三氯化铑(III) 水合物

CAS: 20765-98-4 货号: R347826 分子式: RhCl3 · xH2O 分子量: 209.26(anhydrous basis) EC号: 606-630-8 PubChem CID: 16211510
有货
级别和纯度: ≥99.95% metals basis
别名
氯化铑(III) 水合物
储存条件
室温,充氩
运输条件
常规运输
★
规格
库存
价格
数量
50mg
R347826-50mg
期货 Stock Image
¥415.90
250mg
R347826-250mg
现货 Stock Image
¥1,599.90
1g
R347826-1g
现货 Stock Image
¥4,199.90
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为什么选择此级别

提供 ≥99.95% 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。常规运输 。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 65 篇同行评审文献引用。

概述

产品应用:

本品已被用作Rh颗粒的前体,用于研究Rh对水-气体系的影响。

易溶于水、盐酸、丙酮、醇和碱溶液,不溶于醚和王水受强热失去结晶水变为不溶物,进而分解为铑和氯气。

A catalyst for conjugate reduction of cinnamaldehydes followed by cross-coupling with arylboronic acids. Catalyst for the direct conversion of methane to acetic acid.
Catalyst for the isomerization of alkenes, the reduction of aromatic rings, the oxidation ofalkenes, the hydration of acetylene, the hydrosilylation of α,β-unsaturated esters to form dimethylketene trimethylsilyl acetals.


Product class
PGM Solids, Chlorides, Hydrates

Reaction type
Hydroformylation, Isomerization, Oxidation, Reduction

Chemical properties

Chemical formula

Cl3Rh

Empirical formula

RhCl3 x n H2O

Molecular weight

209.26 (anhydrous)

Metal

Rh

Theoretical metal content

38

Physical state

powder

Color
Metal purity

dark red

99.95

规格

别名
氯化铑(III) 水合物
英文别名
RhCl3 x n H2O
规格或纯度
≥99.95% metals basis
英文名称
Rhodium Chloride Hydrate
储存条件
室温,充氩
运输条件
常规运输
纯度
≥99.95% metals basis
名称和识别符
PubChem SID
EC号
606-630-8
分子类型
未知
INCHI
1S/3ClH.H2O.Rh/h3*1H;1H2;/q;;;;+3/p-3
InChi Key
HSSMNYDDDSNUKH-UHFFFAOYSA-K
Smiles
O.Cl[Rh](Cl)Cl
Isomeric SMILES
O.Cl[Rh](Cl)Cl
PubChem CID
UN Number
Packing Group
III
分子量
209.26(anhydrous basis)

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

系统学分类

分类树(Taxonomy Tree)

界(kingdom) 无机化合物
超类(Superclass) 混合金属/非金属化合物
类(Class) 过渡金属盐
亚类(Subclass) 过渡金属氯化物
中间层级节点(Intermediate Tree Nodes) 暂无
直接上位类(Direct Parent) 过渡金属氯化物
其他上位类(Alternative Parents) 无机氯化物盐  
分子骨架(Molecular Framework) 暂无
取代基(Substituents) 无机氯化物 - 无机盐 - 铬酸盐
描述(Description) 该化合物属于过渡金属氯化物类无机化合物。此类化合物中最大卤素原子为氯,最重金属原子为过渡金属。
外部描述符(External Descriptors) 暂无
三维结构
交互式化学结构模型





化学和物理性质
溶解性
酒精和水中的溶性。在色酮中略显可溶性。
敏感性
易吸潮
熔点
100°C
分子量
227.280 g/mol
XLogP3
氢键供体数Hydrogen Bond Donor Count
1
氢键受体数Hydrogen Bond Acceptor Count
1
可旋转键计数Rotatable Bond Count
0
精确质量Exact Mass
225.823 Da
单同位素质量Monoisotopic Mass
225.823 Da
拓扑极表面积Topological Polar Surface Area
1.000 Ų
重原子数Heavy Atom Count
5
形式电荷Formal Charge
0
复杂度Complexity
8.000
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
2
安全和危险性(GHS)
象形图
GHS05,   GHS07,   GHS08,   GHS09
信号词
危险
危险声明

