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发表于 2007-8-18 22:39
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《分析化学》下册4 a p8 b+ y) R( Y. R& s" I
仪器分析 概述* v( B% m4 y' G: \4 ~+ u
物理分析:physical analysis! h; h" c& E! Q3 O
物理化学分析:physicochemical analysis
& |8 A" Y$ b2 t/ I仪器分析:instrumental analysis
+ N% C: D, _4 w9 X) e% U: e; G, U' W1 `* f: v
第十章 电位法及永停滴定法
- K8 }: r- W* R8 _电化学分析:electrochemical analysis0 F* R) N- F6 f: m( M( G2 J
电解法:electrolytic analysis method
3 [' c7 A# ?7 [% A( P电重量法:electtogravimetry }1 m, ~1 \9 V8 S
库仑法:coulometry) `+ U. E! K0 W2 s1 Z/ @! J
库仑滴定法:coulometric titration
# r1 Q; c5 G! _5 J( r& s. c8 t电导法:conductometry
/ J4 |& A2 m* F c- S/ E( p' p电导分析法:conductometric analysis
1 x6 t K) N y& U电导滴定法:conductometric titration
; G3 n5 K6 e' u电位法:potentiometry5 c. h, c+ T! ?, q
直接电位法:dirext potentiometry$ ~8 A v/ X* A v, o0 q- K0 H
电位滴定法:potentiometric titration
7 c F+ B2 o9 H, [3 m伏安法:voltammetry/ C0 H7 [% }/ I1 X
极谱法:polarography- j+ z: Q7 w, i* ]+ S; \. a5 q2 w
溶出法:stripping method
/ K9 j' Q/ a- e( v$ ]1 j3 V _电流滴定法:amperometric titration
7 c. [$ G5 p8 u2 w9 [4 u化学双电层:chemical double layer
& l& s9 X5 t! r: N& U( k4 E相界电位:phase boundary potential
" @0 B; ?; i2 @. h: `金属电极电位:electrode potential
% x0 _; h8 }0 [7 P v化学电池:chemical cell
: W+ y* T2 g: K( \0 N3 d/ X液接界面:liquid junction boundary
) `) L4 V& n0 v& A _5 N原电池:galvanic cell5 y7 a: K7 y) b- V4 ~
电解池:electrolytic cell
# U6 k( \. y% K/ f负极:cathrode: B4 ], i/ E0 D( e* j% v% Y. Z
正极:anode
& v$ L: n( G/ R' q& Z电池电动势:eletromotive force
! c) s8 J. d! [4 P/ H: B指示电极:indicator electrode8 @* b8 ~7 f% c" ^
参比电极:reference electroade. h) x' ^1 Q4 D, R0 A& L
标准氢电极:standard hydrogen electrode4 h. m: W ]/ R* f+ U8 o2 |
一级参比电极:primary reference electrode3 S: [* C1 I% n5 Z& M; ^
饱和甘汞电极:standard calomel electrode
7 A" w# ?+ ~1 L# G# f. J4 ]" {银-氯化银电极:silver silver-chloride electrode
5 n& h; O7 P+ _3 { N液接界面:liquid junction boundary
8 |/ U q8 f: J8 {, ?0 A不对称电位:asymmetry potential
f3 k9 G: k/ ?" L2 Q# P表观PH值:apparent PH, t6 N) ~3 r9 R7 B9 l
复合PH电极:combination PH electrode
* M7 g; O% l( Z: q7 q离子选择电极:ion selective electrode
- K& T- a" d6 I6 K- l, S$ s. N敏感器:sensor
6 ]2 ]7 G3 P( F1 h. B: u( d2 X* @2 e晶体电极:crystalline electrodes
* R1 Z. P+ e, W- I: W9 V$ P, x均相膜电极:homogeneous membrance electrodes: t% v8 c9 n3 t' m' K
非均相膜电极:heterog eneous membrance electrodes
+ u* `; u2 F3 Q/ ~' J5 l非晶体电极:non- crystalline electrodes
3 c9 j' L; i3 D, [. s! e刚性基质电极:rigid matrix electrode
# ~" m0 ~, `4 K& v( t流流体载动电极:electrode with a mobile carrier
% r, c7 y. P) u& S% q% V气敏电极:gas sensing electrodes
( U* j2 O8 W$ h酶电极:enzyme electrodes* Q& I9 @% \: \8 S: a- p, ^" a
金属氧化物半导体场效应晶体管:MOSFET
: N) _6 ^& n& n$ o1 j4 M# T离子选择场效应管:ISFET! ]! p. j8 O/ j$ ^' ]7 s! X# Q
总离子强度调节缓冲剂:total ion strength adjustment buffer,TISAB
5 e6 y. @: ]3 y永停滴定法:dead-stop titration- `0 A% L# B! ^" i. e& U
双电流滴定法(双安培滴定法):double amperometric titration, c+ P0 `, b6 ~) E3 d3 N+ d' v- U
) |2 p0 I3 T6 v# O第十一章 光谱分析法概论3 q' N" T4 K4 H0 B1 S3 s( U
普朗克常数:Plank constant P/ ^7 U0 `1 @
电磁波谱:electromagnetic spectrum
$ B! f2 i* \3 g0 N: b; q1 M% I0 p$ z光谱:spectrum( \8 i7 h+ o- U3 g
光谱分析法:spectroscopic analysis
- G4 Y4 e- }& H( q7 @8 P原子发射光谱法:atomic emission spectroscopy
. ?# g/ z( s' P e: d% t质量谱:mass spectrum; q4 g9 u- E* v& I! e' i
质谱法:mass spectroscopy,MS
) B+ t6 [& ^- w1 E' p) M) y1 O, P2 B8 d5 f1 y7 Z8 b3 m
第十二章 紫外-可见分光光度法$ K1 [- l7 [8 Y
紫外-可见分光光度法:ultraviolet and visible spectrophotometry;UV-vis z' n+ P, [2 ~- i v/ g2 @& }
