Pharmaceutical

7440-05-3

  • Product Name:Palladium
  • Molecular Formula:Pd
  • Specifications:99%
  • Molecular Weight:106.42
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Product Details;

CasNo: 7440-05-3

Molecular Formula: Pd

Appearance: Grey powder

Top Quality Chinese Factory supply 7440-05-3 Palladium

  • Molecular Formula:Pd
  • Molecular Weight:106.42
  • Appearance/Colour:Grey powder 
  • Melting Point:1555 °C 
  • Boiling Point:3167 °C 
  • PSA:0.00000 
  • Density:1.025 g/mL at 25 °C 
  • LogP:0.00000 

Palladium(Cas 7440-05-3) Usage

Chemical Description

Palladium is a transition metal catalyst, while SnCl2 is an organotin compound used as a reducing agent.

InChI:InChI=1/Pd

7440-05-3 Relevant articles

Kinetically controlled synthesis of triangular and hexagonal nanoplates of palladium and their SPR/SERS properties

Xiong, Yujie,McLellan, Joseph M.,Chen, Jingyi,Yin, Yadong,Li, Zhi-Yuan,Xia, Younan

, p. 17118 - 17127 (2005)

The rapid reduction of Na2PdCl4 by ethyl...

Characterisation and microstructure of Pd and bimetallic Pd-Pt catalysts during methane oxidation

Persson, Katarina,Jansson, Kjell,Jaeras, Sven G.

, p. 401 - 414 (2007)

The catalytic oxidation of methane was s...

Transformations of β-hydroxo-substituted η3-allyl Pd complexes in neutral and weakly acidic solutions

Finashina,Kramareva,Evstigneeva,Flid,Belov

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The oxidation of some β-hydroxo-substitu...

Cross-coupling versus homocoupling in the reactions of dimethyl(N,N,N′,N′-tetramethylethanediamine)palladium with organic halides

De Graaf, Wim,Boersma, Jaap,Van Koten, Gerard

, p. 1479 - 1484 (1990)

Reaction of PdMe2(tmeda) (tmeda = N,N,N′...

Energetic and entropic contributions to self-assembly of binary nanocrystal superlattices: Temperature as the structure-directing factor

Bodnarchuk, Maryna I.,Kovalenko, Maksym V.,Heiss, Wolfgang,Talapin, Dmitri V.

, p. 11967 - 11977 (2010)

We studied the effect of temperature on ...

Formation of palladium nanoparticles in olefin oxidation with iron(III) aqua ions in the presence of the Pd/ZrO2/SO4 metallic catalyst

Potekhin,Matsura

, p. 650 - 655 (2006)

The reactions of the Pd/ZrO2/SO4-catalyz...

LaPdo3: The first PdIII oxide with the perovskite structure [14]

Kim,Lemaux,Demazeau,Kim,Choy

, p. 10413 - 10414 (2001)

-

Recovery of palladium from spent solutions for manufacture of catalysts

Belobaba,Maslii,Medvedev

, p. 1952 - 1956 (2010)

Palladium recovery from [Pd(NH3)4]Cl2 so...

Hydrogen sorption in Pd monolayers in alkaline solution

Martin,Lasia

, p. 5292 - 5299 (2009)

Hydrogen adsorption/absorption at pallad...

Mechanism of the reaction between the aqua complexes of palladium(II) and iron(II) in a solution of HClO4

Potekhin,Matsura,Solov'eva,Potekhin

, p. 381 - 384 (2004)

The kinetics of the reaction of an aqua ...

Electroless Deposition of Palladium at Bare and Templated Liquid/Liquid Interfaces

Dryfe, Robert A. W.,Simm, Andrew O.,Kralj, Brett

, p. 13014 - 13015 (2003)

A simple, electroless approach to metall...

A novel electrochemical sensor for formaldehyde based on palladium nanowire arrays electrode in alkaline media

Zhang, Yan,Zhang, Min,Cai, Zhiquan,Chen, Meiqiong,Cheng, Faliang

, p. 172 - 177 (2012)

A novel electrochemical sensor for the d...

Magnetic properties of transition-metal nanoclusters on a biological substrate

Herrmannsd?erfer,Bianchi,Papageorgiou,Pobell,Wosnitza,Pollmann,Merroun,Raff,Selenska-Pobell

, p. e821-e823 (2007)

We have investigated the magnetic proper...

Spontaneous deposition of Pd on a Ru(0 0 0 1) surface

Brankovic,McBreen,Ad?í

, p. L363-L368 (2001)

Spontaneous deposition of Pd on a Ru(0 0...

Synthesis and some properties of Heteronuclear platinum and palladium carbonyl clusters

Fedoseev,Gerasimova,Loginova

, p. 186 - 189 (2010)

Heteronuclear clusters of general formul...