H290: 可能腐蚀金属

H302: 吞食有害

H318: 造成严重的眼睛损伤

H341: 怀疑引起遗传缺陷

H410: 对水生生物有剧毒并具有长期持续影响

预防措施声明

P201: 使用前获取特殊说明

P202: 在阅读并理解所有安全预防措施之前,不要进行操作。

P234: 仅保存在原始容器中

P264: 处理后要彻底洗手。

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

P390: 吸收溢出物以防止材料损坏。

P391: 收集溢出物

P301+P312: 如误吞咽:如感觉不适,呼叫急救中心/医生。

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。

P308+P313: 如接触到或有疑虑:求医/就诊。

P405: 密闭存放

P406: 存放在带有耐腐蚀内衬的耐腐蚀/ ...容器中。

P501: 将内容物/容器处理到。。。

WGK Germany
3
Class
8
个人防护装备
dust mask type N95 (US),Eyeshields,Gloves
质检证书(CoA,COO,BSE/TSE 和分析图谱)
C of A & Other Certificates(BSE/TSE, COO):
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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13个结果

批号(Lot Number) 证书类型 货号
G2201377 分析证书 R347826
E2620174 分析证书 R347826
L2503472 分析证书 R347826
L2503473 分析证书 R347826
H2515506 分析证书 R347826
H2515513 分析证书 R347826
K2425531 分析证书 R347826
K2425533 分析证书 R347826
G2409132 分析证书 R347826
G2409133 分析证书 R347826
G2409134 分析证书 R347826
H2430076 分析证书 R347826
G2201375 分析证书 R347826

