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Os 76

Osmium (Os)

transition-metal
Periode: 6 Golongan: 8 Blok: d

Solid

Bobot Atom Standar

190,23 u

Konfigurasi elektron

[Xe] 6s2 4f14 5d6

Titik lebur

3032,85 °C

Titik didih

5011,85 °C

Massa jenis

2,25872e+4 kg/m³

Bilangan oksidasi

−4, −2, −1, 0, +1, +2, +3, +4, +5, +6, +7, +8

Keelektronegatifan (Pauling)

2,2

Energi ionisasi (ke-1)

8,43823 eV

Tahun penemuan

1803

Jari-jari atom

130 pm

Detail

Asal nama Greek: osmê (odor).
Negara penemuan England
Penemu Smithson Tenant

Osmium is a very dense, hard, blue-white platinum-group metal. It is chemically noble in compact metallic form but is notable for forming volatile and highly toxic osmium tetroxide. Natural osmium occurs with other platinum-group elements in ultramafic ores and placer deposits, chiefly as alloys and sulfide-bearing mineral assemblages. Its rarity, difficult fabrication, and toxicity of some compounds limit its use despite unusual physical and chemical properties.

The metal is lustrous, bluish white, extremely hard, and brittle even at high temperatures. It has the highest melting point and the lowest vapor pressure of the platinum group. The metal is very difficult to fabricate, but the powdered or spongy metal slowly gives off osmium tetroxide, which as a powerful oxidizing agent and has a strong smell. The tetroxide is highly toxic, and boils at 130°C.

Density measurements show osmium to be a little more dense than iridium, and osmium is often cited as the heavier element. However, calculations of the density from the space lattice, which may be more reliable than these measurements, give a density of 22.65 for iridium compared to 22.61 for osmium. According to IUPAC, because of this apparent contradiction, no decision has been made as to which is heavier.

The name derives from the Greek osme for "smell" because of the sharp odor of its volatile oxide. Both osmium and iridium were discovered simultaneously in a crude platinum ore by the English chemist Smithson Tennant in 1803.

Osmium and iridium were discovered at the same time by the British chemist Smithson Tennant in 1803. Osmium and iridium were identified in the black residue remaining after dissolving platinum ore with aqua regia, a mixture of 25% nitric acid (HNO3) and 75% hydrochloric acid (HCl). Today, osmium is primarily recovered during the processing of platinum and nickel ores.

Discovered in 1803 by Tennant in the residue left when crude platinum is dissolved by aqua regia.

Gambar

Sifat

Fisika

Jari-jari atom (empiris)
130 pm Bandingkan Jari-jari atom (empiris) semua unsur →
Jari-jari kovalen
144 pm Bandingkan Jari-jari kovalen semua unsur →
Jari-jari van der Waals
216 pm Bandingkan Jari-jari van der Waals semua unsur →
Jari-jari logam
126 pm Bandingkan Jari-jari logam semua unsur →
Massa jenis
2,25872 × 104 kg/m³ Bandingkan Massa jenis semua unsur →
Volume molar
0,00843 L/mol
Fase pada STP
Padat Bandingkan Fase pada STP semua unsur →
Titik lebur
3032,85 °C Bandingkan Titik lebur semua unsur →
Titik didih
5011,85 °C Bandingkan Titik didih semua unsur →
Kapasitas kalor spesifik
0,13 J/(g·K) Bandingkan Kapasitas kalor spesifik semua unsur →
Kapasitas kalor molar
24,7 J/(mol·K) Bandingkan Kapasitas kalor molar semua unsur →
Struktur kristal
Heksagonal susunan rapat Bandingkan Struktur kristal semua unsur →

Kimia

Keelektronegatifan (Pauling)
2,2 Bandingkan Keelektronegatifan (Pauling) semua unsur →
Keelektronegatifan (Allen)
1,65
Afinitas elektron
1,1 eV
Energi ionisasi (ke-1)
8,43823 eV Bandingkan Energi ionisasi (ke-1) semua unsur →
Energi ionisasi (ke-2)
17,000059 eV Bandingkan Energi ionisasi (ke-2) semua unsur →
Energi ionisasi (ke-3)
25,000086 eV Bandingkan Energi ionisasi (ke-3) semua unsur →
Energi ionisasi (ke-4)
41,000141 eV Bandingkan Energi ionisasi (ke-4) semua unsur →
Energi ionisasi (ke-5)
55,000189 eV Bandingkan Energi ionisasi (ke-5) semua unsur →
Bilangan oksidasi
−4, −2, −1, 0, +1, +2, +3, +4, +5, +6, +7, +8 Bandingkan Bilangan oksidasi semua unsur →
Elektron valensi
8 Bandingkan Elektron valensi semua unsur →
Konfigurasi elektron
[Xe] 6s2 4f14 5d6

