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E-mail
bjnbet@163.com
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Phone
13521743506
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Address
No.1 Gaolizhang Road, Haidian District, Beijing
Beijing Newbit Technology Co., Ltd
bjnbet@163.com
13521743506
No.1 Gaolizhang Road, Haidian District, Beijing
600EElectrochemical analyzer/workstation
Optional accessories
1、 Common working electrodes:
|
model |
description |
quantity |
price |
|
101 |
2mmDiameter Gold Disc Electrode |
1branch |
620yuan |
|
102 |
2mmDiameter platinum disk electrode |
1branch |
620yuan |
|
103 |
2mmDiameter silver plate electrode |
1branch |
498yuan |
|
104 |
3mmDiameter glassy carbon disk electrode |
1branch |
620yuan |
|
105 |
12.5umDiameter gold disk microelectrode |
1branch |
1030yuan |
|
106 |
25umDiameter gold disk microelectrode |
1branch |
1030yuan |
|
107 |
10umDiameter platinum disk microelectrode |
1branch |
1030yuan |
|
108 |
25umDiameter platinum disk microelectrode |
1branch |
1030yuan |
2、 Common reference electrodes:
|
model |
description |
quantity |
price |
|
111 |
Ag/AgClsilver/Silver chloride)reference electrode |
1branch |
100yuan |
|
112 |
Non waterAg/Ag+(silver/silver ion)reference electrode |
1branch |
100yuan |
|
150 |
Saturated calomel electrode |
1branch |
100yuan |
|
151 |
mercury/Mercuric sulfate reference electrode |
1branch |
100yuan |
|
152 |
mercury/Mercury oxide reference electrode |
1branch |
500yuan |
Note: Use112Non waterAg/Ag+When comparing electrodes, users need to prepare their own supporting electrolyte and silver ions (usually10mM)Inject the solution into the reference electrode chamber.
3、 For electrodes
|
model |
description |
quantity |
price |
|
115 |
Platinum wire electrode |
1branch |
375yuan |
Hardware parameter indicators
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potentiostat ·Zero resistance ammeter ·2, 3, 4 electrode structure ·Floating ground wire or on-site ·Maximum potential range: ± 10V ·Maximum current: ± 250mA continuous, ± 350mA peak ·Slot pressure: ± 13V ·Rise time of potentiostat: less than 1ms, usually 0.8ms ·Constant potential meter bandwidth (-3 decibels): 1MHz ·Range of applied potentials: ± 10mV, ± 50mV, ± 100mV, ± 650mV, ± 3.276V, ± 6.553V, ± 10V ·Potential resolution applied: 0.0015% of the potential range ·Accuracy of applied potential: ± 1mV, ± 0.01% of full scale ·Applied potential noise:<10mV mean square root ·Measurement current range: ± 10pA to ± 0.25A, 12 ranges ·Measurement current resolution: 0.0015% of current range, minimum 0.3fA ·Accuracy of current measurement: 0.2% for current sensitivity greater than or equal to 1e-6A/, 1% for other ranges ·Input bias current:<20pA Constant current meter (CHI660E) ·Constant current range: 3nA -250mA ·Accuracy of applied current: 0.2% for currents greater than 3e-7A, 1% for other ranges, ± 20pA ·Current resolution applied: 0.03% of the current range Measurement current range: ± 0.025V, ± 0.1V, ± 0.25V, ± 1V, ± 2.5V, ± 10V · Measurement potential resolution: 0.0015% potentiometer within the measurement range · Reference electrode input impedance: 1e12 ohms · Reference electrode input bandwidth: 10MHz · Reference electrode input bias current:<=10pA @ 25 ° C Waveform generation and data acquisition system ·Fast signal generation update rate: 10MHz, 16 bit resolution ·Fast data acquisition system: 16 bit resolution, dual channel synchronous sampling, sampling rate of 1000000 points per second ·Maximum sampling rate of external signal recording channel: 1MHz ·Expandable scanning electrochemical microscope function |
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experimental parameters ·CV and LSV scanning speed: 0.000001V/s to 10000V/s · Potential increment during scanning: 0.1mV (at a scanning speed of 1000V/s) ·Pulse width of CA and CC: 0.0001 to 1000sec ·Minimum sampling interval for CA and CC: 1ms ·CC analog integrator ·Pulse width of DPV and NPV: 0.001 to 10 seconds ·SWV frequency: 1 to 100kHz ·Minimum sampling interval for i-t: 1ms ·ACV frequency range: 0.1 to 10kHz ·SHACV frequency range: 0.1 to 5kHz ·FTACV frequency range: 0.1 to 50Hz, can simultaneously obtain ACV data for fundamental, second harmonic, third harmonic, fourth harmonic, fifth harmonic, and sixth harmonic ·AC impedance: 0.00001 to 1MHz ·AC impedance waveform amplitude: 0.00001V to 0.7V root mean square value Other characteristics ·Automatic or manual iR reduction compensation ·Current measurement bias: Full scale, 16 bit resolution, 0.003% accuracy ·Potential measurement bias: ± 10V, 16 bit resolution, 0.003% accuracy ·External potential input ·Analog output of potential and current ·Cut off frequency of controllable potential filter: 1.5MHz, 150KHz, 15KHz, 1.5KHz, 150Hz, 15Hz, 1.5Hz, 0.15Hz ·Cut off frequencies of controllable signal filters: 1.5MHz, 150KHz, 15KHz, 1.5KHz, 150Hz, 15Hz, 1.5Hz, 0.15Hz · Rotating electrode control voltage output (CHI630E and above models): 0-10V for speeds ranging from 0-10000rpm, 16 bit resolution, 0.003% accuracy, requiring certain rotating electrode devices to function ·Macro commands can be used to control digital input and output lines ·Internal flash memory can quickly update programs ·Serial or USB port data communication ·Electrolytic cell control: nitrogen supply, stirring, tapping (requires special electrolytic cell system) ·CV digital simulator and fitter. User defined reaction mechanism (CHI630E or above) or predefined reaction mechanism (other models) ·AC impedance simulator and fitting device (models with AC impedance measurement function) ·Maximum data length: 256K-16384K optional ·Instrument size: 37 cm (width), 23 cm (depth), and 12 cm (height) |
The CHI600E series is divided into multiple models. Different models have different electrochemical measurement techniques and functions, but the basic hardware parameter indicators and software performance are the same.
CHI600E and CHI610E are basic types used for mechanism research and analytical applications, respectively. They are also excellent teaching instruments. CHI602E and CHI604E can be used for corrosion research. CHI620E and CHI630E are comprehensive electrochemical analyzers, while CHI650E and CHI660E are more advanced electrochemical workstations.
