Certifications

iso9001
iso14001
icas
Delivery
security
warranty
roiginal
RoHS
UL
수백만 개의 전자 부품 재고 있음. 24 시간 이내에 가격 및 리드 타임 견적.

Can Bread Mold Make a Better Rechargeable Battery?

8월 2 2016 2016-08 Power Memsic Inc.
Article Cover
A recent study conducted by the University of Dundee revealed that the unwanted fungi that turns our bread moldy contains ideal electromechanical properties that can be used to make efficient rechargeable batteries when subjected to biomineralization process.

     A recent study conducted by the University of Dundee revealed that the unwanted fungi that turns our bread moldy contains ideal electromechanical properties that can be used to make efficient rechargeable batteries when subjected to biomineralization process.

     A group of researchers headed by Professor Geoffrey Gadd found that the red bread mould scientifically known as Neurospora crassa has the ability to transform metals and minerals into useful components to build a supercapacitor or lithium-ion batteries. The fungus exhibits an excellent electromechanical properties after it underwent series of intense heating processes combined with urea and manganese chloride. The biomineralized product then produces a mixture of carbonised biomass and manganese oxides.

     “We have made electrochemically active materials using a fungal manganese biomineralization process. The electrochemical properties of the carbonised fungal biomass-mineral composite were tested in a supercapacitor and a lithium-ion battery, and the composite was found to have excellent electrochemical properties. This system therefore suggests a novel biotechnological method for the preparation of sustainable electrochemical materials,” explained Gadd, who leads the Geomicrobiology Group at the University of Dundee.

     Gadd further said, “we had the idea that the decomposition of such biomineralized carbonates into oxides might provide a novel source of metal oxides that have significant electrochemical properties.”

     It was not the first time that Gadd’s team performed studies regarding the ability of fungi to convert metals and minerals to useful elements. Their previous studies also showed the role of fungi in stabilizing toxic lead and uranium. Both studies proved that fungi can transform dangerous elements, such as lead and uranium, into a mineral form.

     “We were surprised that the prepared biomass-Mn oxide composite performed so well. In comparison to other reported manganese oxides in lithium-ion batteries, the carbonised fungal biomass-mineral composite showed an excellent cycling stability and more than 90% capacity was retained after 200 cycles,” Gadd added.

     Fungi play a significant role in metal and mineral biotransformation. The demonstration conducted by Gadd’s team is the first to show how a fungal biomineralization process can create active electrode materials which can be very useful in increasing the performance of supercapacitors and batteries.

     According to Professor Gadd, the team plans to continue their research to know more of the other usage of fungi in the formation of beneficial metal carbonates. The further investigation could greatly improve the process for obtaining useful biomaterials from fungi and gives a promising power solution in the near future.

관심을 가질만한 제품

2677 2677 QI WIRELESS CHARGING RECEIVER 4104

More on Order

4190 4190 WHITE LED ILLUMINATED TRIANGLE P 8064

More on Order

3490 3490 SWITCH PUSH SPST-NO BLU 10MA 5V 7470

More on Order

3930 3930 SENSOR OPT REFLECTIVE RADIAL 8766

More on Order

386 386 SENSOR HUMID/TEMP 5V DTL 5% MOD 14208

More on Order

1137 1137 MAXBOTIX WEATHER-RESISTANT ULTRA 7794

More on Order

984 984 MAXSONAR RANGEFINDER HRLV--EZ1 4608

More on Order

4059 4059 BMP280 I2C OR SPI BAROMETRIC PRE 5742

More on Order

372 372 THERMISTOR NTC 10KOHM 3950K 8724

More on Order

1948 1948 DIGITAL RGB LED WEATHERPROOF STR 7200

More on Order

2964 2964 ADDRESS LED STRIP SERIAL RGB 4M 5814

More on Order

1734 1734 ADDRESS LED NEOPIXEL DIFF 8MM TH 4914

More on Order

3826 3826 64X32 FLEXIBLE RGB LED MATRIX - 5778

More on Order

2541 2541 ADDRESS LED STRIP SERIAL RGB 1M 7560

More on Order

2875 2875 ADDRESS LED RING 1/4 SER RGBW 4446

More on Order

1507 1507 ADDRESS LED STRIP SERIAL RGB 1M 7866

More on Order

887 887 STRIP 60LED COOL WHITE WP 5M 4572

More on Order

4128 4128 ADAFRUIT 2.13"" TRI-COLOR EINK / 6714

More on Order

326 326 DISPL OLED GRAPHIC MONO 128X64 8820

More on Order

159 159 DIFFUSED RGB (TRI-COLOR) LED - C 5994

More on Order

314 314 LED RGB DIFFUSED 5MM ROUND T/H 8118

More on Order

1856 1856 SMALL 1.2 8X8 BRIGHT SQUARE PURE 5274

More on Order

1821 1821 1.2 8X8 MATRIX SQUARE PIXEL - WH 5004

More on Order

1819 1819 LED MATRIX 8X8 SQUARE YELLOW 2718

More on Order