肩峰:shoulder peak
) `) W- R/ L% F末端吸收:end absorbtion
- S; @3 R: i* Z1 f生色团:chromophore
: D4 c. |: X% ^) h+ k助色团:auxochrome
$ R- j1 b7 B' v8 y6 X1 ?/ F4 K红移:red shift5 h7 k; J! k8 H
长移:bathochromic shift
# n' }* {2 I! s' @, @# ~& F# f' y0 g$ a6 w短移:hypsochromic shift
3 u( k- o7 e& {4 }/ l; [% Q9 p8 Q) Q蓝(紫)移:blue shift
D4 R1 ?& v+ u$ J' U增色效应(浓色效应):hyperchromic effect: \+ K [- m& x3 U
减色效应(淡色效应):hypochromic effect4 a2 d' o; a' k. G! I6 l
强带:strong band$ J) p+ U/ |- N# X4 J( \
弱带:weak band. b5 p' t, ~" e, ~1 d% L
吸收带:absorption band! d$ [7 @) ]2 T# s
透光率:transmitance,T% K% r7 S. ?* ?9 K! ]2 |
吸光度:absorbance. o* @# u) I ^. S5 X: o
谱带宽度:band width/ o$ @2 R' m+ w/ L
杂散光:stray light
9 R3 z' r4 @) G8 s+ u3 t: ]噪声:noise
; i$ c: ~3 R2 V, o% q暗噪声:dark noise0 v" E& P4 }6 Q3 f: c' @
散粒噪声:signal shot noise
: ~% l' i+ A! h; Q. ^; V闪耀光栅:blazed grating
: ^5 r9 x, b' O" k全息光栅:holographic graaing
# ?8 S. |/ i& _3 I& [! Q. Y光二极管阵列检测器:photodiode array detector7 ~' i' L+ T) q: Q+ ?
偏最小二乘法:partial least squares method ,PLS Z8 t! B8 {2 o$ [$ y% E$ \
褶合光谱法:convolution spectrometry9 @* U+ d% D Z
褶合变换:convolution transform,CT
# ?$ f; Y& |* X7 N5 J. H2 A$ ^离散小波变换:wavelet transform,WT
$ r4 x2 n Z3 G5 V* X2 I2 @9 \多尺度细化分析:multiscale analysis8 _. Q" \2 x" z: l0 V
供电子取代基:electron donating group
; I4 {' l U0 z9 x: w! F吸电子取代基:electron with-drawing group+ f/ h- ~: v% n
+ T {6 v" n0 `第十三章 荧光分析法
1 o* H1 K- o7 b3 X: T荧光:fluorescence3 ~" i% s5 p ]* g3 H$ {& l
荧光分析法:fluorometry$ `3 a' O4 R( g( X* X/ \
X-射线荧光分析法:X-ray fulorometry s- F: s. U6 v( w
原子荧光分析法:atomic fluorometry
1 v3 A0 l: K. r分子荧光分析法:molecular fluorometry; i$ v$ Q4 [6 F$ ]9 z3 u
振动弛豫:vibrational relexation
: H6 S7 o6 C+ [, {& S内转换:internal conversion1 X8 G+ s- ~( E3 L2 I" i
外转换:external conversion
! w/ w5 W h' ?9 x: B( ~体系间跨越:intersystem crossing5 x0 d2 ~4 ]' a' [
激发光谱:excitation spectrum
) _9 U& C% v- f" I9 O( f+ L' \; f6 B荧光光谱:fluorescence spectrum9 ]- Y$ `1 o- u+ e0 \
斯托克斯位移:Stokes shift8 M5 e/ q, H/ r# C
荧光寿命:fluorescence life time
7 T" O/ W7 ?, X4 ?荧光效率:fluorescence efficiency
6 ^, P, {0 c0 v7 \荧光量子产率:fluorescence quantum yield
, V' ?% n1 Z W( r$ R$ U, z荧光熄灭法:fluorescence quemching method; s/ `$ |$ c: b8 k+ }) ^
散射光:scattering light' Z. U" t( X x u! Q1 m, g
瑞利光:Reyleith scanttering light
# R" p0 H; N, p拉曼光:Raman scattering light
- D& h& _( ]- c! t# W( K# b$ e4 w第十四章 红外分光光度法
$ n2 A, M! a6 v7 z) ], _$ i6 ~6 f. D# U红外线:infrared ray,IR0 V7 _; h1 e9 W* o" {: t% O2 z
中红外吸收光谱:mid-infrared absorption spectrum,Mid-IR, R) P- a: w: `0 B
远红外光谱:Far-IR
5 G# k k5 E* z9 I3 \微波谱:microwave spectrum,MV, H1 s0 f& B o( Y; G9 c
红外吸收光谱法:infrared spectroscopy
1 Q5 ]0 _- n7 s/ z; _. `红外分光光度法:infrared spectrophotometry( }. t' j! m# G3 O
振动形式:mode of vibration2 U* {* J3 ^- O4 m# |9 p9 d) J
伸缩振动:stretching vibration
: ~; `" r! z3 E q对称伸缩振动:symmetrical stretching vibration/ c5 y; R( b6 B" |& E: P5 z
不对称伸缩振动:asymmetrical stretching vibration
8 }3 ?/ Y) q4 P# D弯曲振动:bending vibration- `* B7 s/ X2 X# w' D
变形振动:formation vibration
; j2 x& w/ g# B8 w9 ^, A0 E面内弯曲振动:in-plane bending vibration,β( x& ?4 I# v1 [' V# K3 D. }
剪式振动:scissoring vibration,δ6 O4 z) u) ^( n! y$ t. g* Z; C
面内摇摆振动:rocking vibration,ρ
( u9 e1 O0 e2 {$ @0 m面外弯曲振动:out-of-plane bending vibration,γ. A' m, U. @* g: [) e
面外摇摆振动:wagging vibration,ω; I/ G: J5 P8 c
蜷曲振动:twisting vibration ,τ
: {9 P% j( Y& Q7 \7 g5 O对称变形振动:symmetrical deformation vibration ,δs
) b, k7 a& s8 R: g1 x* c不对称变形振动:asymmetrical deformation vibration, δas0 a2 ~6 R8 c! M1 y$ G" n5 i# h
特征吸收峰:charateristic avsorption band
/ L$ l# E0 @- n7 C! c特征频率:characteristic frequency
# M7 R3 ]$ Q3 n5 ]7 o相关吸收峰:correlation absorption band
8 R8 P3 ]8 V( M7 |杂化影响:hybridization affect
4 M$ q$ `* v+ M5 r; e环大小效应:ring size effect
4 l' J3 i7 U0 V吸收峰的强度:intensity of absorption band Z$ C+ j, R) l% V% M A
环折叠振动:ring prckering vibration
1 Z! n# t5 X/ j3 U- q. z& [' {; Y O
第十五章 原子吸收分光光度法
- u; j$ ?! C4 G原子光谱法:atomic spectroscopy$ Y* M2 J( s2 q
