Inorganic chemistry

99.99%-99.9999% Indium(III) sulfide

99.99%-99.9999% Indium(III) sulfideIn2S3

Available forms:

  • Molecular Formula: In2S3
  • CasNo.: 12030-24-9
  • Melting point: 1050°C
  • Appearance: Orange powder
  • ProductionCapacity:
  • Purity:
  • Packing:
  • Product Details:

    Top Purity Quality Manufacturer Supply 99.99%-99.9999% Indium(III) sulfide 12030-24-9 with Fast Delivery

    • Molecular Formula:In2S3
    • Molecular Weight:325.838
    • Appearance/Colour:Orange powder 
    • Melting Point:1050°C 
    • PSA:89.48000 
    • Density:4.45 g/cm3 
    • LogP:1.94460 

    INDIUM(III) SULFIDE(Cas 12030-24-9) Usage

    General Description

    Indium sulfide (In2S3) is an orange-red to red colored powder with the sulfuric odor that is characteristic to all sulfides. It is insoluble in water and most organic solvents but decomposes in common mineral acids, releasing hydrogen sulfide gas. Indium sulfide is primarily used as a buffer layer in copper-indium-gallium-diselenide (CIGS) photovoltaic solar cells, where it replaces the toxic material cadmium sulfide. Indium sulfide is available in 4N and 5N degrees of purity, and as a powder or compressed pellets.

    InChI:InChI=1/2In.3S/rIn2S3/c3-1-5-2-4

    12030-24-9 Relevant articles

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    Cao, Guangxiu,Zhao, Yanbao,Wu, Zhishen

    , p. 325 - 327 (2009)

    In this paper, we report a novel solutio...

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    Semenov,Ostapenko,Lukin,Averbakh

    , p. 111 - 113 (2000)

    The optical, electrical, photoelectric, ...

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    Successive Ionic Layer Adsorption and Re...

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    Six new quaternary rare-earth sulfides B...

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    Ma, Xiaohui,Li, Wenjun,Ren, Chaojun,Li, Hongda,Liu, Xintong,Li, Xinyang,Wang, Tianyu,Dong, Mei,Liu, Shujing,Chen, Shaowei

    , (2021)

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    Five new chalcohalides, Ba3GaS4X (X = Cl, Br), Ba3MSe4Cl (M = Ga, In), and Ba7In 2Se6F8: Syntheses, crystal structures, and optical properties

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    Novel method for the preparation of inorganic sulfides and selenides. I. Binary materials and group II-VI phosphors

    Davies, Dominic A.,Vecht, Aron,Silver, Jack,Marsh, Paul J.,Rose, John A.

    , p. 765 - 771 (2000)

    A novel method for the synthesis of a wi...

    N,N′-Dialkyldithiocarbamate chelates of indium(III): Alternative synthetic routes and thermodynamics characterization

    Oliveira, Marcelo M.,Pessoa, Giuliana M.,Carvalho, Ludmilla C.,Peppe, Clovis,Souza, Antonio G.,Airoldi, Claudio

    , p. 223 - 230 (1999)

    Alternative synthetic routes to prepare ...

    Spray pyrolysed In2S3 thin films: A potential electron selective layer for large area inverted bulk-heterojunction polymer solar cells

    Menon, M. R. Rajesh,Maheshkumar,Sreekumar,Kartha, C. Sudha,Vijayakumar

    , p. 199 - 203 (2012)

    In this paper, we report the results of ...

    Synthesis, structure, and properties of Li2In2MQ 6 (M = Si, Ge; Q = S, Se): A new series of IR nonlinear optical materials

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    Study of the Ternary System Sn-In-S. Differential Thermal and Radiocrystallographic Analyses of Pseudobinary SnS-In2S3. Vapor Phase Growth and Characterization of Mixed-Valence Tin Compounds.

    Adenis,Olivier-Fourcade,Jumas,Philippot

    , p. 251 - 259 (1986)

    The Sn-In-S ternary system has been stud...

    Recent studies on In2S3 containing oxygen thin films

    Barreau,Bernède,El Maliki,Marsillac,Castel,Pinel

    , p. 445 - 450 (2002)

    Attention has recently been paid to In2S...

    Structural, textural and photocatalytic properties of quantum-sized In2S3-sensitized Ti-MCM-41 prepared by ion-exchange and sulfidation methods

    Shen, Shaohua,Guo, Liejin

    , p. 2629 - 2635 (2006)

    In2S3 nanocrystallites were successfully...

