jinwei He, Zelin Wang, Jinlu He, Yan Zhao, Zhanli Chai.  (2024)  Janus structural TaON/Graphene-like carbon dual-supported Pt electrocatalyst enables efficient oxygen reduction reaction.  JOURNAL OF COLLOID AND INTERFACE SCIENCE,  [PMID:39116565] [10.1016/j.jcis.2024.07.167]
43. Liquan Fan, Honglin Ai, Meiye Jiao, Yao Li, Yongheng Jin, Yiru Fu, Jing Wang, Yuwei Wang, Deqing Zhang, Guangping Zheng, Junye Cheng.  (2024)  Low-frequency and dual-band microwave absorption properties of novel VB-group disulphides (3R–TaS2) nanosheets.  Nano Materials Science,  [10.1016/j.nanoms.2024.05.011]
44. Liu Xing-kun, Zhou Yi-xuan, Mi Fang-hui, Ma Xue-lu, Chun-wen Sun.  (2024)  Superionic halide solid electrolyte Li1.7Zr0.7Ta0.3Cl6 for durable all-solid-state lithium batteries.  Energy Storage Materials,  [10.1016/j.ensm.2024.103737]
45. Lang Pei, Haichuan Feng, Qinan Mao, Lixiang Wang, Yu Zhang, Xin Wen, Xusheng Wang, Xiao Liu.  (2025)  Synergistic photothermal-dual site strategy to accelerate proton–electron transfer enables enhanced CO₂-to-syngas conversion.  Journal of Materials Chemistry A,  [10.1039/D4TA09093D]
46. Xia Jinming, Li Ruiyi, Li Zaijun, Gao Mingjie.  (2024)  Synthesis of Co- and V-doped Ta1.1O1.05 electrode material using tryptophan- and aspartic-acid-functionalized boron-doped graphene quantum dots with excellent supercapacitor performance.  NEW JOURNAL OF CHEMISTRY,  48  (47): (20085-20094).  [10.1039/D4NJ04172K]
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溶液计算器

常见问题

金属基(trace metals basis)指标是什么含义?
本产品按金属基(trace metals basis)标定为 ≥99.99%。该数值描述的是金属杂质含量,而非整体化学含量,因此适用于 ICP-MS、半导体及电池等对金属杂质敏感的应用。批次的具体数值以分析证书(COA)为准。
什么是「升华级」?
「升华级」表示该物料经过加工和检测,适用于特种工业加工。规格侧重于影响该应用性能的杂质——例如,电子应用的金属含量、电池应用的粒度、光学应用的折射率,或对水分敏感工艺的水分含量。
什么是「PrimorTrace?」?
「PrimorTrace?」表示该化学品经过纯化和检测,专用于痕量和元素分析。关键规格通常包括:常用检测波长处的受控紫外吸收、低不挥发残渣、受控的水分含量以及经验证的批间一致性。「PrimorTrace?」用于此工作流程中的流动相、样品制备和分析标准品。
本产品应如何储存?
请于阴凉处、氩气保护、干燥条件下保存。本品在氩气保护下供应,每次取用后请在惰性气体下重新密封。
本产品如何运输?
本产品属危险品,通过 FedEx DG Service 运输。不提供陆运及其他经济型服务,部分目的地或地址类型可能受限。
本产品的 CAS 号、分子式和分子量是多少?
本产品的 CAS 号为 7721-01-9,分子式为 TaCl5,分子量为 358.2 g/mol。
如何获取批次专用COA?
每个订单都会随附分析证书(COA),您也可以从账户订单历史中下载。如需订购前的COA,请联系您的客户代表,或使用PDP上的"申请COA"按钮——我们将提供代表性批次的COA。