原子吸收分光光度法:atomic absorption spectrophotometry,AAS) C4 S* C: F5 S P% Z% K9 I4 @
原子发射分光光度法:atomic emmsion spectrophotometry,AES1 k2 f9 g* ~( }. t2 I5 |
原子荧光分光光度法:atomic fluorescence spectrophotometry,AFS" P) M8 J; j- j
% T% R+ {. ? e* T第十六章 核磁共振波谱法
" _$ Z8 M. }2 q8 M7 p! [核磁共振:nuclear magnetic resonance,NMR
/ l, [( j3 B& y) r( |核磁共振波谱:NMR spectrum c* k7 H% N( e* M( K. n9 q
核磁共振波谱法:NMR spectroscopy
( Y" x. v% Y# m u: `, L扫场:swept field1 l1 }2 U: H) C$ v( \
扫频:seept frequency
* ^3 \! R, F4 {9 z" t& o' [连续波核磁共振:continuous wave NMR,CW NMR" m5 S2 F2 M6 n2 m$ E% }7 |' j' j. |& g
Fourier变换NMR:PFT-NMR,FT-NMR
" U/ t- B( @0 p/ P4 Z8 {二维核磁共振谱:2D-NMR/ e" ~9 j1 K4 w
质子核磁共振谱:proton magnetic resonance spectrum,PMR
* [* {# r& J( P! c* J, d' J+ B, i/ S氢谱:1H-NMR$ ~! u% t6 p( P. y6 A0 P1 K
碳-13核磁共振谱:13C-NMR spectrum,13CNMR5 X1 C* Q) j& G( H6 e- a0 o
自旋角动量:spin angular momentum( `3 B1 _" W+ c& l
磁旋比:magnetogyric ratio
* P- s$ l, K7 D$ e8 S磁量子数:magnetic quantum number,m. O. V) p- }: U4 X
进动:precession
7 ^( E6 i, ^* {2 S弛豫历程:relaxation mechanism* W( I5 m8 ^* f- b
局部抗磁屏蔽:local diamagnetic shielding: S* E# X* R2 F r9 d- i/ x, G# M
屏蔽常数:shielding constant# u7 e/ L, \$ r$ i% j8 q, J$ F/ P. z- B
化学位移:chemical shift5 Q9 ], m8 r" K: G
国际纯粹与应用化学协会:IUPAC
8 C$ j" n% J+ j Y! ~2 O$ m; T磁各向异性:magnetic anisotropy m0 }1 d- _' v' r* a
远程屏蔽效应:long range shielding effect+ X0 ?2 n0 L* A8 t+ |
结面:nodal plane
( C' M0 h. B( i& t+ T3 m% h/ ]自旋-自旋偶合:spin-spin coupling. I @% B1 A+ Z/ i+ b! c- f, V
自旋-自旋分裂:spin=spin splitting
1 s( e" @3 r& K; T- ^; V$ j单峰:singlet,s3 q! v* K4 H. W1 V
双峰:doublet,d! ~, A! a3 ^3 D+ V. _/ `8 M9 T
三重峰:triplet,t6 n0 C, y8 C% ?2 N! X5 @$ [
四重峰:quartet
1 M, |0 x' m" |! F# ~! p9 \ s五重峰:quintet
- ]8 h: a. T) j: s( a六重峰:sextet
+ u# a6 X2 [% n偕偶:geminal coupling! |4 x) J$ F; A$ ?
邻偶:vicinal coupling
: Y0 Z A2 `8 d远程偶合:long range coupling& t! p$ l' {6 `: y& S; W. L/ F$ [1 i
磁等价:magnetic eqivalence
+ I: x4 a* R8 z! V+ X: R自旋系统:spin system
* Z: {+ i) N( R1 Y/ z! v Z: i一级光谱:first order spectrum
1 O/ N" u! T; T5 g二级光谱(二级图谱):second order spectrum2 V& @5 X a6 E8 W: C" {
C-H光谱:C-H correlated spectroscopy,C-H COSY
; |) c% T; w" R: ?* P7 a% H$ Q* T7 O/ l
第十七章 质谱法6 n9 L$ |& ?& N
质谱分析法:mass spectrometry5 H0 f, f! W8 S; e
质谱:mass spectrum,MS) B- X! Z% T1 D' w9 D! k( j o9 U
棒图:bar graph
1 O4 u7 \5 x3 C" [3 N, J选择离子检测:selected ion monitoring ,SIM) U0 u0 `- ~; p! p( G& j, @! Z
直接进样:direct probe inlet ,DPI
9 U" x& g! F& p% N' \接口:interface& t: f1 t8 X8 e% p
气相色谱-质谱联用:gas chromatography-mass spectrometry,GC-MS# Z* o+ X; u$ t: v
高效液相色谱-质谱联用:high performance liquid chromatography-mass spectrometry,HPLC-MS+ e' m# ]8 \7 [1 o, Z3 Z) l
电子轰击离子源:electron impact source,EI
" v( F! k: {$ T" a6 V离子峰:quasi-molecular ions [/ F5 l( b. ?- Z% O: N
化学离子源:chemical ionization source,CI
4 ^% f8 C7 W( f( R6 P场电离:field ionization,FI
; x( i% g7 O" s* F9 V场解析:field desorptiion,FD9 {" X8 t5 E' k* y
快速原子轰击离子源:fast stom bombardment ,FAB
% Y. m: y. z: l质量分析器:mass analyzer
" ^ [. z8 f) H9 N磁质谱仪:magnetic-sector mass spectrometer! y2 f w( f8 |/ ~2 x
四极杆质谱仪(四极质谱仪):quadrupole mass spectrometer% O3 t8 a+ J) j$ j) n" [
原子质量单位:amu2 _$ d& l$ _ } W
离子丰度:ion abundance7 e" U; l4 O! I: {6 e2 S
相对丰度(相对强度):relative avundance
2 Y1 z0 H; o7 l. \( S! o8 U- a- n基峰:base peak+ I6 x" |8 P* C0 w4 p$ [; l& z
质量范围:mass range
) u: M: y, _; i5 R! v; u0 A分辨率:resolution
5 B! ^) f$ y/ u! d8 l( c8 \5 o灵敏度:sensitivity6 a! ]/ s+ I& L4 i8 U+ [* G( w
信噪比:S/N# Y( u, `+ d2 q! `" e/ `
分子离子:molecular ion2 d* C4 E8 R% k& J) @1 d( ]
碎片离子:fragment ion
6 I* r3 v, Y R3 [$ X同位素离子:isotopic ion
- D# {) c( b! i ]5 b亚稳离子:metastable ion; w; ^; i) n+ h" F/ c
亚稳峰:metastable peak
3 V" E; m, B2 P o母离子:paren ion
% t0 y+ x* u! c8 R7 I0 t子离子:daughter+ s2 I f$ A8 i
含奇数个电子的离子:odd electron e x" h4 ~0 v5 Q# y* m; Z
含偶数个电子的离子:even eletron,EE
D$ ]* |; o; I7 Z均裂:homolytic cleavage7 v1 ]# K% R" e& i& e
异裂(非均裂):heterolytic cleavage+ `6 }4 X: |" s