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技术文档和文章
读懂铑催化:Rh(I)/Rh(II)/Cp*Rh(III) 三大引擎 + 代表产品表A–G选型速查
Making Sense of Rhodium Catalysis: Three Core Engines—Rh(I), Rh(II), and Cp*Rh(III)—plus a Quick Selection Guide to Representative Product Tables A–G
贵金属盐/前驱体选型指南:从真实物种到可复现起点(含产品导航与表1–表3)
Selection Guide to Precious-Metal Salts & Precursors: From Speciation to a Reproducible Starting Point (with Product Navigator and Tables 1–3)
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)
金属纳米催化剂为何“更省能耗也更易掉性能”:从活性位到载体/界面工程的耐久逻辑(含选型导航及产品表A–D)
Why Metal Nanocatalysts Can “Save Energy Yet Lose Performance Easily”: Durability Logic from Active Sites to Support/Interface Engineering (Including Selection Guide and Product Tables A–D)
小分子合成中的反应选择:从转化类型判断到实验路径筛选
Reaction Selection in Small-Molecule Synthesis: From Transformation-Type Assessment to Experimental Route Screening
此产品的引用文献
引用文献
1. Xia Kang, Zhendong Wang, Shijie Kang, Dazhong Ren.  (2023)  Rh0.7Ru0.3-MoOx supported on carbon nanotubes boosts hydrogen generation from hydrazine borane at room temperature.  INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,  [10.1016/j.ijhydene.2023.11.343]
2. Xuan Zhu, Yan Liu, Menglin Wang, Li Zhang, Qiaoli Li, Entao Zhang, Hongfen Mo, Yuan Gao, Chenyu Xu, Yanwei Zhang.  (2023)  Boosting solar photothermal synergy for efficient overall water splitting based on Mg, Al codoped and Rh/Cr2O3/CoOOH coloaded SrTiO3.  CHEMICAL ENGINEERING JOURNAL,  [10.1016/j.cej.2023.147636]
3. Kai Deng, Wenxin Wang, Zilong Lian, Hongjie Yu, Ziqiang Wang, You Xu, Hongjing Wang, Liang Wang.  (2023)  A General Synthesis of Crystal Phase Controllable Aerogels for Efficient Hydrogen Evolution.  Small,  19  (49): (2304181).  [PMID:37563822] [10.1002/smll.202304181]
4. Xiaofeng Ke, Feng Zhou, Yihuang Chen, Mei Zhao, Yun Yang, Huile Jin, Youqing Dong, Chao Zou, Xi'an Chen, Lijie Zhang, Shun Wang.  (2023)  Modifying charge transfer between rhodium and ceria for boosted hydrogen oxidation reaction in alkaline electrolyte.  JOURNAL OF COLLOID AND INTERFACE SCIENCE,  [PMID:37515974] [10.1016/j.jcis.2023.07.060]
5. Songliang Liu, Hugang Zhang, Hongjie Yu, Kai Deng, Ziqiang Wang, You Xu, Liang Wang, Hongjing Wang.  (2023)  Tailored design of PdRh bimetallene nanoribbons by solvent-induced strategy for efficient alkaline hydrogen evolution.  APPLIED CATALYSIS B-ENVIRONMENTAL,  [10.1016/j.apcatb.2023.122948]
6. Ziqiang Wang, Guanghui Yang, Pengjun Tian, Kai Deng, Hongjie Yu, You Xu, Xiaonian Li, Hongjing Wang, Liang Wang.  (2023)  Heterointerface engineering of Rh/Pd metallene for hydrazine oxidation-assisted energy-saving hydrogen production.  Journal of Materials Chemistry A,  11  (19): (10222-10227).  [10.1039/D3TA00797A]
7. Jie Shi, Qintao Sun, Wenxiang Zhu, Tao Cheng, Fan Liao, Mengjie Ma, Junjun Yang, Hao Yang, Zhenglong Fan, Mingwang Shao.  (2023)  Lattice stain dominated hydrazine oxidation reaction in single-metal-element nanosheet.  CHEMICAL ENGINEERING JOURNAL,  [10.1016/j.cej.2023.142385]
8. Wenjie Xue, Hongxia Liu, Binbin Zhao, Lixia Ge, Shuai Yang, Minghuang Qiu, Jiong Li, Wei Han, Xinqing Chen.  (2023)  Single Rh1Co catalyst enabling reversible hydrogenation and dehydrogenation of N-ethylcarbazole for hydrogen storage.  APPLIED CATALYSIS B-ENVIRONMENTAL,  [10.1016/j.apcatb.2023.122453]
