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Ds 110

Darmstadtium (Ds)

transition-metal
Periode: 7 Golongan: 10 Blok: d

Expected to be a Solid

Bobot Atom Standar

[281]

Konfigurasi elektron

[Rn] 7s2 5f14 6d8 (Diprediksi)

Titik lebur

Tidak tersedia

Titik didih

Tidak tersedia

Massa jenis

3,48e+4 kg/m³

Bilangan oksidasi

0, +2, +4, +6, +8

Keelektronegatifan (Pauling)

Tidak tersedia

Energi ionisasi (ke-1)

Tidak tersedia

Tahun penemuan

1994

Jari-jari atom

132 pm

Detail

Asal nama Named after the city of Darmstadt, Germany where GSI Helmholtz Centre for Heavy Ion Research is located.
Negara penemuan Germany
Penemu Heavy Ion Research Laboratory (HIRL)

Darmstadtium is a synthetic transactinide element in group 10, below nickel, palladium, and platinum. It has been produced only atom by atom in heavy-ion fusion experiments and identified from its radioactive decay chains. Its chemistry is largely unmeasured; theoretical work treats it as a very heavy platinum-group metal, with strong relativistic effects expected to influence bonding and volatility.

Darmstadtium does not occur naturally in the Earth’s crust. Darmstadtium was first synthesized by an international team of scientists from the GSI in Darmstadt, Germany, the Joint Institute for Nuclear Research (JINR) in Dubna, Russia, the Comenius University in Bratislava, Slovakia and the University of Jyväskylä, Finland at the GSI Helmholtz Center for Heavy Ion Research in Darmstadt (Fig. IUPAC.110.1), Germany in 1994 using the nuclear reaction 208Pb (62Ni, n) 269Ds. The element was named darmstadtium after the place where the first synthesis was made [656], [657], [658], [659]. Darmstadtium has no known isotopic applications aside from scientific research.

Darmstadtium is named after the city Darmstadt, Germany.

Darmstadtium was first produced by Peter Armbruster, Gottfried Münzenber and their team working at the Gesellschaft für Schwerionenforschung in Darmstadt, Germany on November 9th, 1994. They bombarded atoms of lead with ions of nickel with a device known as a linear accelerator. This produced one atom of darmstadtium-269, an isotope with a half-life of about 0.17 milliseconds (0.00017 seconds), after at least a billion billion (1,000,000,000,000,000,000) nickel ions were fired at the lead target over the course of a week. Darmstadtium's most stable isotope, darmstadtium-281, has a half-life of about 20 seconds. About 15% of the time, it decays into hassium-277 through alpha decay. The remaining 85% of the time, it decays through spontaneous fission.

November 9, 1994 at 4:39 pm, the first atom with atomic number 110 was detected at the Gesellschaft fur Schwerionenforschung (GSI) in Darmstadt, in Germany.

Element 110 was produced by fusing a nickel and lead atom together. This was achieved by accelerating the nickel atoms to a high energy in the heavy ion accelerator."This rare reaction occurs only at a very specific velocity of the nickel projectile. Over a period of many days, many billion billion nickel atoms must be shot at a lead target in order to produce and identify a single atom of element 110. The atoms produced in the nickel-lead collisions are selected by a velocity filter and then captured in a detector system which measures their decay. The energy of the emitted helium nuclei serves to identify the atom" (Press Release). This element was only found to have a lifetime of less than 1/1000th of a second. It is expected that soon a heavier version of element 110 that might be more stable, and that lives slightly longer will be developed.

The name darmstatdium was confirmed by IUPAC in August 2003.

Gambar

Sifat

Fisika

Jari-jari atom (empiris)
132 pm Bandingkan Jari-jari atom (empiris) semua unsur →
Massa jenis
3,48 × 104 kg/m³ Bandingkan Massa jenis semua unsur →

Kimia

Afinitas elektron
1,6 eV
Bilangan oksidasi
0, +2, +4, +6, +8 Bandingkan Bilangan oksidasi semua unsur →
Elektron valensi
25 Bandingkan Elektron valensi semua unsur →
Konfigurasi elektron
[Rn] 7s2 5f14 6d8 (Diprediksi)

Termodinamika

Tidak tersedia

Nuklir

Proton
110 Bandingkan Proton semua unsur →
Neutron
172 Bandingkan Neutron semua unsur →
Isotop yang diketahui
18 Bandingkan Isotop yang diketahui semua unsur →
Isotop stabil
0 Bandingkan Isotop stabil semua unsur →
Nomor massa (paling stabil)
281
Isotop paling stabil
Ds-282
Tahun penemuan
1994

Kelimpahan

Tidak tersedia

Struktur Kristal

Tidak tersedia

Struktur Elektronik

Elektron per kulit
8, 25 Bandingkan Elektron per kulit semua unsur →

Pengenal

Nomor CAS
54083-77-1 Bandingkan Nomor CAS semua unsur →
InChI
InChI=1S/Ds
Kunci InChI
NCBMSFCPDGXTHD-UHFFFAOYSA-N

Konfigurasi Elektron Diprediksi

Muatan ion
Proton 110
Elektron 0
Muatan Netral
Konfigurasi —
Konfigurasi elektron
Diprediksi
—

Data konfigurasi elektron tidak tersedia untuk ion ini.