半均裂:hemi-homolysis cleavage& Z) k4 }$ _1 \9 `3 w
重排:rearragement
8 H, i9 L- ] S- H* d分子量:MW5 D b6 H+ ?; c u+ n# ]% }& T
α-裂解:α-cleavage
9 V$ @) ^- o m6 X' n8 k: P! c; @( `) ? X2 ?" V, a3 O4 B+ T
第十八章 色谱分析法概论# y4 t; I0 _: n3 |* O
色谱法(层析法):chromatography
1 S4 P; a( M, F, D8 q固定相:stationary phase
7 K! I& C8 l7 \5 A7 @7 f! X流动相:mobile phase7 M2 i: P8 r- k1 E; Q
超临界流体色谱法:SFC5 S9 s. X2 g& j5 ]; K3 ]! z' S
高效毛细管电泳法:high performance capillary electroporesis,HPEC
6 e# C/ Q9 s% Q3 z! H气相色谱法:gas chromatography,GC b. F; q) |- Q; L- }& q1 W
液相色谱法:liquid cromatography,LC3 G3 N/ O$ V) [) r' M* t4 {: h
超临界流体色谱法:supercritical fluid chromatography,SFC$ k$ q, S9 u8 D) M# z; \
气-固色谱法:GSC
. N6 z$ O9 B) `) S: E气-液色谱法:GLC3 P$ G& O+ b: `3 G" u0 o# Q& c
液-固色谱法:LSC
' y5 R+ D0 y+ v& j5 t, D* J* u液-液色谱法:LLC9 z% o2 d! F: h8 f1 t6 X
柱色谱法:column chromatography9 K1 U% J, D3 E- f8 B, G
填充柱:packed column
" }7 T# B( b" C) I毛细管柱:capillary column( F7 x$ Q$ [# {4 J& d# e
微填充柱:icrobore packed column! n7 p+ D' D$ R
高效液相色谱法:high performance liquid chromatography,HPLC- Y- b: O+ S% L8 r8 B9 A
平板色谱法:planar* H x& Z' {7 [9 u; h# @
平板色谱法:plane chromatography
) Z* F1 X2 X% i3 J纸色谱法:paper chromatography
% w; T7 _5 e1 D薄层色谱法:thin layer chromatography,TLC
% @- o, P& }$ L薄膜色谱法;thiin film chomatography* u& ?0 [: b$ a/ O+ z2 g
毛细管电泳法:capillary electrophoresis,CE
0 L2 y* f6 E* | m' m分配色谱法:partition chromatography
3 Z# O, p# ]5 N0 D5 [: t8 W" Q吸附色谱法:adsorpion chromaography- L; l2 F5 M+ m& X# h
离子交换色谱法:ion exchange chromatography,IEC$ `0 _1 Y4 J5 A$ X3 c2 T( m" S1 E
空间排阻色谱法:steric exclusion chromatography,SEC
6 a% o, C1 _. h6 W! }* E* h亲和色谱法:affinity chromatography% g1 O, w( M/ P
分配系数:distribution cofficient
2 K; e7 j p/ D狭义分配系数:partition coefficient0 I" s% t" o$ i) }
凝胶色谱法:gel chromatography
" V: e9 {6 d; m/ y- N. t/ t凝胶渗透色谱法:gel permeation chromatography,GPC
+ v# H9 X5 A6 b- y$ E凝胶过滤色谱法:gel filtration chromatography,GFC* W6 u( L8 a4 d' t1 D" [( `+ m
渗透系数:permeation coefficien;Kp
2 ^' p' s) e6 x7 q& G$ ~; p化学键合相色谱法:chemically bonded-phase chromatography" `) t" P' ?' y# G0 I/ {: @& X
分配系数:distribution coefficient
0 Q5 v5 V0 s) y; A靛菁绿:indocyanine) y/ A1 c2 }0 V& P, O5 q9 d' o
气相色谱-傅立叶变换红外光谱:GC-FTIR4 O" @# n& c2 l: w/ h
- U) i# w5 W% E! g* ^$ a/ a第十九章 经典液相色谱法: h, N1 s/ _$ }1 R
薄层色谱法:TLC
8 D7 [; g% d, c; ~7 L& S吸附:adsorption% i1 _6 x! \* f1 G5 L" L
活化:activation; f. o) a9 h4 j3 i
脱活性:deactivation9 e; m7 F. P. l+ _
交联度:degree of cross linking
. T5 O6 N0 U4 D X& \. X交换容量:exchange capacity
+ R2 }9 d$ G% a1 ~$ @: G薄层板:thin layer plate5 o7 J- A4 O7 v4 l( T
展开剂:developing solvent ,developer
" e: y/ a% F: A0 p# V' N临界胶束浓度:criticak micolle concentration ,CMC0 X/ S3 K0 O! m$ b0 Q
相对比移值:relative Rf, Rr
) U |$ C' j( ]% j分离度:resolution ,R
9 x0 r& d9 m l3 V2 I" T. \8 v$ s分离数:separation number,SN+ B m2 S3 F7 @2 N: \4 J9 H+ p. o2 X
煅石膏:Gypsum$ }/ `2 A' s3 n3 ]7 n; E
羧甲基纤维素钠:CMC-Na0 x6 ^- F p# k- _% _- I
吸收光谱联用:TLC-UV
) G6 Z. {) E& ]$ c; p0 }' l薄层色谱-荧光联用:TLC-F, [) Q1 _8 F. e0 t" P- F" k
薄层色谱-红外吸收光谱联用:TLC-IR
" F" u( M: i* ~: Z7 P/ ?, P薄层色谱法:TLC-MS
* ?4 H3 @+ T: C* j- b) ]纸色谱法:paper chromatography. F0 U; m' ]9 M9 h* i
上行展开:ascending development # l% X. o; G* T0 Y& ^5 [/ ^
下行法展开:descending development( i1 W( y* }: M2 \; I. N6 l9 k8 ^
双向展开:two dimensional develoooment _+ W! K. d! W: o0 W9 y' G. [6 y
/ @( ^) E* i: o第二十章 气相色谱法
0 H( Q) @0 o {+ c3 H气相色谱法:gas chromatography
+ q+ f9 J g' ^1 W7 B前延峰:leading peak
$ Y0 }8 a3 N- \0 r& H# ]拖尾峰:tailing peak
+ E/ `$ {! T% c L$ ^对称因子:symmetry factor,fs5 Z j) y. U# w- u8 ^
保留时间:retention time: B8 J, {( h8 [( P
保留体积:retention volume9 y( }+ K: Y! w
死时间:dead time8 e5 r! F' {9 r3 b: ~* _; r5 |
调整保留时间:asjusted retention time
! }$ [0 L4 g% d6 }* T4 O半峰宽:peak width at half height,W1/2 or Y1/2
( D8 g Q5 R5 m$ T峰宽:peak width,W% r/ X, C8 H6 A1 n
等温线:isotherm6 o; d9 z+ {% j* j' i: R* J
理论塔板高度:height equivalent to atheoretical plate! w* N$ q: h! R$ I
化学键合相:chemically bonded phase/ Y+ }: z. s! Z7 r5 v; f6 q