9. Lei Zeng, Wei Li, Xueer Wei, Jiawei Cheng, Wei Zhou, Yanping Zheng, Fan Cai, Yuefeng Liu, Kang Cheng, Qinghong Zhang, Ye Wang.  (2022)  IrGa Bimetallic Catalyst with Atomical Metal Dispersion for Propane Dehydrogenation with High Stability.  ChemCatChem,  15  (4): (e202201405).  [10.1002/cctc.202201405]
10. Wenxiu Luo, Guo Li, Wei Cheng, Yi Wang.  (2022)  SiO2-mediated fabrication of hydrophilic biomass-carbon and its expediting effect on Rh nanoparticles catalyzed dehydrogenation of ammonia borane.  FUEL,  [10.1016/j.fuel.2022.126366]
11. Jin Zhang, Mengting Gao, Ruiyi Wang, Xincheng Li, Pengqi Zhu, Yunwei Wang, Zhanfeng Zheng.  (2022)  Oxygen vacancy regulated selective hydrogenation of α,β-unsaturated aldehydes over LDH surface group coordinated transition metal photocatalysts.  Catalysis Science & Technology,  12  (20): (6163-6173).  [10.1039/D2CY01298G]
12. Fan Yang, Hongbo Yu, Chunzheng Wu, Shiwei Wang, Tong Li, Hongfeng Yin.  (2022)  RhCu Bimetallic Nanoparticles in Hollow Carbon Spheres for Catalytic Halonitrobenzene Chemoselective Hydrogenation.  ACS Applied Nano Materials,  [10.1021/acsanm.2c02358]
13. Rongfei Wang, Xiaodeng Wang, Min Cheng, Yunpeng Wei, Jihong Xia, Hua Lin, Wei Sun, Weihua Hu.  (2022)  Phosphatizing engineering of heterostructured Rh2P/Rh nanoparticles on doped graphene for efficient hydrogen evolution in alkaline and acidic media.  INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,  [10.1016/j.ijhydene.2022.05.212]
14. Yan Guo, Yunwei Wang, Zhenfeng Huang, Xili Tong, Nianjun Yang.  (2022)  Size effect of Rhodium nanoparticles supported on carbon black on the performance of hydrogen evolution reaction.  CARBON,  [10.1016/j.carbon.2022.04.008]
15. Y.F. Wang, X. Luo, W.J. Lu, L. Yang, B. Huang, P.T. Li, Y.Q. Yang.  (2022)  Carbon supported bifunctional Rh–Ni(OH)2/C nanocomposite catalysts with high electrocatalytic efficiency for alkaline hydrogen evolution reaction.  INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,  [10.1016/j.ijhydene.2022.02.117]
16. Dong-Xue Liu, Yi-Tong Zhou, Yong-Fu Zhu, Ze-Yu Chen, Jun-Min Yan, Qing Jiang.  (2022)  Tri-metallic AuPdIr nanoalloy towards efficient hydrogen generation from formic acid.  APPLIED CATALYSIS B-ENVIRONMENTAL,  [10.1016/j.apcatb.2022.121228]
17. Longfei Zhu, Sen Ye, Jing Wang, Jiazheng Zhu, Guangke He, Xiang Liu.  (2022)  Supported Iridium Catalyst for Clean Transfer Hydrogenation of Aldehydes and Ketones using Methanol as Hydrogen Source.  ChemCatChem,  14  (6): (e202101794).  [10.1002/cctc.202101794]
18. Huan Fu, Huan Zhang, Guichun Yang, Jun Liu, Junyuan Xu, Peihuan Wang, Ning Zhao, Lihua Zhu, Bing Hui Chen.  (2021)  Highly dispersed rhodium atoms supported on defect-rich Co(OH)2 for the chemoselective hydrogenation of nitroarenes.  NEW JOURNAL OF CHEMISTRY,  46  (3): (1158-1167).  [10.1039/D1NJ04936D]
19. Fuyong Zhang, Wei Zhou, Xuewei Xiong, Yuhao Wang, Kang Cheng, Jincan Kang, Qinghong Zhang, Ye Wang.  (2021)  Selective Hydrogenation of CO2 to Ethanol over Sodium-Modified Rhodium Nanoparticles Embedded in Zeolite Silicalite-1.  Journal of Physical Chemistry C,  [10.1021/acs.jpcc.1c07862]
