The Japan Times - Energy storage and new materials eyed for chemistry Nobel

EUR -
AED 4.277424
AFN 76.282379
ALL 96.389901
AMD 444.278751
ANG 2.0846
AOA 1067.888653
ARS 1666.882107
AUD 1.752778
AWG 2.096182
AZN 1.984351
BAM 1.954928
BBD 2.344654
BDT 142.403852
BGN 1.956425
BHD 0.438198
BIF 3455.206503
BMD 1.164546
BND 1.508021
BOB 8.044377
BRL 6.334667
BSD 1.164081
BTN 104.66486
BWP 15.466034
BYN 3.346807
BYR 22825.091832
BZD 2.341246
CAD 1.610276
CDF 2599.265981
CHF 0.936525
CLF 0.027366
CLP 1073.571668
CNY 8.233458
CNH 8.232219
COP 4463.819362
CRC 568.64633
CUC 1.164546
CUP 30.860456
CVE 110.752812
CZK 24.203336
DJF 206.963485
DKK 7.470448
DOP 74.822506
DZD 151.068444
EGP 55.295038
ERN 17.468183
ETB 180.679691
FJD 2.632397
FKP 0.872083
GBP 0.872973
GEL 3.138497
GGP 0.872083
GHS 13.3345
GIP 0.872083
GMD 85.012236
GNF 10116.993527
GTQ 8.917022
GYD 243.550308
HKD 9.065929
HNL 30.604708
HRK 7.535429
HTG 152.392019
HUF 381.994667
IDR 19435.740377
ILS 3.768132
IMP 0.872083
INR 104.760771
IQD 1525.554607
IRR 49041.926882
ISK 149.038983
JEP 0.872083
JMD 186.32688
JOD 0.825709
JPY 180.935883
KES 150.58016
KGS 101.839952
KHR 4664.005142
KMF 491.43861
KPW 1048.083022
KRW 1716.311573
KWD 0.357481
KYD 0.970163
KZT 588.714849
LAK 25258.992337
LBP 104285.050079
LKR 359.069821
LRD 206.012492
LSL 19.73949
LTL 3.438601
LVL 0.704422
LYD 6.347216
MAD 10.756329
MDL 19.807079
MGA 5225.31607
MKD 61.612515
MMK 2445.475195
MNT 4130.063083
MOP 9.335036
MRU 46.419225
MUR 53.689904
MVR 17.938355
MWK 2022.815938
MXN 21.164687
MYR 4.787492
MZN 74.426542
NAD 19.739485
NGN 1688.68458
NIO 42.826206
NOK 11.767853
NPR 167.464295
NZD 2.015483
OMR 0.446978
PAB 1.164176
PEN 4.096293
PGK 4.876539
PHP 68.66747
PKR 326.50949
PLN 4.229804
PYG 8006.428369
QAR 4.240169
RON 5.092096
RSD 117.610988
RUB 88.93302
RWF 1689.755523
SAR 4.37074
SBD 9.584899
SCR 15.748939
SDG 700.4784
SEK 10.946786
SGD 1.508557
SHP 0.873711
SLE 27.603998
SLL 24419.93473
SOS 665.542019
SRD 44.985272
STD 24103.740676
STN 24.921274
SVC 10.184839
SYP 12877.828498
SZL 19.739476
THB 37.119932
TJS 10.680789
TMT 4.087555
TND 3.436865
TOP 2.803946
TRY 49.523506
TTD 7.89148
TWD 36.437508
TZS 2835.668687
UAH 48.86364
UGX 4118.162907
USD 1.164546
UYU 45.529689
UZS 13980.369136
VES 296.437311
VND 30697.419423
VUV 142.156196
WST 3.249257
XAF 655.661697
XAG 0.019993
XAU 0.000278
XCD 3.147243
XCG 2.098055
XDR 0.815205
XOF 655.061029
XPF 119.331742
YER 277.802752
ZAR 19.711451
ZMK 10482.311144
ZMW 26.913878
ZWL 374.983176
  • RBGPF