One-step synthesis of metallic and metal oxide nanoparticles using amino-PEG oligomers as multi-purpose ligands: Size and shape control, and quasi-universal solvent dispersibility

Rubio-Garcia, Javier,Coppel, Yannick,Lecante, Pierre,Mingotaud, Christophe,Chaudret, Bruno,Gauffre, Fabienne,Kahn, Myrtil L.

, p. 988 - 990 (2011)

A one-step and room temperature synthesi...

Self-organization of spherical, core-shell palladium aggregates by laser-induced and thermal decomposition of [Pd(PPh3)4]

Ye, Enyi,Tan, Hua,Li, Shuping,Fan, Wai Yip

, p. 1120 - 1123 (2006)

(Figure Presented) Metal in the middle: ...

Factors influencing linkage isomer preference in palladium(II)-chloranilate complexes

Jeong, Woo-Yeong,Holwerda, Robert A.

, p. 453 - 464 (1989)

The actors inluencing linakge isomer pre...

Synthesis of bimetallic PdAu nanoparticles for formic acid oxidation

Suo, Yange,Hsing, I-Ming

, p. 2174 - 2183 (2011)

In this work, a simple co-deposition str...

Synthesis of nearly monodisperse palladium (Pd) nanoparticles by using oleylamine and trioctylphosphine mixed ligands

Yang, Zhiqiang,Klabunde, Kenneth J.

, p. 1016 - 1021 (2009)

In this paper, we report a facile method...

Fabrication of high aspect ratio ferroelectric microtubes by vacuum infiltration using macroporous silicon templates

Bharadwaja,Olszta,Trolier-McKinstry,Li,Mayer,Roozeboom

, p. 2695 - 2701 (2006)

Ordered arrays of high aspect ratio (>10...

Catalytically active nano-porous cobalt-palladium alloys

Avisar, Shay,Shner, Yahel,Abu-Reziq, Raed,Popov, Inna,Bino, Avi

, (2022)

The potential advantages of nano-alloys ...

Thermal decomposition of palladium(ii) pyrazolyl complexes: Part II

Netto,Santana,Mauro,Frem, Regina C. G.,De Almeida,Crespi, Marisa S.,Zorel Jr.

, p. 339 - 342 (2005)

Thermal behavior of pyrazolyl complexes ...

Synthesis of Cu-Pd alloy thin films by co-electrodeposition

Allemand, Morgan,Martin, Manuel. H.,Reyter, David,Roue, Lionel,Guay, Daniel,Andrei, Carmen,Botton, Gianluigi A.

, p. 7397 - 7403 (2011)

This paper presents results on the synth...

Regulating peroxidase-like activity of Pd nanocubes through surface inactivation and its application for sulfide detection

Wang, Yi,Zhang, Pu,Liu, Lei,Xue, Fei,Liu, Maochang,Li, Ling,Fu, Wensheng

, p. 371 - 376 (2019)

A new analytical method is described for...

Synthesis, characterization, and biological activity of a new palladium(II) complex with deoxyalliin

Corbi, Pedro P.,Massabni, Antonio C.,Moreira, Andreia G.,Medrano, Francisco J.,Jasiulionis, Miriam G.,Costa-Neto, Claudio M.

, p. 104 - 109 (2005)

Synthesis, characterization, and biologi...

Cascade approach for synthesis of R-1-phenyl ethyl acetate from acetophenone: Effect of support

M?ki-Arvela, P?ivi,Sahin, Serap,Kumar, Narendra,Heikkil?, Teemu,Lehto, Vesa-Pekka,Salmi, Tapio,Murzin, Dmitry Yu.

, p. 132 - 141 (2008)

One-pot synthesis of R-1-phenylethyl ace...

A palladium(II) complex with a chelating (carboxy) phosphanoalkyl ligand

?těpni?ka, Petr

, p. 426 - 430 (2004)

rac-[SP-4-2]-{2-[(dimethylamino-κN)methy...

Catalytic activity of electrolytic palladium deposits on porous nickel substrates

Nikiforova,Savel'Eva,Datskevich

, p. 1347 - 1353 (2011)

Catalytic activity of palladium layers i...

Surface-enhanced Raman scattering of 4-mercaptopyridine on thin films of nanoscale Pd cubes, boxes, and cages

McLellan, Joseph M.,Xiong, Yujie,Hu, Min,Xia, Younan

, p. 230 - 234 (2006)

We have synthesized a variety of Pd nano...

Thermal and spectroscopic investigation on N,N-dimethylbenzylamine based cyclopalladated compounds containing isonicotinamide

Stevanato, Alessandra,Mauro, Antonio E.,Netto, Adelino V. G.