|
function |
600E |
602E |
604E |
610E |
620E |
630E |
650E |
660E |
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Cyclic voltammetry(CV) |
l |
l |
l |
l |
l |
l |
l |
l |
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Linear sweep voltammetry(LSV)# |
l |
l |
l |
l |
l |
l |
l |
l |
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Step wave voltammetry(SCV)# |
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l |
l |
l |
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TableFigure(TAFEL) |
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l |
l |
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l |
l |
l |
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Chronoamperometry method(CA) |
l |
l |
l |
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l |
l |
l |
l |
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Timed electricity method(CC) |
l |
l |
l |
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l |
l |
l |
l |
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Differential pulse voltammetry(DPV)# |
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l |
l |
l |
l |
l |
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Conventional pulse voltammetry(NPV)# |
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l |
l |
l |
l |
l |
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Differential conventional pulse voltammetry(DNPV)# |
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l |
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Square wave voltammetry(SWV)# |
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l |
l |
l |
l |
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Communication (including phase sensitivity) Fu An Fa(ACV)# |
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l |
l |
l |
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Second harmonic alternating current (phase sensitive) voltage method(SHACV)# |
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l |
l |
l |
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Fourier transform alternating current voltammetry(FTACV) |
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l |
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current-Time curve(i-t) |
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l |
l |
l |
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Differential pulse current detection(DPA) |
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l |
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Double differential pulse current detection(DDPA) |
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l |
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Three pulse current detection(TPA) |
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l |
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Integral pulse current detection(IPAD) |
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l |
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Control potential electrolytic Coulomb method(BE) |
l |
l |
l |
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l |
l |
l |
l |
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Fluid dynamics modulation voltammetry(HMV) |
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l |
l |
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scan-Step mixing method(SSF) |
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l |
l |
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Multi potential step method(STEP) |
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l |
l |
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AC impedance measurement(IMP) |
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l |
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l |
l |
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AC impedance-Time measurement(IMPT) |
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l |
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l |
l |
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AC impedance-Potential measurement(IMPE) |
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l |
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l |
l |
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Chronopotentiometric method(CP) |
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l |
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Current scanning chronopotentiometry method(CPCR) |
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l |
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Multi current step method(ISTEP) |
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l |
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Potentiometric dissolution analysis(PSA) |
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l |
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Electrochemical noise measurement(ECN) |
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l |
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open-circuit voltage-Time curve(OCPT) |
l |
l |
l |
l |
l |
l |
l |
l |
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Constant current meter |
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l |
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RDEControl(0-10VOutput) |
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l |
l |
l |
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Arbitrary reaction mechanismCVsimulator |
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l |
l |
l |
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Pre-set reaction mechanismCVsimulator |
l |
l |
l |
l |
l |
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Communication impedance digital simulator and fitting program |
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l |
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l |
l |
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Price (CNY)* |
25,400 |
30,000 |
36,900 |
25,400 |
34,600 |
43,800 |
50,700 |
57,600 |
Note:#Including corresponding polarography and stripping voltammetry. Special static mercury electrodes or hammers are required for use in polarography.