Model atom

Proton 110
Neutron 163
Elektron 110
Nomor massa 273
Kestabilan Radioaktif

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

Tidak tersedia

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
278 Radioaktif278,15704 ± 0,00067Tidak tersedia270 ms
273 Radioaktif273,14856 ± 0,00014Tidak tersedia240 us
269 Radioaktif269,144752 ± 0,000034Tidak tersedia230 us
279 Radioaktif279,1601 ± 0,00064Tidak tersedia210 ms
270 Radioaktif270,144584 ± 0,000052Tidak tersedia205 us
Diukur

Fase / Wujud

1 atm / 101.325 kPa Diprediksi
Tidak diketahui 25 °C (298,15 K)
0 K Suhu saat ini: 25 °C 6000 K

Data fase/wujud tidak tersedia

Spektrum Atom

Menampilkan 10 dari 94. Diurutkan berdasarkan muatan ion (menaik).

Data Tingkat Energi ?

IonMuatanTingkat energi
Ds VI +52
Ds VII +61
Ds VIII +71
Ds IX +82
Ds X +92
Ds XI +102
Ds XII +112
Ds XIII +122
Ds XIV +132
Ds XV +142
Data Tingkat Energi NIST →
110 Ds 281

Darmstadtium — Visualisasi Orbital Atom

[Rn]7s25f146d8 (Diprediksi)
Tingkat energi 2 8 18 32 32 17 1
Bilangan oksidasi 0, +2, +4, +6, +8
HOMO 7s n=7 · l=0 · m=0
Darmstadtium — Pratinjau Visualisasi Orbital Atom
Three.js hanya dimuat saat diminta
110 Ds 281

Darmstadtium — Visualisasi Struktur Kristal

Data fase/wujud tidak tersedia

Senyawa

Ds
282,166 u

Isotop (5)

Nomor massaMassa atom (u)Kelimpahan alamiWaktu paruhMode peluruhan
278 Radioaktif278,15704 ± 0,00067Tidak tersedia270 ms
α ?SF ?
273 Radioaktif273,14856 ± 0,00014Tidak tersedia240 us
α ≈100%
269 Radioaktif269,144752 ± 0,000034Tidak tersedia230 us
α =100%
279 Radioaktif279,1601 ± 0,00064Tidak tersedia210 ms
SF =88±0.5%α =12±0.5%
270 Radioaktif270,144584 ± 0,000052Tidak tersedia205 us
α ≈100%SF ?
278 Radioaktif
Massa atom (u) 278,15704 ± 0,00067
Kelimpahan alami Tidak tersedia
Waktu paruh 270 ms
Mode peluruhan
α ?SF ?
273 Radioaktif
Massa atom (u) 273,14856 ± 0,00014
Kelimpahan alami Tidak tersedia
Waktu paruh 240 us
Mode peluruhan
α ≈100%
269 Radioaktif
Massa atom (u) 269,144752 ± 0,000034
Kelimpahan alami Tidak tersedia
Waktu paruh 230 us
Mode peluruhan
α =100%
279 Radioaktif
Massa atom (u) 279,1601 ± 0,00064
Kelimpahan alami Tidak tersedia
Waktu paruh 210 ms
Mode peluruhan
SF =88±0.5%α =12±0.5%
270 Radioaktif
Massa atom (u) 270,144584 ± 0,000052
Kelimpahan alami Tidak tersedia
Waktu paruh 205 us
Mode peluruhan
α ≈100%SF ?

Sifat Lanjutan

Jari-jari Kovalen (Lanjutan)

Jari-jari kovalen (Pyykkö)
128 pm
Jari-jari kovalen (Pyykkö, ikatan rangkap dua)
116 pm
Jari-jari kovalen (Pyykkö, ikatan rangkap tiga)
118 pm

Skala Penomoran

Mendeleev
70

Polarizabilitas & Dispersi

Polarizabilitas dipol
32 a.u.
Polarizabilitas dipol (ketidakpastian)
3 a.u.

Kategori Bilangan Oksidasi

+2 extended
+4 extended
+6 extended

Data Referensi Lanjutan

Mode Peluruhan Isotop (30)
IsotopModeIntensitas
267A100%
268A—
269A100%
270A100%
270SF—
271SF75%
271A25%
272SF—
273A100%
274A—

Data Tambahan

Referensi

(8)
2 Atomic Mass Data Center (AMDC), International Atomic Energy Agency (IAEA)
Ds

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)
Darmstadtium

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
Darmstadtium

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
Darmstadtium

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
Darmstadtium

The periodic table contains NIST's critically-evaluated data on atomic properties of the elements.

8 PubChem Elements
Darmstadtium

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

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Data terverifikasi:

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