    Effect of internal surface area on the performance of ZnO In2 S3 CuSCN solar cells with extremely thin absorber

    Kieven,Dittrich,Belaidi,Tornow,Schwarzburg,Allsop,Lux-Steiner

    , (2008)

    Solar cells with an extremely thin light...

    Deposition of Group 6A-derived inorganic semiconductor films as studied by quartz crystal microgravimetry

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    , p. 3749 - 3756 (2000)

    This paper focuses on the use of QCM for...

    Synthesis and characterization of quaternary chalcogenides InSn2Bi3Se8 and In0.2Sn6Bi1.8Se9

    Wang, Ming-Fang,Jang, Shyue-Ming,Huang, Jih-Chen,Lee, Chi-Shen

    , p. 1450 - 1456 (2009)

    Quaternary chalcogenides InSn2Bi3Se8 and...

    Invariant sections in ytterbium-indium-soufre crystallographic descriptions of the phases

    Likforman, A.,Lemoine, P.,Guittard, M.

    , p. 213 - 220 (1993)

    In the ternary Yb-In-S system two phases...

    Low-temperature and template-free synthesis of ZnIn2S 4 microspheres

    Chen, Zhixin,Li, Danzhen,Zhang, Wenjuan,Chen, Chun,Li, Wenjuan,Sun, Meng,He, Yunhui,Fu, Xianzhi

    , p. 9766 - 9772 (2008)

    Porous ZnIn2S4 microspheres have been su...

    Fabrication of crystalline mesoporous metal oxides and sulfides

    Xue, Keyan,Chen, Dairong,Jiao, Xiuling

    , p. 1191 - 1197 (2010)

    Mesoporous metal oxides and sulfides wer...

    Photocatalytic Hydrogen Evolution Coupled with Production of Highly Value-Added Organic Chemicals by a Composite Photocatalyst CdIn2S4@MIL-53-SO3Ni1/2

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    , p. 1499 - 1506 (2021)

    Photocatalytic water splitting coupled w...

    Room-temperature preparation of MIL-68 and its derivative In2S3 for enhanced photocatalytic Cr(VI) reduction and organic pollutant degradation under visible light

    Fu, Huifen,Hang, Jing,Wang, Chong-Chen,Wang, Peng,Wu, Lin,Zhao, Chen

    , (2020)

    MIL-68, a typical In-based MOF, has been...

    Luminescent and transport properties of metastable quaternary compounds in the Cd, MIII ∥ S, Te (MIII = In, Ga) systems

    Odin,Chukichev,Rubina

    , p. 1252 - 1254 (2004)

    Metastable quaternary compounds in the r...

    Highly efficient In2S3/WO3photocatalysts: Z-scheme photocatalytic mechanism for enhanced photocatalytic water pollutant degradation under visible light irradiation

    Qiu, Qingqing,Zhu, Peng,Liu, Yao,Liang, Tongxiang,Xie, Tengfeng,Lin, Yanhong

    , p. 3333 - 3341 (2021)

    A Z-scheme system In2S3/WO3 heterojuncti...

    Indium sulfide microflowers: Fabrication and optical properties

    Zhu, Hui,Wang, Xiaolei,Yang, Wen,Yang, Fan,Yang, Xiurong

    , p. 2033 - 2039 (2009)

    With the assistance of urea, uniform 2D ...

    Liquid ammonia mediated metathesis: Synthesis of binary metal chalcogenides and pnictides

    Shaw,Parkin

    , p. 6940 - 6947 (2001)

    Addition of stoichiometric amounts of lo...

    X-ray and transmission electron microscopy investigations of the new solids In5S5Cl, In5Se5Cl, In 5S5Br, and In5Se5Br

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    , p. 2319 - 2328 (2004)

    The compounds In5Ch5X (Ch = S, Se; X = C...

    Bi3In4S10 and Bi14.7In 11.3S38: Two new bismuth sulfides with interesting Bi-Bi bonding

    Yin, Wenlong,Mei, Dajiang,Yao, Jiyong,Fu, Peizhen,Wu, Yicheng

    , p. 2544 - 2551 (2010)

    Two new ternary bismuth chalcogenides, B...