丁二酸二乙二醇聚酯:polydiethylene glycol succinate,PDEGS,DEGS
' z" y9 W% }+ \9 f; E: z; c' i高分子多孔微球:GDX5 Z+ I- L0 B/ t* Z* g3 O1 \# K
苯乙烯:STY7 |% F0 x+ l/ A
乙基乙烯苯:EST# c0 G5 \9 o8 A
二乙烯苯:DVB0 b! p9 T% c% J
涂壁毛细管柱:wall coated open tubular column,WCOT3 h+ Z* ?8 L( D! y3 |
载体涂层毛细管柱:supprot coated open tubular column,SCOT
8 B, f' i* \/ E: \; @$ ^( u `热导检测器:thermal conductivity detector,TCD" p8 C7 u+ r- u P$ n
氢焰离子化检测器:hydrogen flame ionization detector,FID
3 K" {, A" c4 H# M# f4 u k电子捕获检测器:electron capture detector ,ECD3 r) ~, V7 U, a- a7 y u
噪声:noise,N
; n5 U' @% J* }5 m7 Q) N" m( c1 |漂移:drift,d
. S0 o7 }0 |. g8 c0 U3 T" ^- s灵敏度:sensitivity
) H% S$ j8 z% I6 U, A检测限(敏感度):detectability,D,M0 s# g, q; B) b0 J6 |* }. N
分离度:resolution+ t6 s9 @7 E- P7 }
归一化法:normalization method. S4 m! Y7 p1 \: M) g
外标法:external standardization
( N' I) p+ ~5 l# z+ ~3 o5 Y( f m5 K4 d: B
第二十一章 高效液相色谱法
. Q) W; n5 D! m" c高效液相色谱法:high performance liquid chromatography,HPLC! J3 u9 t. ^5 W: H
高速液相色谱法:high speed LC,HSLC$ a' X+ r/ M5 \4 G# l, y$ K
高压液相色谱法:high pressure LC,HPLC
$ ?- Q6 Q; F$ q$ f! w% e* h6 [2 n高分辨液相色谱法:high resolution LC,HRLC
( T( R5 F& k! P) H1 t液固吸附色谱法(液固色谱法):liquid-solid adsorption chromatography,LSC' z& ~/ N, \( u+ [( r, B! A
液液色谱法:liquid-liquid chromatography,LLC
7 y( \7 v/ ^% k: s4 K0 [正相:normal phase,NP
4 b- Q* q) w8 I& q7 x; c" C, B q反相:reversed phase,RP
: ?6 f: O( a% u7 ^化学键合相色谱法:bonded phase chromatography,BPC
. R7 Z4 I: Z5 e) W1 v' F十八烷基:octadecylselyl,ODS( E$ i' q( G7 ?, ~4 _
离子对色谱法:paired ion chromatography,PIC
% Z/ L0 b& C+ ?反相离子对色谱法:RPIC' i& N* t9 b" c2 Q2 t$ q
离子抑制色谱法:ion suppression chromatography,ISC# ]2 y! u2 K9 C- z1 ~' c
离子色谱法:ion chromatography,IC
: S) H9 H1 ~) z8 d" P* x/ C3 [手性色谱法:chiral chromatography,CC
( @* j4 [; Q' @: a9 q H1 \) |, ]环糊精色谱法:cyclodextrin chromatography,CDC- K2 o6 d$ i* d( E$ M* ]! x) t% g
胶束色谱法:micellar chromatography,MC2 l2 V4 S5 e3 g4 \
亲和色谱法:affinity chromatography,AC4 G4 c8 x) ~6 f$ n) b& }( a
固定相:stationary phase
1 ]8 I( h6 m O, i% G8 d6 l化学键合相:chemically bonde phase" S" p5 r2 Q7 h) g# K' H7 Z
封尾、封顶、遮盖:end capping) _$ [* F$ d5 c b$ I
手性固定相:chiral stationary phase,CSP5 j2 B! H/ t3 J! l7 r
恒组成溶剂洗脱:isocraic elution
; A0 z9 W/ H- x/ e0 u4 c梯度洗脱:gradient elution+ B* h1 i w* |9 M/ V
紫外检测器:ultraviolet detector,UVD, g6 h1 f% G1 K% M0 q% _
荧光检测器:fluorophotomeric detector,FD3 u8 l3 y7 Y+ o5 J" P" H- P
电化学检测器:ECD
) w- D8 f4 t9 c示差折光检测器:RID P/ d: ?" h; ?3 z6 E
光电二极管检测器:photodiode array detector ,DAD8 h y. f- \; D3 L
三维光谱-波谱图:3D-spectrochromatogram
, c6 R7 r1 _) G8 Q! O蒸发光散射检测器:evaporative light scattering detector,ELSD
2 X1 T5 a! J1 ]$ ~6 @1 M安培检测器:ampere detector,AD
4 M9 k8 v- S2 z( }, w高效毛细管电泳法:high performance capillary electrophoresis,HPCE
7 V3 ]( a/ q% a. q- i淌度:mobility' Y8 k: F- G& Y% T3 D$ U1 A
电泳:electrophoresis9 n; o' E' S* O
电渗:electroosmosis) h$ [% ]6 G! I7 O2 e6 l
动力进样:hydrodynamic injection
9 a8 j6 Z% G' Q) C( E电动进样:electrokinetic injection$ T# r, C9 s, U* G
毛细管区带电泳法:capillary zone electrophoresis,CZE8 J( z; U$ S) ^0 u6 S5 s
胶束电动毛细管色谱:micellar electrokinetic capillary chromatography,MECC
4 d; x C, y) O0 d" s, j6 K! B毛细管凝胶电泳:capillary gel electrophoresis,CGE
+ H& R+ o0 w/ r7 D' `3 ]- x筛分:sieving
6 q J+ W- W- ?1 |9 u' q9 J: @4 `
2 L, V% V. k* B( G/ R9 T$ a绪论
O2 H% D" n( v$ F& `释药系统(drug delivery system,DDS)
) d* x6 a7 _- e% u中国药典(Chinese Pharmacopoeia,ChP)
. k3 o$ o- G" X- i$ d% C美国药典(The United States Pharmacopoeia,USP)" j2 K) D3 v- s6 j5 `; |8 G: A# H
美国国家处方集(The National Formulary,NF)
# B: y# d+ S$ u4 t. D英国药典(British Pharmacopoeia,BP)
7 R N8 R( L2 `欧洲药典(European Pharmacopoeia,Ph.Eup)' p4 {# K) A* |
国际药典(The International Pharmacopoeia,Ph.Int)
. q4 M6 C' N3 U良好药品实验研究规范(Good Laboratory Practice,GLP)7 w5 h$ C3 G s- `
良好药品生产规范(Good Manufacture Practice,GMP)2 L9 e' n+ O0 N# m; Y
良好药品供应规范(Good Supply Practice,GSP)
7 L. f) V3 C* y4 f% h5 B1 S良好药品临床试验规范(Good Clinical Practice,GCP)