, p. 149 - 152 (2009)

Synthesis, spectroscopic characterizatio...

Are organotin reagents derived from bis(trimethylsilyl)picoline suitable precursors for the preparation of cyclometallated complexes?

Molter, Anja,Mohr, Fabian

, p. 134 - 138 (2009)

The organotin reagents [2-PyC(SiMe3)2SnR...

Combined redox couples for catalytic oxidation of methane by dioxygen at low temperatures

An, Zengjian,Pan, Xiulian,Liu, Xiumei,Han, Xiuwen,Bao, Xinhe

, p. 16028 - 16029 (2006)

The combination of three redox couples P...

CRYSTALLIZATION OF METALLIC GLASS Pd80Si20.

Li,He

, p. 91 - 105 (1986)

The crystallization behavior was studied...

SERS at structured palladium and platinum surfaces

Abdelsalam, Mamdouh E.,Mahajan, Sumeet,Bartlett, Philip N.,Baumberg, Jeremy J.,Rusell, Andrea E.

, p. 7399 - 7406 (2007)

Palladium and platinum are important cat...

Palladium metal and palladium oxide particle production by spray pyrolysis

Pluym, T. C.,Lyons, S. W.,Powell, Q. H.,Gurav, A. S.,Kodas, T. T.,et al.

, p. 369 - 376 (1993)

Spray pyrolysis was used to produce dens...

Palladium nanostructures synthesized by radiolysis or by photoreduction

Redjala, Tanafit,Apostolecu, Gabriela,Beaunier, Patricia,Mostafavi, Mehran,Etcheberry, Arnaud,Uzio, Denis,Thomazeau, Cecile,Remita, Hynd

, p. 1403 - 1408 (2008)

Palladium nanostructures formed by nanow...

Electrodeposited Pd-Co catalyst for direct methanol fuel cell electrodes: Preparation and characterization

Tominaka, Satoshi,Momma, Toshiyuki,Osaka, Tetsuya

, p. 4679 - 4686 (2008)

Pd-Co alloy has been recently proposed a...

Facile fabrication of noble metal nanoparticles encapsulated in hollow silica with radially oriented mesopores: Multiple roles of the N-lauroylsarcosine sodium surfactant

Wang, Hu,Wang, Jin-Gui,Zhou, Hui-Jing,Liu, Yu-Ping,Sun, Ping-Chuan,Chen, Tie-Hong

, p. 7680 - 7682 (2011)

A facile one-pot method was reported to ...

Intramolecular and interionic structural studies of novel olefin palladium(II) and platinum(II) complexes containing poly(pyrazol-1-yl)borate and -methane ligands. X-ray structures of palladium five-coordinate complexes

Binotti, Barbara,Bellachioma, Gianfranco,Cardaci, Giuseppe,Macchioni, Alceo,Zuccaccia, Cristiano,Foresti, Elisabetta,Sabatino, Piera

, p. 346 - 354 (2002)

Complexes [M(η1,η2-C8H12OMe)(pz2 -YH2)](...

New formamidine ligands and their mixed ligand palladium(II) oxalate complexes: Synthesis, characterization, DFT calculations and in vitro cytotoxicity

Soliman, Ahmed A.,Alajrawy, Othman I.,Attabi, Fawzy A.,Shaaban, Mohamed R.,Linert

, p. 358 - 369 (2016)

A series of new ternary palladium(II) co...

Studies on the feasibility of electrochemical recovery of palladium from high-level liquid waste

Jayakumar,Venkatesan,Srinivasan,Rao, P.R. Vasudeva

, p. 1083 - 1088 (2009)

The electrochemical behavior of palladiu...

Synthesis and reactivity of semibridging borylene complexes

Braunschweig, Holger,Radacki, Krzysztof,Rais, Daniela,Uttinger, Katharina

, p. 5159 - 5164 (2006)

Reaction of the terminal borylene comple...

Thermal and spectral studies of palladium(II) complexes

Mishra,Mishra,Manav,Kaushik

, p. 509 - 515 (2007)

Palladium(II) complexes of type [Pd(L)Cl...

Synthesis and mechanistic study of palladium nanobars and nanorods

Xiong, Yujie,Cai, Honggang,Wiley, Benjamin J.,Wang, Jinguo,Kim, Moon J.,Xia, Younan

, p. 3665 - 3675 (2007)

This paper describes a simple and versat...

Pd colloid-catalyzed methoxycarbonylation of iodobenzene in ionic liquids

Wojtków,Trzeciak,Choukroun,Pellegatta

, p. 81 - 86 (2004)

A Pd colloid prepared by reduction of th...