    Single-source approach to the synthesis of In2S3 and In2O3 crystallites and their optical properties

    Chen, Xiangying,Zhang, Zhongjie,Zhang, Xingfa,Liu, Jianwei,Qian, Yitai

    , p. 482 - 486 (2005)

    Novel urchin-like In2S3 microspheres con...

    Room temperature synthesis of In2S3 micro- and nanorod textured thin films

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    , p. 983 - 989 (2008)

    Thin films of indium sulfide (In2S3) mic...

    Chemical interaction of indium arsenide and gallium antimonide with sulfur

    Kompanichenko,Omel'chuk,Kozin

    , p. 215 - 219 (2003)

    The reactions of fine-particle indium ar...

    Growth and the phase transition of indium sulfide ultrafine particle

    Ueda, Masahiro,Suzuki, Hitoshi,Kido, Osamu,Shintaku, Masayuki,Kurumada, Mami,Sato, Takeshi,Saito, Yoshio,Kaito, Chihiro

    , p. 1621 - 1624 (2005)

    Indium sulfide particles produced in smo...

    Pb5.0(1)In8.4(1)Bi1.6(1)S20, a new quaternary lead indium bismuth sulfide

    Reis,Kraemer,Seiler,Topa,Keller

    , p. i12-i16 (2012)

    The title phase, first detected in the e...

    Carbon quantum dot decorated hollow In2S3 microspheres with efficient visible-light-driven photocatalytic activities

    Huang, Changyou,Hong, Yuanzhi,Yan, Xu,Xiao, Lisong,Huang, Kai,Gu, Wei,Liu, Kuili,Shi, Weidong

    , p. 40137 - 40146 (2016)

    Carbon quantum dot (CQDs) decorated holl...

    Some studies on successive ionic layer adsorption and reaction (SILAR) grown indium sulphide thin films

    Pathan,Lokhande,Kulkarni,Amalnerkar,Seth,Han, Sung-Hwan

    , p. 1018 - 1023 (2005)

    Indium sulphide (In2S3) thin films were ...

    SEMICONDUCTOR PARTICLES IN BILAYER LIPID MEMBRANES. FORMATION, CHARACTERIZATION, AND PHOTOELECTROCHEMISTRY.

    Zhao,Baral,Rolandi,Fendler

    , p. 1012 - 1024 (1988)

    Bilayer lipid membranes (BLMs) have been...

    Bi2S3–In2S3 Heterostructures for Efficient Photoreduction of Highly Toxic Cr6+ Enabled by Facet-Coupling and Z-Scheme Structure

    Wang, Linjuan,Karuturi, Siva,Zan, Ling

    , (2021)

    The construction of Z-scheme photocataly...

    Thermal Oxidation of V2S5/InP Heterostructures in Oxygen

    Mittova,Soshnikov,Terekhov,Semenov

    , p. 975 - 978 (2000)

    X-ray emission and IR spectroscopy data ...

    Raman scattering studies of the Ge-In sulfide glasses

    Tao, Haizheng,Mao, Shun,Dong, Guoping,Xiao, Haiyan,Zhao, Xiujian

    , p. 408 - 412 (2006)

    Room temperature Raman scattering measur...

    Structural diversity by mixing chalcogen atoms in the chalcophosphate system K/ In/P/Q (Q = S, Se)

    Rothenberger, Alexander,Wang, Hsien-Hau,Chung, Duckyoung,Kanatzidis, Mercouri G.

    , p. 1144 - 1151 (2010)

    The new thiophosphate salt K4In2(PS4) 2(...

    Thioglycolic acid-assisted solvothermal synthesis of CuInS2 with controllable microstructures

    Gou, Xinglong,Peng, Shengjie,Zhang, Li,Shi, Yunhui,Chen, Jun,Shen, Panwen

    , p. 1050 - 1051 (2006)

    A facile solvothermal approach assisted ...

    Origins of cracking in highly porous anodically grown films on InP

    Harvey,Buckley,Chu,Sutton,Newcob

    , p. B398-B402 (2002)

    The nature of the surface films grown du...

    20 Angstroem Cd4In16S3514- Supertetrahedral T4 Clusters as Building Units in Decorated Cristobalite Frameworks

    Li, Hailian,Kim, Jaheon,Groy, T. L.,O'Keeffe, M.,Yaghi, O. M.

    , p. 4867 - 4868 (2001)

    -

    Vaporization chemistry and thermodynamics of the lead-indium-sulfur system by computer-automated Knudsen and torsion effusion methods

    Haque, Reza,Gates, Alfred S.,Edwards, Jimmie G.