    0.0000

    78.35

    0%

  • NGG

    -0.5000

    75.41

    -0.66%

  • CMSC

    -0.0500

    23.43

    -0.21%

  • GSK

    -0.1600

    48.41

    -0.33%

  • RIO

    -0.6700

    73.06

    -0.92%

  • RELX

    -0.2200

    40.32

    -0.55%

  • BTI

    -1.0300

    57.01

    -1.81%

  • SCS

    -0.0900

    16.14

    -0.56%

  • BCC

    -1.2100

    73.05

    -1.66%

  • JRI

    0.0400

    13.79

    +0.29%

  • CMSD

    -0.0700

    23.25

    -0.3%

  • AZN

    0.1500

    90.18

    +0.17%

  • RYCEF

    -0.0500

    14.62

    -0.34%

  • BCE

    0.3300

    23.55

    +1.4%

  • VOD

    -0.1630

    12.47

    -1.31%

  • BP

    -1.4000

    35.83

    -3.91%

Energy storage and new materials eyed for chemistry Nobel
Energy storage and new materials eyed for chemistry Nobel / Photo: Jonathan NACKSTRAND - AFP/File

Energy storage and new materials eyed for chemistry Nobel

The development of new compounds and novel ways of storing energy are some of the research fields commentators say could be contenders for the Nobel Prize in Chemistry announced Wednesday.

Text size:

The winner or winners of the prestigious award are scheduled to be unveiled by the Royal Swedish Academy of Sciences in Stockholm at 11:45 am (0945 GMT).

The chemistry prize follows the physics prize, which on Tuesday honoured Briton John Clarke, Frenchman Michel Devoret and American John Martinis for work putting quantum mechanics into action -- enabling the development of all kinds of digital technology.

Lars Brostrom, science editor at public broadcaster Sveriges Radio, told AFP that he felt the chemistry prize "should go to something that has significance for the climate or the environment".

Commentators have for years buzzed about American-Jordanian Omar Yaghi, and Brostrom said he thinks Yaghi's work could fall under the umbrella of climate.

"Because that chemistry can be a catalyst for all kinds of things related to both climate and the environment," Brostrom said.

Yaghi developed a type of customised porous material known as MOF (metal-organic framework), now used in commercial products that can, among other things, absorb and decontaminate toxins, act as a catalyst or even absorb water from desert air.

- 'Green chemistry prize' -

Yaghi's name has previously been floated alongside Japan's Susumu Kitagawa and Makoto Fujita -- also considered pioneers of the technology.

Another standout in the field of MOFs is West Bank-born American Omar K. Farha, a professor at Northwestern University.

For David Pendlebury, who heads research analysis at the research firm Clarivate, another contender for a "green chemistry prize" is France's Jean-Marie Tarascon for contributions "in new battery technologies".

Clarivate, which bases its Nobel predictions on a researcher's number of citations, spotlighted Tarascon for "fundamental advances and novel applications in energy storage and conversion technology".

Another name often cited among commentators is Taiwanese-American biochemist Chi-Huey Wong, which science magazine Chemistry Views noted is best known for pioneering methods for the "synthesis of complex carbohydrates and glycoproteins, facilitating their application in therapeutic contexts".

Chemistry Views also mentioned US chemical engineer Robert Langer, known for work in "drug delivery systems, biomaterials, and tissue engineering", as a contender.

It also listed Karl Deisseroth, a US psychiatrist and neurologist, who has been mentioned for the past decade as a possible laureate for developing the field of optogenetics, using light to control cells.

Germany's Herbert W. Roesky, known for inorganic chemistry and "synthesis of novel compounds and materials", was also mentioned by the magazine.

- Typical Nobel material -

Brostrom also noted that a name that has started being buzzed about is American chemical engineer Harry B. Gray, whose research has examined "how electrons move in molecules in our living cells".

"That's the kind of fundamental prerequisite for things like photosynthesis and cellular energy use. Typical Nobel Prize material," Brostrom said.

Last year, the chemistry prize went to Americans David Baker and John Jumper, together with Briton Demis Hassabis, for work on cracking the code of the structure of proteins, the building blocks of life, through computing and artificial intelligence.

On Monday, the Nobel Prize in Medicine was awarded to a US-Japanese trio for research into the human immune system.

Mary Brunkow and Fred Ramsdell, of the United States, and Japan's Shimon Sakaguchi were recognised by the Nobel jury for identifying immunological "security guards".

The chemistry prize will be followed by the literature prize on Thursday, and the highly watched Nobel Peace Prize on Friday.

The economics prize wraps up the 2025 Nobel season on October 13.

The Nobel consists of a diploma, a gold medal and a $1.2-million cheque, to be shared if there is more than one winner in a discipline.

The laureates will receive their prizes from Sweden's King Carl XVI Gustaf at a formal ceremony in Stockholm on December 10.

That date is the anniversary of the death in 1896 of scientist Alfred Nobel, who created the prizes in his will.

M.Yamazaki--JT