-

, p. 45 - 52 (1983)

-

Synthesis, spectral and thermal studies on dicarboxylate-bridged palladium(II) coordination polymers. Part i

Fernandes,Takahashi,Frem,Netto,Mauro,Matos

, p. 123 - 126 (2009)

This work describes the synthesis, IR an...

Biochemical Characterization and Antimicrobial Activity against Some Human or Phyto-Pathogens of New Diazonium Heterocyclic Metal Complexes

Camele, Ippolito,El-Attar, Mohamed S.,El-Desoky, Sameh I.,El-Farargy, Ahmed F.,El-Shwiniy, Walaa H.,Elshafie, Hazem S.,Sadeek, Sadeek A.

, (2022/01/31)

String of vanadium (IV), zirconium (IV),...

Ligand-controlled and nanoconfinement-boosted luminescence employing Pt(ii) and Pd(ii) complexes: From color-tunable aggregation-enhanced dual emitters towards self-referenced oxygen reporters

Maisuls, Iván,Wang, Cui,Gutierrez Suburu, Matias E.,Wilde, Sebastian,Daniliuc, Constantin-Gabriel,Brünink, Dana,Doltsinis, Nikos L.,Ostendorp, Stefan,Wilde, Gerhard,K?sters, Jutta,Resch-Genger, Ute,Strassert, Cristian A.

, p. 3270 - 3281 (2021/03/17)

In this work, we describe the synthesis,...

Synthesis, Structure, DFT, and Biological Activity of Metal Complexes of Norfloxacin and Metformin Mixed Ligand

Abbass, L. M.,El-Shwiniy, W. H.,El-Telbany, M.,Sadeek, S. A.,Zordok, W. A.

, p. 1774 - 1782 (2021/11/01)

Abstract: A new series of mixed ligand m...

7440-05-3 Process route

lithium aluminium tetrahydride
16853-85-3

lithium aluminium tetrahydride

bis(acetylacetonato)palladium(II)

bis(acetylacetonato)palladium(II)

aluminium(III) acetylacetonate

aluminium(III) acetylacetonate

lithium pentane-2,4-dionate
18115-70-3

lithium pentane-2,4-dionate

palladium
7440-05-3

palladium

Conditions
Conditions Yield
In tetrahydrofuran; benzene; byproducts: H2; redn. of soln. of Pd(acac)2 in benzene by soln. of LiAlH4 in THF under Ar with stirring at room temp. was studied; ppt. washed with THF and benzene under Ar and dried in vac at 30°C; UV/Vis spectroscopy, NMR, H2 formed detn. by volumetry;
N-carbamic acid tert-butyl ester-N-methanesulfonamide-N-phenethyl-4-boronic acid
344462-93-7

N-carbamic acid tert-butyl ester-N-methanesulfonamide-N-phenethyl-4-boronic acid

propane-2-sulfonic acid (2-(4-iodophenyl)propyl)amide
375345-98-5

propane-2-sulfonic acid (2-(4-iodophenyl)propyl)amide

{(2R)-2-[4-(4-{2-[(methylsulfonyl)amino]ethyl}phenyl)phenyl]-propyl}[(methylethyl)sulfonyl]amine
375345-95-2

{(2R)-2-[4-(4-{2-[(methylsulfonyl)amino]ethyl}phenyl)phenyl]-propyl}[(methylethyl)sulfonyl]amine

palladium
7440-05-3

palladium

Conditions
Conditions Yield
With propan-1-ol; potassium carbonate; palladium diacetate; In water; at 87 ℃; for 20h; Heating / reflux;
75.7%

7440-05-3 Upstream products

  • 3375-31-3
    3375-31-3

    palladium diacetate

  • 3375-31-3
    3375-31-3

    palladium diacetate

  • 344462-93-7
    344462-93-7

    N-carbamic acid tert-butyl ester-N-methanesulfonamide-N-phenethyl-4-boronic acid

  • 375345-98-5
    375345-98-5

    propane-2-sulfonic acid (2-(4-iodophenyl)propyl)amide

7440-05-3 Downstream products

  • 851958-58-2
    851958-58-2

    (3-ethoxy-4-methoxy-phenyl)-(3-hydroxy-4-methoxy-phenyl)-methanone

  • 905301-43-1
    905301-43-1

    2,6-di-tert-butyl-4-(4-aminophenyl)-1-(4-aminophenoxy)benzene

  • 859825-19-7
    859825-19-7

    N-(4-tert-butylphenyl)-5,6,7,8-tetrahydro-2-(methoxymethyl)pyrido[3,4-d]pyrimidin-4-amine

  • 97126-20-0
    97126-20-0

    3-acetamido-6-aminochromen-2-one

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