$ _* X7 m! |2 s" X* D% ~分析质量管理(Analytical Quality Control,AQC)
- b6 ^% D' e1 F$ w; [第1章 药物的鉴别试验
* N9 d2 l4 n' u. B ~8 g( L1 H药物的鉴别试验identification test
4 [/ i) |) Q" @2 ^一般鉴别试验general identification test
; o; ^$ Y" b1 @) D专属鉴别试验specific identification test
8 n/ v& F6 E" V {% s灵敏度sensitivity
1 T: c* j8 m0 h; E9 j* M" J最低检出量minimum detectable quantity
( t! b' E# x- Z8 F% B" R最低检出浓度minimum detectable concentration" ?, f. d% @6 O. @" M
第2章 药物的杂质检查8 z1 y# E& e6 r% d
巯基醋酸mercaptoacetic acid
% Z: v# z0 @; }1 s4 y* _' L: J! j+ c3 i古蔡Gutzeit' c T; ~1 ?9 b4 S0 Y! ]
二乙基二硫代氨基甲酸银siliver diethyldithio-carbamate1 f: J; ~& `! |/ e* p
硫酸灰分sulphated ash/ u5 Q' U! `# \- o+ K" b% i
炽灼残渣residue on ignition
6 T) V9 v+ l: E热重分析法thermogravimetric analysis,TGA
3 l3 v7 b3 |0 S/ T6 u K, b差示热分析法differential thermal analysis,DTA
& q- l7 H C& [4 S5 {差示扫描量热法differential scanning calorimetry,DSC
, Y* ?7 c2 X4 g5 I碱性酒石酸铜试验Fehling’s reagent
9 E U- u5 f4 u z, Y; B! {异红紫酸盐isopurpurate, g0 I/ T; @! W* m
2,3-二氨基萘2,3-diaminonaphthalene1 Q7 ~* J* P# F6 y& W1 i& X
4,5-苯并苯硒二唑4,5-benzopiazselenol- h+ Y, ~) @8 \7 i
第三章 定量分析样品前处理与测定方法的效能指标7 W' \) L$ e1 |1 n( Z B
汞齐化法amalgamation method4 {4 T! I! U3 ~8 u2 i; w7 L
氧瓶燃烧法oxygen flask combustion method
) H7 w7 m: d: X, C- G2 C葡萄糖醛酸甙glucuronides
3 U0 X9 U/ c% B; C硫酸酯sulphates
4 m* Q; u- ]! m/ F- d7 b血浆plasma0 A6 K3 d. l2 M/ k7 |, x" w
血清serum
( `3 o# Z- e. T, Z6 g" e5 I全血whole blood
0 @, c; I- B8 u4 H; }: s治疗药物浓度监测therapeutic drug monitoring,TDM4 X9 p4 p+ W" `( O+ @$ Z
结合bound
: _% M" m- S; H% W0 o游离free/ i' e4 |) K# j6 J
缀合物conjugate* P, p$ y+ }, ^
液-液提取法liquid-liquid extraction,LLE* ]% n' V6 s- _
离子对试剂ion pair reagent
* o l ]+ m5 a( d! B& K3 V离子对提取法ion pair extraction method1 v5 [7 K& @9 J) N6 s
反离子counter
. o) g( t1 ^* J* @4 h液-固提取法liquid-solid extraction LSE
' M ]7 Q$ S* _2 N* m半自动样品制备系统advanced automated sample processor,AASP
, O$ z3 b5 l4 m" v5 H! S烷基化alkylations
2 d2 U: G, \5 U: m" E酰基化acylations& y% ~/ a( D& a: T6 c
硅烷化silylations7 ?+ |3 P7 J6 I( ~5 T/ c
精密度precision$ w# R* C( s P; f
标准差standard deviation,SD orS
! _- A+ s' H& L2 c8 H' x相对标准差relative standard deviation,RSD
1 F- w. z, z8 r* L变异系数coefficient of variation,CV) E. Q9 L5 W' y3 ~& _( p8 m1 u
批内精密度within-run precision
' y8 L8 e7 x/ W3 C2 G日内精密度within-day precision {/ W. N, H2 r8 O
批间精密度between-run precision
+ i7 J" R' t8 B" u日间精密度day to day precision
5 o( Q) Y" b. Y6 J# w0 W2 b# k: X准确度accuracy" S H' T" @- ]
定量限limit of quantitation,LOQ/ f. g. Z" E1 J- o- b n4 H+ R
检测限limit of detection,LOD
$ W$ p G F* C7 {4 |( h! k) a2 O选择性selectivity
% u* F* M9 [. w0 l. H$ Q7 H2 R: x Q专属性specificity
+ {3 ~% j* |9 g# j) V线性与范围linearity and range
7 Z7 z+ C: h4 T+ I6 {) a重现性ruggedness
5 a+ N& `7 x7 X/ u& g耐用性robustness
: I! ~ T+ i( @3 o1 Z散布图scatter diagram8 c0 i! j. r- s
荧光偏振免疫测定法fluorescence polarization immunoassay,FPIA
: ^8 u7 h: l" w: t2 v第4章 巴比妥类药物的分析4 S9 [# {1 i8 j& w4 I+ M
溴化十六烷基三甲基苄铵cetyltrimethylbenzylammonium bromide,CTMA N* k2 N2 n' c1 y
氯化四癸基二甲基苄铵Tetradacyldimethybenzylammonium chloride,TDBA8 Z. ^ u) D5 y/ ~( H8 p0 t+ `6 ~
第5章 芳酸及其酯类药物的分析- ?( W l: Y" L& v
苯甲酸及其钠盐benzoic acid and sodium benzoate! W- N/ k M' M3 [: x
布美他尼bumetanide/ G4 q, ^" N$ ?. a
羟苯乙酯ethylparoben. w0 m5 ?% B$ T8 U, Y8 O* s
丙磺舒probenecid* v) P% T& n$ ]3 G* S
酚黄乙胺etamsylate& J3 o8 c B* E0 W
第6章 胺类药物的分析/ x; A" K3 y5 r0 c: T
第七章 杂环类药物的分析5 p/ r, D8 u. Z6 a$ f, Z
二硝基氯苯反应Vongerichten反应
3 Y7 ~) v' P5 c( O# p8 M: a戊烯二醛反应K?nig反应
3 H4 F* _5 O) U" j: q第8章 生物碱类药物的分析$ E3 `3 H* u0 ?& A) d8 f5 m
生物碱alkaloids
1 l2 N9 y: }, F( h阿片gum opium) i3 y0 G+ u6 H$ u3 W
扫尾剂tailing-suppressing reagent
9 \+ d; m+ t/ ?6 i) m$ V蒂巴因thebaine
0 _' a( u% X! K: x h* O+ m诺司卡品noscapine
6 H) c- y- i% u竞争离子competing ions5 m4 \/ i1 t+ n( i2 P
亲脂性lipophicity" w/ t7 C. o7 H4 @8 Q# O/ S
拖尾因子tailing factor# T" b+ m' h; o# @7 M
金刚烷adamantane
# G% i2 t; l# z3 N8 T. @3 A第9章 维生素类药物的分析1 z) g$ }# N1 i( x. s* y
维生素vitamin
1 f& u; T* q/ o; J* r% P6 x( I' ^去氢维生素A dehydroretinol