20. Hu Yin, Chen Wei, Chen Yongxin, Zhang Fen, Song Weiguo, Wang Lingling, Fu Jianping, Ren Xiangrong, You Shengyong, Cao Changyan, Yu Zhonghua, Dong Xiaona.  (2021)  Highly Effective Rh/NaNbO3 Catalyst for the Selective Hydrogenation of Benzoic Acid to Cyclohexane Carboxylic Acid Under Mild Conditions.  CATALYSIS LETTERS,  152  (7): (2164-2177).  [10.1007/s10562-021-03801-7]
21. Zhaolong Xie, Menghuan Chen, Yangshen Chen, Anxiang Guan, Qing Han, Gengfeng Zheng.  (2021)  Electrocatalytic Methane Oxidation to Ethanol via Rh/ZnO Nanosheets.  Journal of Physical Chemistry C,  [10.1021/acs.jpcc.1c03416]
22. Ao Liu, Siyuan Lv, Lianjing Zhao, Fangmeng Liu, Jing Wang, Rui You, Zijie Yang, Junming He, Li Jiang, Chenguang Wang, Xu Yan, Peng Sun, Geyu Lu.  (2020)  Room temperature flexible NH3 sensor based on polyaniline coated Rh-doped SnO2 hollow nanotubes.  SENSORS AND ACTUATORS B-CHEMICAL,  [10.1016/j.snb.2020.129313]
23. Yue Zhao, Nan Jia, Xin-Ru Wu, Fu-Min Li, Pei Chen, Pu-Jun Jin, Shiwei Yin, Yu Chen.  (2020)  Rhodium phosphide ultrathin nanosheets for hydrazine oxidation boosted electrochemical water splitting.  APPLIED CATALYSIS B-ENVIRONMENTAL,  [10.1016/j.apcatb.2020.118880]
24. Shihan Wang, Jinyu Dai, Zhiqiang Shi, Zeshan Xiong, Zongtao Zhang, Shilun Qiu, Runwei Wang.  (2019)  Hollow Nano-Mesosilica Spheres Containing Rhodium Nanoparticles Supported on Nitrogen-Doped Carbon: An Efficient Catalyst for the Reduction of Nitroarenes under Mild Conditions.  ChemPlusChem,  85  (1): (247-253).  [PMID:31950673] [10.1002/cplu.201900657]
25. Ge Ma, Qi Xue, Jingyi Zhu, Xiaoyu Zhang, Xin Wang, Hongchang Yao, Guofu Zhou, Yu Chen.  (2019)  Ultrafine Rh nanocrystals decorated ultrathin NiO nanosheets for urea electro-oxidation.  APPLIED CATALYSIS B-ENVIRONMENTAL,  [10.1016/j.apcatb.2019.118567]
26. Yingchun Guo, Lei Feng, Changcheng Wu, Xiaomei Wang, Xu Zhang.  (2019)  Synthesis of 3D-Ordered Macro/Microporous Yolk–Shelled Nanoreactor with Spatially Separated Functionalities for Cascade Reaction.  ACS Applied Materials & Interfaces,  [PMID:31448587] [10.1021/acsami.9b11578]
27. Shihui Xing, Zhao Liu, Qi Xue, Shiwei Yin, Fumin Li, Weiwei Cai, Shuni Li, Pei Chen, Pujun Jin, Hongchang Yao, Yu Chen.  (2019)  Rh nanoroses for isopropanol oxidation reaction.  APPLIED CATALYSIS B-ENVIRONMENTAL,  [10.1016/j.apcatb.2019.118082]
28. Junfang Ding, Liping Li, Ye Wang, Xianzhe Xu, Shaoqing Chen, Xiyang Wang, Huixia Li, Shuaiqiang Zhao, Guangshe Li.  (2019)  Strong metal-support interaction promoted via constructing biocarbon membrane for enhanced CO preferential oxidation activity of Rh/CaCO3@biocarbon.  INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,  [10.1016/j.ijhydene.2019.07.043]
29. Qilu Yao, Meng He, Xiaoling Hong, Xiaoliang Zhang, Zhang-Hui Lu.  (2019)  MoOx-modified bimetallic alloy nanoparticles for highly efficient hydrogen production from hydrous hydrazine.  Inorganic Chemistry Frontiers,  6  (6): (1546-1552).  [10.1039/C9QI00379G]
30. Qilu Yao, Meng He, Xiaoling Hong, Xinyu Chen, Gang Feng, Zhang-Hui Lu.  (2019)  Hydrogen production via selective dehydrogenation of hydrazine borane and hydrous hydrazine over MoOx-promoted Rh catalyst.  INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,  [10.1016/j.ijhydene.2019.02.105]