    , p. 6301 - 6307 (1980)

    Vaporization of PbIn2S4(s) was studied b...

    Interface photo-charge kinetics regulation by carbon dots for efficient hydrogen peroxide production

    Li, Yi,Zhao, Yajie,Nie, Haodong,Wei, Kaiqiang,Cao, Jingjing,Huang, Hui,Shao, Mingwang,Liu, Yang,Kang, Zhenhui

    , p. 515 - 522 (2021)

    Hydrogen peroxide (H2O2) is a multi-func...

    Full-color emission from In2S3 and In 2S3:Eu3+ nanoparticles

    Chen, Wei,Bovin, Jan-Olov,Joly, Alan G.,Wang, Shaopeng,Su, Fuhai,Li, Guohua

    , p. 11927 - 11934 (2004)

    New observations on the luminescence of ...

    Aqueous precipitation and electrical properties of In2S3: characterization of the In2S3/polyaniline and In2S3/ polypyrrole heterojunctions

    Dalas, E.,Sakkopoulos, S.,Vitoratos, E.,Maroulis, G.,Kobotiatis, L.

    , (1993)

    The stability of indium sulphide aqueous...

    Properties of In2S3 thin films deposited onto ITO/glass substrates by chemical bath deposition

    Asenjo,Guilln,Chaparro,Saucedo,Bermudez,Lincot,Herrero,Gutirrez

    , p. 1629 - 1633 (2010)

    In2S3 films have been chemically deposit...

    Primary solid-state batteries constructed from copper and indium sulphides

    Dalas, E.,Kobotiatis, L.

    , (1993)

    Copper and indium sulphides were prepare...

    Ba2AgInS4 and Ba4MGa5Se 12 (M = Ag, Li): Syntheses, structures, and optical properties

    Yin, Wenlong,Feng, Kai,Mei, Dajiang,Yao, Jiyong,Fu, Peizhen,Wu, Yicheng

    , p. 2272 - 2276 (2012)

    The first two members in alkaline-earth/...

    X-ray absorption spectra and conduction band structure of In 2S3

    Womes,Jumas,Olivier-Fourcade

    , p. 257 - 260 (2004)

    X-ray absorption spectra of the spinel I...

    Photocatalytic degradation of methyl orange by Ca doped β-In2S3 with varying Ca concentration

    Chen, Yangfan,Li, Jiangling,Liu, Qingcai,Liu, Weizao,Ren, Shan,Yang, Jian,Yao, Wen

    , (2022/03/27)

    Industrial wastewater is becoming a univ...

    Direct Z-scheme WO3/In2S3 heterostructures for enhanced photocatalytic reduction Cr(VI)

    Arif, Muhammad,Chen, Shen-ming,Hu, Chengyao,Hua, Yuxiang,Liu, Xiaoheng,Zhang, Min

    , (2022/03/31)

    The design of efficient and stable photo...

    12030-24-9 Process route

    In(OH)(terephthalte)·1.0DMF·zH<sub>2</sub>O

    In(OH)(terephthalte)·1.0DMF·zH2O

    thioacetamide
    62-55-5

    thioacetamide

    indium(III) sulfide
    12030-24-9

    indium(III) sulfide

    Conditions
    Conditions Yield
    In ethanol; at 120 ℃; for 8h; Autoclave;
     
    indium(III) nitrate trihydrate

    indium(III) nitrate trihydrate

    thioacetamide
    62-55-5

    thioacetamide

    indium(III) sulfide
    12030-24-9

    indium(III) sulfide

    Conditions
    Conditions Yield
    In water; at 160 ℃; for 24h; Reagent/catalyst; Autoclave;
     

    12030-24-9 Upstream products

    • 7440-74-6
      7440-74-6

      indium

    • 7704-34-9
      7704-34-9

      sulfur

    • 7783-06-4
      7783-06-4

      hydrogen sulfide

    • 1313-82-2
      1313-82-2

      sodium sulfide

    12030-24-9 Downstream products

    • 37231-03-1
      37231-03-1

      indium sulfide

    • 12030-05-6
      12030-05-6

      indium(III) nitride

    • 7704-34-9
      7704-34-9

      sulfur

    • 7783-06-4
      7783-06-4

      hydrogen sulfide

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