6 H9 t& r4 E, w! T去水维生素A anhydroretinol$ j2 O. ], ?' Y6 p8 P$ I2 n6 k" ^
鲸醇kitol4 w) l4 Q. h; o8 R
三氯化锑反应Carr-Price反应
3 x, C1 W' V5 T; r维生素B1 thiamine hydrochloride;盐酸硫胺
7 p3 ~* _2 s. x5 o7 R% z8 `2,3,5-三苯基氯化四氮唑 2,3,5-triphenyltetrazolium chlorid,TTC
* b- \: G/ A% c( r# F/ S红四氮唑red tetrazoline,RT
: R u, V, V. g& j! i2 e蓝四氮唑blue tetrazoline,BT5 G0 v! P, ]1 f; w3 Z! [
3,3’-二甲基氧苯基-双-4,4’-(3,5-二苯基)氯化四氮唑{3,3’-dianisole-bis[4,4’-(3,5-dipheny)tetrazolium chloride]}
( r* h# d2 k6 K8 B3 n' [1 J. T; `有色甲 ……formazan# c8 G$ a8 \ |5 F' n% x
铁-酚试剂iron-phenol reagent
g8 v7 A( u8 F6 O铁-柯柏试剂iron-Kober reagent& c) S5 D3 b1 j: c3 _6 N/ i3 S. v* e
第十一章 抗生素类药物的分析/ U" ~' X+ X: G
6-氨基青霉烷酸6-aminopenicillanic acid,6-APA2 }- L# { M" Q
7-氨基头孢菌烷酸7-aminocephalosporanic acid,7-ACA
& Y l: B i% a氨苄西林ampicillin3 g2 F& W% J0 a" w6 i8 _& Q7 ]
5-甲基-3-邻氯苯基-4-异……唑青霉素钠cloxacillin sodium
2 f4 d l& E* `羟氨苄青霉素amoxicillin5 [* x* p+ B; m$ e! u* Y
氨基糖甙类抗生素aminoglycosides antibiotics
6 `9 \6 x q1 M; g8 s' g链霉素streptomycin( r# }* x8 H" T+ h
麦芽酚maltol
1 o* D7 ~ b; p- l* O6 Q% l7 NN-甲基葡萄糖胺反应Elson-Morgan反应
a- M- j/ X" P$ _8 e* }, z" O. j坂口反应 Sakaguchi反应5 J w' G( i. ^4 ~
庆大霉素gentamycin
7 U& T3 j9 J& h% W四环素类tetracyclines
' j$ ^! U, k7 W9 e4 Z4 z4-差向脱水四环素 4-ejpianhydrotetracycline,EATC
9 G% K9 h/ V1 h3 p1 T, _$ _ Y& w第十二章 药物制剂分析
: G% P% ~7 C( S7 h% C8 K& T5 j含量均匀度content uniformity
9 m: C$ z. P# o5 E3 d溶出度dissulution
5 D) a. V6 m* P9 f" v2 y离子对高效液相色谱法ion-pair,HPLC
7 V$ B( l8 ~9 U1 \第十三章 生化药物分析概论
/ ?, T. d: s, Y+ e8 U. K( y第十四章 中药制剂分析概论
R. }2 r% b1 \% w' ?' K超临界流体萃取supercritical fluid extraction,SFE4 |8 q! Z* W3 }5 ^% R
过弗罗里Florisil
/ T F5 ~: T5 w) J$ {第十五章 药品质量标准的制定, T! ^) s% w7 o) g* `( A* u
国际非专利药名International Names for Pharmaceutical Substances,INN/ I# T @) m4 _
去氧麻黄碱Metamfetaminum
- c& K4 J5 ?, V6 t; Y9 b! J: y/ V& p国际理论和应用化学联合会International Union of Pure and Applied Chemistry,IUPAC
" O' r$ b d) C- V0 ~% F& v- t6 h有机化学命名原则Nomenclature of Organic Chemistry
: E1 p8 c G$ I4 i% Q可待因Codeinum) R( R4 r6 l: v
地塞米松Dexamethasonum
, H8 X3 V7 f3 n! m% r氯……Chloroquinum
* ?( |. X* b' r青蒿素Artemisininum( ?! f& D+ {/ l
吗啡Morphinum9 s: h( J; e/ c# s; H, v2 S3 V
苯扎溴铵Benzalkonii Bromidum; T1 B' y3 ?; w
1-(3,4-二羟苯基)-2-氨基乙醇重酒石酸盐一水合物[1-(3,4-Dihydroxyphenyl)-2-Aminoethanol Bitartrate mono-hydrate]
7 ?. m+ l% J& v$ E* `0 z第十六章 药品质量控制中的新方法与新技术6 R% x7 W ^. T" @5 S
填充柱packed column
2 v# k6 G* e8 n- U2 K. Z5 G开管柱open tubular column
$ @# Q0 c5 _+ |8 s+ v. m6 `8 l& b空心柱capillary column
' {6 f. @% W' f2 N) ?% W& M熔融石英开管柱fused silica open tubular column,FSOT1 F3 n0 Z X. I6 v2 |# U- W% ]1 c
高分辨率气相色谱法high resolution gas chromatography,HRGC: \* u# R6 O: \( W# Y
壁涂开管柱wall-coated open tubular column,WCOT柱
" L" h" C9 C. h6 e9 r8 r固定化相开管柱immobilized phase open tubular column ,IPOT柱 w& C1 h+ a3 e& A& W& |: V8 e
交联柱crosslinking column
9 J. Z( X8 N9 L0 _+ j O键合相柱bonding phase column
3 j: ?4 k4 ]$ ~; d) R不可提取相开管柱nonextractable phase open tubular column,NPOT柱% T7 P6 [3 ?6 A" p# m+ U& [0 T
多孔层开管柱porous-layer open tubular column,PLOT柱
8 ]0 F' E7 @1 V: {) T担体涂渍开管柱support-coated open tubular column,SCOT柱7 V; [8 w9 N! {$ Z0 j- m: F
分流进样split injection
$ W/ m6 B* N# D$ N3 p不分流进样splitless injection
1 L/ _) k$ {% N柱头进样on-column injection
, D n* n1 k' @- w8 K9 B直接进样direct injection
& s" ^: {; A" D: K# F2 V h! K6 k手性分离色谱chiral separation chromatography,CSC" I7 d+ d( ?. Z+ }
普萘洛尔propranolol
& A$ L7 u+ u# q( A2 H2 k沙粒度胺thalidomide
, z4 b- }2 h$ Y) O, s, u. s测定对映体enantiomer
! c$ s+ |" f* b1 R; ^% x手性固定化chiralstationary phase,CSP
5 G9 ~ b) M) r# q! ]# C3 b手性衍生试剂chiral derivatization reagent,CDR
. ^- {4 |0 n0 K非对映异构体diastereoisomer,DSTM/ Z3 d8 Y0 z N/ e7 P/ W. m
配基交换型手性添加剂chiral ligand-exchange complexes,CLEC
6 A0 d+ l4 a0 _/ C* f& Z手性离子对络合剂chiralion pair complex,CIPC6 N4 d( U D9 u0 A+ m3 ?: c
环糊精cyclodextrins,CD
/ R( Y; Q: M, L. e1 L1 y0 j葡聚糖sephadex
% r3 K8 i7 z8 G) O3 d配基交换剂ligand exchanger
6 H/ |2 C- X. J' R$ ]手性传荷charge transfer; K( q/ t4 e+ r1 C! D0 f! F