Termodinamika

Kalor peleburan
0,32854848 eV Bandingkan Kalor peleburan semua unsur →
Kalor penguapan
6,425869 eV Bandingkan Kalor penguapan semua unsur →
Kalor sublimasi
8,187801 eV
Kalor atomisasi
8,187801 eV
Entalpi atomisasi
8,156708 eV

Nuklir

Proton
76 Bandingkan Proton semua unsur →
Neutron
116 Bandingkan Neutron semua unsur →
Isotop yang diketahui
43 Bandingkan Isotop yang diketahui semua unsur →
Isotop stabil
0 Bandingkan Isotop stabil semua unsur →
Isotop paling stabil
Os-192
Tahun penemuan
1803

Kelimpahan

Kelimpahan (kerak Bumi)
0,002 mg/kg Bandingkan Kelimpahan (kerak Bumi) semua unsur →

Struktur Kristal

Konstanta kisi a
274 pm

Struktur Elektronik

Elektron per kulit
2, 8, 18, 32, 14, 2 Bandingkan Elektron per kulit semua unsur →

Pengenal

Nomor CAS
7440-04-2 Bandingkan Nomor CAS semua unsur →
Simbol term
5D4
InChI
InChI=1S/Os
Kunci InChI
SYQBFIAQOQZEGI-UHFFFAOYSA-N

Konfigurasi Elektron Diukur

Muatan ion
Proton 76
Elektron 76
Muatan Netral
Konfigurasi Os: 4f¹⁴ 5d⁶ 6s²
Konfigurasi elektron
Diukur
[Xe] 4f¹⁴ 5d⁶ 6s²
1s² 2s² 2p⁶ 3s² 3p⁶ 3d¹⁰ 4s² 4p⁶ 4d¹⁰ 5s² 5p⁶ 4f¹⁴ 5d⁶ 6s²
Diagram orbital
1s
2/2
2s
2/2
2p
6/6
3s
2/2
3p
6/6
4s
2/2
3d
10/10
4p
6/6
5s
2/2
4d
10/10
5p
6/6
6s
2/2
4f
14/14
5d
6/10 4↑
Total elektron: 76 Tidak berpasangan: 4 ?

Model atom

Proton 76
Neutron 91
Elektron 76
Nomor massa 167
Kestabilan Radioaktif

Isotop mengubah jumlah neutron, massa, dan kestabilan — bukan konfigurasi elektron atom netral.

Model atom skematis, tidak sesuai skala.

Sidik Jari Atom

Spektrum Emisi / Absorpsi

0 / 0 (0 0 dengan intensitas)
Diukur
Emisi Tampak: 380–750 nm

Distribusi Isotop

Tidak memiliki isotop stabil.

Nomor massaMassa atom (u)Kelimpahan alamiWaktu paruh
167 Radioaktif166,971549 ± 0,000078Tidak tersedia839 ms
161 Radioaktif160,98903 ± 0,00043Tidak tersedia640 us
203 Radioaktif202,992195 ± 0,000429Tidak tersedia300 ms
166 Radioaktif165,972692 ± 0,00002Tidak tersedia213 ms
198 Radioaktif197,97441 ± 0,00021Tidak tersedia125 detik
Diukur

Fase / Wujud

1 atm / 101.325 kPa
Padat 25 °C (298,15 K)

Alasan: 3007,8 °C di bawah titik lebur (3032,85 °C)

Titik lebur 3032,85 °C
Titik didih 5011,85 °C
Di bawah titik lebur sebesar 3007,8 °C
0 K Suhu saat ini: 25 °C 6000 K
Linimasa fase

Skematis, tidak sesuai skala

Padat
Cair
Gas
Peleburan
Pendidihan
25°C
Padat
Cair
Gas
Saat ini

Titik transisi fase

Titik lebur Literatur
3032,85 °C
Titik didih Literatur
5011,85 °C
Fase saat ini Dihitung
Padat

Energi transisi

Kalor peleburan Literatur
0,32854848 eV

Energi yang diperlukan untuk meleburkan 1 mol pada titik lebur

Kalor penguapan Literatur
6,425869 eV

Energi yang diperlukan untuk menguapkan 1 mol pada titik didih

Kalor sublimasi Literatur
8,187801 eV

Energi yang diperlukan untuk menyublimkan 1 mol pada titik sublimasi

Massa jenis

Massa jenis referensi Literatur
2,25872e+4 kg/m³

Pada kondisi standar

Massa jenis saat ini Dihitung
2,25872e+4 kg/m³

Pada kondisi standar

Spektrum Atom

Menampilkan 10 dari 76. Diurutkan berdasarkan muatan ion (menaik).