31. Juan Bai, Qi Xue, Yue Zhao, Jia-Xing Jiang, Jing-Hui Zeng, Shi-Bin Yin, Yu Chen.  (2018)  Component-Dependent Electrocatalytic Activity of Ultrathin PdRh Alloy Nanocrystals for the Formate Oxidation Reaction.  ACS Sustainable Chemistry & Engineering,  [10.1021/acssuschemeng.8b06193]
32. Chunwei Dong, Siyu Lu, Shiyu Yao, Rui Ge, Zidong Wang, Ze Wang, Pengfei An, Yi Liu, Bai Yang, Hao Zhang.  (2018)  Colloidal Synthesis of Ultrathin Monoclinic BiVO4 Nanosheets for Z-Scheme Overall Water Splitting under Visible Light.  ACS Catalysis,  [10.1021/acscatal.8b01645]
33. Juan Bai, Xue Xiao, Yuan-Yuan Xue, Jia-Xing Jiang, Jing-Hui Zeng, Xi-Fei Li, Yu Chen.  (2018)  Bimetallic Platinum–Rhodium Alloy Nanodendrites as Highly Active Electrocatalyst for the Ethanol Oxidation Reaction.  ACS Applied Materials & Interfaces,  [PMID:29799726] [10.1021/acsami.8b05422]
34. Juan Bai, Shi-Hui Xing, Ying-Ying Zhu, Jia-Xing Jiang, Jing-Hui Zeng, Yu Chen.  (2018)  Polyallylamine-Rh nanosheet nanoassemblies−carbon nanotubes organic-inorganic nanohybrids: A electrocatalyst superior to Pt for the hydrogen evolution reaction.  JOURNAL OF POWER SOURCES,  [10.1016/j.jpowsour.2018.03.022]
35. Zhujun Zhang, Shiliang Zhang, Qilu Yao, Gang Feng, Meihua Zhu, Zhang-Hui Lu.  (2017)  Metal–organic framework immobilized RhNi alloy nanoparticles for complete H2 evolution from hydrazine borane and hydrous hydrazine.  Inorganic Chemistry Frontiers,  5  (2): (370-377).  [10.1039/C7QI00555E]
36. Juan Bai, Shu-He Han, Rui-Li Peng, Jing-Hui Zeng, Jia-Xing Jiang, Yu Chen.  (2017)  Ultrathin Rhodium Oxide Nanosheet Nanoassemblies: Synthesis, Morphological Stability, and Electrocatalytic Application.  ACS Applied Materials & Interfaces,  [PMID:28471161] [10.1021/acsami.7b04874]
37. Yinghua Xu, Hongxing Ma, Tingjie Ge, Youqun Chu, Chun-An Ma.  (2016)  Rhodium-catalyzed electrochemical hydrodefluorination: A mild approach for the degradation of fluoroaromatic pollutants.  ELECTROCHEMISTRY COMMUNICATIONS,  [10.1016/j.elecom.2016.02.012]
38. Song-Il O, Jun-Min Yan, Hong-Li Wang, Zhi-Li Wang, Qing Jiang.  (2014)  Ni/La2O3 catalyst containing low content platinum–rhodium for the dehydrogenation of N2H4·H2O at room temperature.  JOURNAL OF POWER SOURCES,  [10.1016/j.jpowsour.2014.03.059]
39. Sha Chen, Hongye Zhang, Lingyan Wu, Yanfei Zhao, Changliang Huang, Maofa Ge, Zhimin Liu.  (2012)  Controllable synthesis of supported Cu–M (M =Pt, Pd, Ru, Rh) bimetal nanocatalysts and their catalytic performances.  JOURNAL OF MATERIALS CHEMISTRY,  22  (18): (9117-9122).  [10.1039/C2JM30543G]
40. Yaqi Qu, Mengying He, Hualiang An, Xinqiang Zhao, Yanji Wang.  (2025)  A novel and efficient In2O3@RhPt catalyst for solvent-free transfer hydrogenation of TDC to HTDC: Catalytic performance and mechanism.  CHEMICAL ENGINEERING JOURNAL,  [10.1016/j.cej.2025.161742]
41. Xia Kang, Zhendong Wang, Fu Yang, Shijie Kang, Dazhong Ren.  (2024)  Carbon nanotubes supported RhCo-P nanoparticles as highly efficient catalysts for hydrogen generation from hydrazine borane.  JOURNAL OF ALLOYS AND COMPOUNDS,  [10.1016/j.jallcom.2024.173685]
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