(R)-N-3,5-二硝基苯甲酰苯基苷氨酸dimitrobenzyl phenylglycin;DNBPG
, [- t" v$ o! T, a0 w5 W( U三点手性识别模式three-point chiral recognition model+ R& r) v( {5 ?7 E3 s
噻吗洛尔thimolol8 A* z S* _, G
曲洛磷胺trofosfamide# b8 X- T4 z1 p6 f6 Y' G# H
乙酰葡萄糖异硫氰酸酯(2,3,4,6-tetra-O-acetyl-β-D-glucopyranosylisothiocyanate,GITC
: N$ v' u4 e- a, _- I左旋比喹酮L-praziquantel
# x# F; m' H% y4 P9 E比喹胺praziquanamine v) Y6 r5 y$ X
苯丙胺phenylpropamine6 Z2 t9 {' Q! l
异氰酸-α-萘酯(α-naphthylisocyanae,NI) R, Q, w5 e$ q6 l5 X! o7 i. ~' z
美西律mexiletine7 @5 C4 j( e2 d$ Y# t' L1 C0 Y
氯胺酮ketamine
5 I X l! l2 W本芴醇benflumelol" ]2 u4 a2 _% m2 [$ Y, d
苯丙醇phenyl propanol" v5 w( |5 j! S8 q, u
烯丙洛尔alprenolol1 ^$ ?& ]; `" p7 M/ p' w
普萘洛尔propranolol
9 D5 |( t5 f: ]# N5 V7 M% Q氧烯洛尔 oxyprenolol( y+ o) S% l! L! H0 N
麻黄碱ephedrine' y; L3 T* t( Y6 ]. R! h1 ~
毛细管电泳capillary electrophoresis,CE
3 d( ^; v6 Q O7 ?% h! K- t毛细管区带电泳capillary zone electrophoresis,CZE5 V* [; W- Q1 p# l9 k# A
胶束动电毛细管色谱mcellar electrokinetic capillary chromatography,MECC
* f0 y+ h$ u" L; {' f( ]; L/ D( V胶束动电色谱miccellar electrokinetic chromatography,MEKC. }, q0 D/ o: e
环糊精动电色谱cyclodextrins electrokinetic chromatography,CDEKC
3 [9 B& {3 m/ z" D' f离子交换动电色谱ion-exchange electrokinetic chromatography,IEEKC
, o: F( L! I1 Q% L+ q. w微滴乳状液动电色谱microemulsion electrokinetic chromatography,MEEKC
! \* J4 U$ F1 ~; [' r毛细管凝胶电泳capillary gel electrophoresis,CGE5 H- Z' H. {5 m* ?% a( z
毛细管等电聚焦capillary isoelectric focusing,CIEF
& j5 z3 R: h1 \) F0 h3 b' D毛细管等速电泳capillary isotachorphoresis,CITP0 a1 D0 G3 X& q& |8 \- M4 d* m! }
毛细管电色谱capillary electrochromatography ,CEC) |6 K) ~! _+ J* {
色谱响应函数chromatographic response function,CRF& J. h+ h: j0 v8 q+ h* Y
色谱优化函数chromatographic optimization function,COF
# x% O1 Z- @2 A7 P等级色谱响应函数hierarchical chromatographic response function,HCRF
. C# b6 P( B: ^0 M P; }差示分光光度法difference spectrophotometry
0 O5 Q4 l( u) L( ]1 D近红外光谱near infra-red spectrum,NIRS
4 x0 q3 `6 P/ L& _0 ~中红外光谱mid infra-red spectrum,MIRS. I9 |4 _/ C. u
合谱combinations8 e% |8 ~ ^; T
光谱匹配法spectral matching
4 N+ q9 |4 N& z匹配指数match index,M.I.8 X# Q: X; Y# J$ h5 O
主成分分析法principal component regression,PCR
* A8 R$ R4 ?2 @4 r% P3 f0 o8 u人工神经网络方法artificial neural networks,ANN/ r$ B5 D8 E9 g- v% _
核磁共振nuclear magnetic resonance,NMR% K; \* Q# Z& d( s* g
二维NMR two dimensional NMR
; J/ `! w, h' S5 Q六甲基三硅氧烷hexam ethylcyclotrisiloxane
$ ~( {) w) u2 o3 j吡嗪pyrazine
^1 u0 I. r& h/ W% Z' I' R普鲁卡因procaine
! O* _, N2 o% M2 f) |色谱联用技术hyphenated techniques chromatography,HTC1 x1 B$ t- L! u5 R$ B1 [
接口interface, U2 \5 q' Q4 N, C4 N
重建色谱图reconstructive chromatogram" u7 s6 h/ \, Y8 [
- V7 [% \% h: t, U命中质量系数hit quality index,HQI
* a0 }+ t1 w/ T4 W最小二乘方程序least squares algothm
; c- s# U H' t导数绝对值程序absolute derivative algothm
8 ^/ I% J; k& [7 l( O0 A/ p# C" y' x导数平方程序square derivative algothm
0 ~7 C/ m, b3 Z! E- f4 _' C5 p: @空心柱open tubular column,OTC7 S; f* w* @5 a8 n" ^% x
总离子流total ion carrent,TIC
& V8 w0 X7 U0 J5 r2 ]1 n3 m选择性离子监测xelected ion monitoring,SIM
|+ r- X) m# G& j9 w# j# ~多离子检测multiple ion detection,MID' P2 X: r3 a- L0 g# q* H6 U( f; F
质量碎片图谱法mass fragmentography 7 Z$ ]; n: F7 b% z/ p
冰片borneal
6 z" @3 Y: i, ]+ ?5 g' c! I% J川芎嗪tetram ethyloyrazine,TMP, x2 c7 ~- F4 l2 K% H) H' C
电子轰击离子化electron impact ionization,EI( E6 F4 F: L+ t$ h k
化学离子化chemical ionization,CI
) L0 \5 Y- e0 _1 {& Y场解吸field desorption,EI* _8 ~; |/ X' ^- a% N: |
快原子轰击fast atom bombardment,FAB
5 ?% V. a2 }# ?7 V3 W6 S3 c+ |热喷雾thermospray,TSP
' Z. P L+ S7 P5 F电喷雾electrospray,ESP
: j9 z$ e1 u. N3 k大气压离子化atmospheric pressure ionization,API
" u9 a2 j1 V! ?7 L粒子束接口partical beam8 }1 W9 L: G* D- x9 P
动态快原子轰击法FAB
0 m8 g& \4 ^3 D! P( l9 A, M& N2 k离子喷雾接口ISP% p$ z: I) Q& k3 T
电子喷雾法ESP
' V/ V) m, W+ j$ f1 }) |9 G大气压离子化接口API
) C; b! m3 p7 q; r0 ^ K+ H大气压化学电离APCI
- [6 n- u4 Z% M9 u9 t串联质谱MS-MS
1 W- v3 x/ @' i* A9 m8 i3 u6 d丽江山慈姑Iphigenia indica Kunth et Benth6 u( F& z. V, E$ U* A6 A
托非索泮tofisopam |
|