Data Garis Spektrum ?

IonMuatanTotal garisProbabilitas transisiPenamaan tingkat energi
Os I 053400
Os II +13800
Os III +2106110611061
Data Garis Spektrum NIST →

Data Tingkat Energi ?

IonMuatanTingkat energi
Os I 0274
Os II +140
Os III +2201
Os IV +32
Os V +42
Os VI +52
Os VII +62
Os VIII +72
Os IX +82
Os X +92
Data Tingkat Energi NIST →
76 Os 190.23

Osmium — Visualisasi Orbital Atom

[Xe]6s24f145d6
Tingkat energi 2 8 18 32 14 2
Bilangan oksidasi -4, -2, -1, 0, +1, +2, +3, +4, +5, +6, +7, +8
HOMO 5d n=5 · l=2 · m=-2
Osmium — Pratinjau Visualisasi Orbital Atom
Three.js hanya dimuat saat diminta
76 Os 190.23

Osmium — Visualisasi Struktur Kristal

Heksagonal Primitif · Pearson hP2
Eksperimental
Pearson hP2
No. Koord. 12
Pengemasan 76.583%
Osmium — Pratinjau Visualisasi Struktur Kristal
Three.js hanya dimuat saat diminta

Jari-jari Ion

MuatanKoordinasiSpinJari-jari
+46Tidak tersedia63 pm
+56Tidak tersedia57.49999999999999 pm
+65Tidak tersedia49 pm
+66Tidak tersedia54.50000000000001 pm
+76Tidak tersedia52.5 pm
+84Tidak tersedia39 pm

Senyawa

Os
190,200 u
Os+4
190,200 u
Os
190,961 u
Os
181,952 u
Os
180,953 u
Os
188,958 u
Os
184,954 u
Os
192,964 u
Os
179,952 u
Os
193,965 u
Os+8
190,200 u
Os+2
190,200 u
Os+6
190,200 u
Os+
190,200 u
Os+5
190,200 u
Os
183,952 u
Os+4
190,961 u
Os
186,956 u
Os
185,954 u
Os
187,956 u
Os
189,958 u
Os
191,961 u

Isotop (5)

Nomor massaMassa atom (u)Kelimpahan alamiWaktu paruhMode peluruhan
167 Radioaktif166,971549 ± 0,000078Tidak tersedia839 ms
α =51±0.4%β+ ?
161 Radioaktif160,98903 ± 0,00043Tidak tersedia640 us
α ≈100%
203 Radioaktif202,992195 ± 0,000429Tidak tersedia300 ms
β- ?β-n ?
166 Radioaktif165,972692 ± 0,00002Tidak tersedia213 ms
α =83±0.4%β+ =17±0.4%
198 Radioaktif197,97441 ± 0,00021Tidak tersedia125 detik
β- =100%
167 Radioaktif
Massa atom (u) 166,971549 ± 0,000078
Kelimpahan alami Tidak tersedia
Waktu paruh 839 ms
Mode peluruhan
α =51±0.4%β+ ?
161 Radioaktif
Massa atom (u) 160,98903 ± 0,00043
Kelimpahan alami Tidak tersedia
Waktu paruh 640 us
Mode peluruhan
α ≈100%
203 Radioaktif
Massa atom (u) 202,992195 ± 0,000429
Kelimpahan alami Tidak tersedia
Waktu paruh 300 ms
Mode peluruhan
β- ?β-n ?
166 Radioaktif
Massa atom (u) 165,972692 ± 0,00002
Kelimpahan alami Tidak tersedia
Waktu paruh 213 ms
Mode peluruhan
α =83±0.4%β+ =17±0.4%
198 Radioaktif
Massa atom (u) 197,97441 ± 0,00021
Kelimpahan alami Tidak tersedia
Waktu paruh 125 detik
Mode peluruhan
β- =100%

Sifat Lanjutan

Jari-jari Kovalen (Lanjutan)

Jari-jari kovalen (Pyykkö)
129 pm
Jari-jari kovalen (Pyykkö, ikatan rangkap dua)
116 pm
Jari-jari kovalen (Pyykkö, ikatan rangkap tiga)
109 pm

Jari-jari van der Waals

Batsanov
200 pm
Alvarez
248 pm
UFF
312 pm
MM3
235 pm

Jari-jari Atom & Logam

Jari-jari atom (Rahm)
244 pm
Jari-jari logam (C12)
135 pm

Skala Penomoran

Mendeleev
61
Pettifor
62
Glawe
60

Skala Keelektronegatifan

Ghosh
0
Miedema
5
Gunnarsson–Lundqvist
6
Robles–Bartolotti
5

Polarizabilitas & Dispersi

Polarizabilitas dipol
57 a.u.
Polarizabilitas dipol (ketidakpastian)
3 a.u.
C₆ (Gould–Bučko)
584 Ha·Bohr6

Parameter Miedema

Volume molar Miedema
8,45 cm3/mol
Kerapatan elektron Miedema
6

Risiko Pasokan & Ekonomi

Konsentrasi produksi
60
Risiko pasokan relatif
8
Distribusi cadangan
95
Stabilitas politik (produsen terbesar)
44
Stabilitas politik (pemilik cadangan terbesar)
44

Transisi Fase & Alotrop

Titik lebur3306,15 K
Titik didih5281,15 K

Kategori Bilangan Oksidasi

+5 extended
+2 extended
+6 extended
+1 extended
−1 extended
0 extended
+7 extended
−2 extended
+3 extended
+8 extended
+4 main
−4 extended

Data Referensi Lanjutan

Konstanta Pemerisaian (14)
nOrbitalσ
1s1,4701
2p4,4502
2s19,8502
3d13,5253
3p21,7483
3s22,5727
4d37,142
4f38,8472
4p34,856
4s33,9048
Detail Jari-jari Kristal (6)
MuatanCNSpinrcrystal (pm)Asal
4VI77from r^3 vs V plots, from metallic oxides,
5VI71,5estimated,
6V63
6VI68,5estimated,
7VI66,5estimated,
8IV53
Mode Peluruhan Isotop (58)
IsotopModeIntensitas
161A100%
162A100%
163A100%
163B+—
164A96%
164B+—
165A90%
165B+10%
166A83%
166B+17%
Faktor Hamburan Sinar-X (516)
Energi (eV)f₁f₂
10—1,88117
10,1617—1,93789
10,3261—1,99632
10,4931—2,05652
10,6628—2,13032
10,8353—2,20812
11,0106—2,28877
11,1886—2,37237
11,3696—2,45796
11,5535—2,53755

Data Tambahan

Sources

Sources of this element.

Osmium occurs in iridosule and in platinum-bearing river sands in the Urals, North America, and South America. It is also found in the nickel-bearing ores of Sudbury, Ontario region along with other platinum metals. While the quantity of platinum metals in these ores is very small, the large tonnages of processed nickel ores make commercial recovery possible.

Referensi (1)

Referensi

(9)
2 Atomic Mass Data Center (AMDC), International Atomic Energy Agency (IAEA)
Os

The half-life and atomic mass data was provided by the Atomic Mass Data Center at the International Atomic Energy Agency.

3 IUPAC Commission on Isotopic Abundances and Atomic Weights (CIAAW)
Osmium

Element data are cited from the Atomic weights of the elements (an IUPAC Technical Report). The IUPAC periodic table of elements can be found at https://iupac.org/what-we-do/periodic-table-of-elements/. Additional information can be found within IUPAC publication doi:10.1515/pac-2015-0703 Copyright © 2020 International Union of Pure and Applied Chemistry.

4 IUPAC Periodic Table of the Elements and Isotopes (IPTEI)

The information are cited from Pure Appl. Chem. 2018; 90(12): 1833-2092, https://doi.org/10.1515/pac-2015-0703.

Catatan lisensi: Copyright (c) 2020 International Union of Pure and Applied Chemistry. The International Union of Pure and Applied Chemistry (IUPAC) contribution within Pubchem is provided under a CC-BY-NC-ND 4.0 license, unless otherwise stated.
5 Jefferson Lab, U.S. Department of Energy
Osmium

Thomas Jefferson National Accelerator Facility (Jefferson Lab) is one of 17 national laboratories funded by the U.S. Department of Energy. The lab's primary mission is to conduct basic research of the atom's nucleus using the lab's unique particle accelerator, known as the Continuous Electron Beam Accelerator Facility (CEBAF). For more information visit https://www.jlab.org/

Catatan lisensi: Please see citation and linking information: https://education.jlab.org/faq/index.html
6 Los Alamos National Laboratory, U.S. Department of Energy
Osmium

The periodic table at the LANL (Los Alamos National Laboratory) contains basic element information together with the history, source, properties, use, handling and more. The provenance data may be found from the link under the source name.

7 NIST Physical Measurement Laboratory
Osmium

The periodic table contains NIST's critically-evaluated data on atomic properties of the elements. The provenance data that include data for atomic spectroscopy, X-ray and gamma ray, radiation dosimetry, nuclear physics, and condensed matter physics may be found from the link under the source name. Ref: https://www.nist.gov/pml/atomic-spectra-database

8 PubChem Elements
Osmium

This section provides all form of data related to element Osmium.

9 PubChem Elements
Osmium

The element property data was retrieved from publications.

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